Wednesday, July 07, 2010

Help needed with ragwort survey

British horse riders are being urged to help map the distribution of ragwort in the UK.

The risk to horses of eating ragwort are widely known throughout the equine community. The plant contains poisons that cause progressive liver damage. Even small amounts eaten over time can lead to serious disease.

Despite that, every year the British Horse Society Welfare Department receives numerous reports of horses grazing in fields containing ragwort. “It does seem that the amount of ragwort is on the increase” Lee Hackett, Senior Executive of BHS Welfare,  writes in the latest issue of British Horse, the Society‘s magazine. “This suggests that current control measures aren’t working, but to change things we need evidence.”

In an effort to gain hard data on the extent of the problem, the BHS is organising a snapshot survey during its Ragwort Awareness Week.

Anyone who spots ragwort during the week of 12-18 July is asked to spend a couple of minutes filling in a  simple survey form, which will be available on the homepage of the BHS website.

It is only necessary to report ragwort that is growing in or near to fields being used for grazing horses, sheep or cattle. 

Analysis of the data with mapping software  will show the areas where ragwort is most prevalent.
The number of animals grazing in ragwort-infested fields will also be calculated.

The intention is to repeat the survey in coming years so that trends in the distribution of the plant can be identified.

The BHS has 50 RagForks to give away, generously donated by the manufacturers, eazitools Ltd, who are sponsoring the survey. To be included in the draw for a RagFork you need to include your contact details on the survey form.

More details...

Tuesday, July 06, 2010

Horse Power CPD supports BEVA Trust & SPANA

Ten senior academics and equine vets from practice have come up with a novel way of raising money to help two worthy equine causes - the SPANA Disabled Riding Centre in Bamako, Mali and the BEVA Trust.

Led by Dr Derek Knottenbelt, they will undertake a 6 day CPD challenge, visiting all 7 British vet schools, to deliver  talks on a variety of subjects.

The lecturers will complete a  whistle-stop tour between the vet schools in convoy, on their motor bikes! They will cover over 1000 miles and deliver around 35 hours of lectures. The lectures are free - but donations are expected.

This marathon effort takes place at the end of July 2010. Places are limited, but anyone can contribute.

Click here to read more about it, or make a donation.

Tuesday, June 29, 2010

Benefits of exercise on insulin sensitivity

Unless dietary restriction below maintenance energy requirements is also employed, moderate exercise on its own is not enough to counter insulin resistance in obese or overweight horses, according to Dr Rebecca Carter and colleagues at Virginia Tech.

They examined the effects of exercise training alone on overweight or obese, insulin-resistant horses. Feed intake was limited during the study to 100% of maintenance energy requirements.

Eight horses, all either overweight or obese, followed a low intensity exercise program for 4 weeks followed by higher intensity exercise for a further 4 weeks. Finally they had two weeks without exercise (detraining). A control group of four horses received no structured exercise.

The horses’ body weight fell by 2% following the low intensity exercise and by a similar amount after the 4 weeks of higher intensity exercise. However, about half of the body weight lost during the exercise stages was put back on again within the two weeks of detraining with no exercise.

The researchers found no significant difference in glucose or fat metabolism or insulin sensitivity between the exercised and control groups throughout the study.

Dr Carter comments "even though our study did not show long-term training effects of exercise, there still are probably improvements in insulin sensitivity during and shortly after an exercise session. Therefore, ROUTINE exercise (every day) may be beneficial for improving insulin sensitivity."

Read more

Sunday, June 27, 2010

Another cloning milestone has been reached by researchers at Texas A&M University with the successful birth of a foal produced using oocytes from a live mare.

Mouse, was born May 5, 2010. The efforts of his owner, Kit Knotts, to find a horse that had the same qualities as her prized Lippizaner stallion Marc, (Pluto III Marcells) led her to Texas A&M University and equine reproduction expert Dr Katrin Hinrichs.

"We have worked on this clone for about two years," said Hinrichs, a professor in the Department of Veterinary Physiology and Pharmacology.  "This is actually our first foal produced using oocytes, or egg cells, from live mares."  She explains that using oocytes from live mares made the process difficult as they had very few oocytes to work with at any one time.

Minnie, the surrogate mare, began to show signs of an early delivery, and was taken to the University of Florida College of Veterinary Medicine for observation and intervention. That’s where Mouse arrived and was cared for by a team of neonatal experts that helped make sure he would make it through this critical time.

Because of the risk of complications and problems in the period just after birth, Dr Hinrichs’ team recommends that foals derived by cloning should be treated as high-risk neonates, and their birth should be closely supervised. Facilities for intensive care should be available in case they are needed.

To read more about the problems faced by cloned foals go to www.equinescienceupdate.co.uk/clone3.htm

Monday, June 21, 2010

Lavender Foal Syndrome

Researchers have identified the genetic mutation responsible for Lavender Foal Syndrome. Lavender Foal Syndrome (LFS), also known as Coat Color Dilution Lethal (CCDL), is a fatal disease of newborn Arabian foals, particularly in those of Egyptian Arabian breeding.

The condition gets its name from the abnormal coat colour with which most affected foals are born, which has been described as silver sheen, lavender, pale chestnut or pale, dull pinkish grey.

Signs shown by affected foals include seizures, nystagmus (involuntary movement of the eyeballs), limb rigidity, paddling movements, and opisthotonus (hyperextension of the head, neck, and spine). The mare often has difficulty giving birth.

A team of scientists from Cornell University and the Maxwell H Gluck Equine Research Center have found that Lavender Foal Syndrome is the result of a mutation in a gene called myosin Va (MYO5A).

The myosin Va transport complex is responsible for the transfer of pigment to the keratinocytes and for transport of transmitter substances in the nerve cells. A mutation affecting the gene could easily result in interference with normal function of melanocytes (responsible for hair color) and nerve cells.

“Our results suggest that the population frequency of carriers of this deletion is 10.3% in the Egyptian Arabian” reports lead researcher Dr Samantha A. Brooks, assistant professor in the Department of Animal Science at Cornell University's College of Agriculture and Life Sciences.

“Given our estimate of the number of carriers in the population we expect that around nine LFS foals would be born in the USA each year”

For more about the research on Lavender Foal Syndrome click here.

Sunday, June 20, 2010

Antibiotic resistance in equine faeces

Horses can be a source of antibiotic-resistant bacteria, presenting a threat to human health, according to a recent study.

Mohamed Ahmed, of the Department of Veterinary Microbiology and Parasitology, at Al Fatah, University, Tripoli, Libya, working with colleagues at the Liverpool Vet School, examined fecal samples collected from the University’s equine hospital and from livery yards.

They found antibiotic resistant E. coli in faeces from both locations. From a total of 264 samples, 296 isolates of antibiotic-resistant Escherichia coli were identified.

Not only were hospitalised horses more likely to have antibiotic resistant E. coli in their faeces, they were also more likely than those maintained on livery yards to carry organisms that were resistant to multiple drugs.

Nearly half (48%) of the resistant isolates from the hospital environment showed multiple drug resistance phenotypes, compared with only 12% from the livery yards.

The researchers conclude that, in the UK, horses may provide both recipients, and sources, of antibiotic resistance, MDR, and be an extensive reservoir of antimicrobial resistance genes that could pose a potential threat to human health.

For more details see:

http://www.equinescienceupdate.co.uk/aref.htm

Friday, May 28, 2010

Third Welfare and Safety of the Racehorse Summit

The forthcoming third Health and Welfare of the Racehorse Summit to be held by the  Grayson-Jockey Club Foundation  at the Keeneland Sales Pavilion in Lexington, Ky., June 28-29, 2010, aims to identify ways of enhancing the safety and soundness of Thoroughbred racehorses.

Attendance at the meeting is by invitation only. But you don't need to miss out. Thanks to modern technology and Keeneland.com the public sessions of the summit will be made available to all on a live web stream.

Among the topics to be covered will be an update and preliminary findings on data submitted to the Equine Injury Database. Veterinarian and epidemiologist, Dr. Tim Parkin, of the University of Glasgow, has been analyzing data submitted to the Database, and will provide an update and preliminary findings.

Other topics include a panel discussion on race track surfaces, and updates on the Racing Medication and Testing Consortium, the NTRA Safety and Integrity Alliance, and the Thoroughbred Safety Committee.

There will also be panel discussions on racing equipment and safety,  racetrack environment and training practices, and transitioning thoroughbred racehorses to second careers.


For more information, including the link to the web stream, see:

http://www.grayson-jockeyclub.org/summitDisplay.asp

Tuesday, May 25, 2010

Deworming horses with Cushing's disease


Horses with Cushing’s disease (also known as pituitary pars intermedia dysfunction ; PPID) are more  likely to have higher fecal egg counts than are healthy horses according to a recent study.

Dr Dianne McFarlane and colleagues compared the response to anthelmintic treatment on fecal egg counts in healthy horses and those with Cushing’s disease.

Twenty-nine healthy horses  (ranging in age from 4 to 35 years ) and 13 horses with PPID (13- 33 years old) were used in the study. The presence or absence of PPID was confirmed by clinical signs and plasma alpha MSH assay (reference range for normal horses <35pmol/L; PPID horses ≥45pmol/L)

The researchers performed faecal egg counts at 2-week intervals before and after treatment with ivermectin.

At 2 and 4 weeks after treatment with ivermectin all horses in the study had negative fecal egg counts.

Horses with PPID had higher egg counts than did healthy horses, both before and at 6 - 12 weeks after treatment.  This difference could not be explained by the PPID horses being older than the control horses, as the researchers found no correlation between age and fecal egg count.

A fecal egg count greater than 200 epg is often taken as an indication that anthelmintic treatment is required. In this study 6 of the 13 horses with PPID reached the 200epg threshold by 10 weeks after ivermectin treatment. In contrast only 2 of 25 control horses had reached the threshold at the same time - a difference that was statistically significant.

“Given similar environmental conditions, horses with PPID were more likely to have higher fecal egg counts than were healthy horses” Dr McFarlane reports.

The findings suggest that horses with PPID may pose a risk for pasture hygiene if not managed properly.

On the other hand, age alone does not appear to increase the horse’s susceptibility to parasitism. However, the researchers point out that only a small number of horses were involved in that analysis. More work is required to confirm that older horses do not need treating differently to younger horses when it comes to deworming.

For more details see:

Fecal egg counts after anthelmintic administration to aged horses and horses with pituitary pars intermedia dysfunction.
D.McFarlane, GM Hale, EM Johnson, LK Maxwell
J Am Vet Med Assoc (2010) 236, 330-
334

Friday, May 14, 2010

Prepare for Hendra season Australian horse owners warned

Horses are at increased risk of Hendra virus (HeV) infection at this time of year, the Australian Veterinary Association (AVA) has warned. The disease is usually fatal, and can affect humans that have been in contact with affected horses.

The virus is named after the suburb of Brisbane, Queensland, Australia, in which it was first isolated. In that outbreak in horses at a training centre, 14 horses died. Seven other horses were shown to have been infected and were humanely destroyed. Affected animals typically showed severe lung damage. Two humans were affected, one of whom died.

The natural hosts for the Hendra virus (HeV) are species of fruit bats (commonly known as flying foxes). Antibodies have been found in all four species of fruit bats found in mainland Australia.

“Anyone working with horses should be on the lookout and immediately report any suspected cases of Hendra virus infection over the coming months,” said Dr Barry Smyth, Vice-President of the Australian Veterinary Association.

“Recent mass movements of large flying fox colonies means owners should be especially vigilant.

“Wet weather in some parts of the country has caused flying foxes to take to the air to find food in new areas. An influx of more than 130,000 into Victoria was confirmed by scientists just last week.


“So far cases of Hendra infection have been restricted to Queensland and New South Wales, however there is a potential for the disease wherever there are flying foxes.

Common signs to look out for include respiratory distress, frothy nasal discharge, elevated body temperature (above 40° C) and elevated heart rate. Some horses may show neurological signs including incoordination and head pressing. However, it is important to realise there are no specific signs of infection.

What can you do to limit the risk of horses being exposed to the virus?  “Protective measures include placing feed and water under cover where possible, not placing feed and water under trees when flying foxes are in the area, not using feed that might attract flying foxes (such as fruit and vegetables), and where possible removing horses from fields where flying foxes are active, and fencing off trees where flying foxes roost” Dr Smyth said.

The few cases of human Hendra virus infection have been the result of very close contact with horses infected with the virus. Body fluids or secretions from infected animals are likely to contain the virus.

At the time the people became infected the horses did not appear sick.

“The risk can be greatly reduced by adopting good hygiene practices as a matter of routine and taking increased precautions around any sick horse,” said Dr Smyth.

Thursday, May 13, 2010

Experts to advise on equine infectious diseases

Thanks to the opportunities of modern transport, it's not only horses that can travel the world. They may also take with them their infectious diseases.

The recent equine influenza outbreak in Australia showed what can happen when susceptible horses are exposed to infection.

So with all the current scientific knowledge about  vaccination, immunity and infectious disease in horses, What can be done to prevent, control  limit the risk of similar outbreaks disasters events happening in the future.

Recently a group know as the Prevention of Equine Infectious Disease Guidelines Group (PrEquID) has been set up to compile recommendations for preventing and managing major equine infectious diseases, based on current scientific knowledge and available vaccines.

After an initial meeting in November 2009, the group met again in March 2010, to discuss guidelines for Equine Influenza and Equine Herpes virus infections. These diseases are widely considered to have a significant impact on the horse industry, based on disease outcome, economic impact, veterinary care and travel restrictions.

Practical, evidence-based recommendations are currently being finalised and will be made available shortly.

“Our aim is to develop overarching international guidelines for the management of infectious diseases,” said Professor Marian C Horzinek, Chairman of PrEquID. “These should contain practical, evidence-based recommendations for disease control and horse movement.”

Professor Peter Timoney, of the University of Kentucky, added, “the equine industry worldwide is facing an unprecedented threat from the challenge of infectious diseases. It’s a huge industry involving a complex range of stakeholders, including veterinarians, owners, breeders, trainers, shippers and regulators. We must set aside individual and national agendas and concentrate on the bigger picture if we’re to achieve greater international control over the spread of equine diseases and protect our industry for the future.”

The establishment of PrEquID was initiated and sponsored by Fort Dodge Animal Health (a division of Wyeth). With the acquisition of Wyeth by Pfizer in 2009, this initiative is now supported by Pfizer Animal Health.

Thursday, April 29, 2010

How does pasture cause lamintis?


Fructans and starch are not responsible for most cases of laminitis, Dr Teresa Hollands told delegates at the Laminitis Awareness 2010 seminar.

Most cases of laminitis occur when horses are eating grass. Pasture associated laminitis accounts for 66% of cases occurring in the UK. But what causes the laminitis?

Experiments have shown that giving large meals of starch or fructans can cause laminitis. Large amounts of these carbohydrates suddenly arriving in the horse’s large intestine disrupt the normal population of bacteria in the gut, leading to a cascade of inflammatory and toxic events.

However, Dr Hollands, nutritionist at Dodson and Horrell, explained that this process is unlikely to be involved in the majority of cases of pasture-associated laminitis.

Firstly, grass contains little starch. Of the pasture plants commonly found in the UK, only clover has significant amounts of starch. Grasses store glucose that they can’t use straight away as fructans.

It has been shown that laminitis can be induced by giving a large bolus of fructan  (5g-12.5g fructan/kg body weight).  That’s about 3.75kg fructan for a 500kg horse.

How much fructan would a horse eat when grazing? Grass contains higher levels of fructan during the winter. Mixed pasture might contain 150g fructan/kg dry matter of grass in the winter (compared with 6.6g/kg in the summer). If a 500kg horse eats an amount of grass equivalent to 2.5% of his body weight, (12.5kg), his total intake of fructans would be about 1.9kg.

So the full daily intake falls short of the levels that have been shown to cause laminitis. And what’s more, as horses are “trickle feeders”, that fructan intake is spread out over 24 hours. So even in the winter when the fructan levels in the grass are highest, the horse is only likely to eat something like 50g fructan/hour. In the summer the figure is likely to be about 5g fructan an hour - a thousand times less than the amount needed to cause laminitis.

What’s more, recent work has shown that fructans are fermented in the small intestine, and so are even less likely to reach the hindgut in sufficient quantities to cause food-induced laminitis.

So how does grass cause laminitis? “We need to move away from thinking about individual components of the diet "  Dr Hollands suggested. “In the end it is the calories that are the main risk factor.”

“Grass provides more than enough calories for most horses in light work.”

She explained that recent work with World Horse Welfare and Napier University used alkanes to measure grass intake.  Every day, some horses ate an amount of grass equivalent to 5% of their body weight. Some individuals increased their body weight by 4% a week.

“So you can see that grass easily provides horses with excess calories,” she said “ leading to gradual accumulation of fat. Excess calories over time equals fat. Not all fat is the same.”

She explained that research had shown that some adipose (fat) tissue is metabolically active. The fat cells (adipocytes) release numerous biologically active substances (adipocytokines), which affect glucose and fat metabolism. When present in excess they can lead to insulin resistance, which in turn can result in laminitis.

“The slow insidious eating of excess grass over years is the problem; not the grass they ate today. People get insulin resistance and diabetes because they have been on a bad diet for years, not because they ate a doughnut today!”

What can you do to prevent laminitis associated with insulin resistance?

First you need to reduce the fat. Give thirty minutes exercise daily with a heart rate of 80 beasts per minute. (“Turnout in the paddock is not enough” she says). Accept that the horse or pony will lose weight (fat) over the winter.  Indeed encourage him to do so by using lightweight rugs only - so that he burns fat to keep warm.

Do not starve the horse. Maintain the bulk intake (at 2.5% of body weight) - otherwise he will be prone to developing stereotypies or gastric ulcers. But reduce the calorie intake - soak the hay for 12hours or feed oat or barley straw.

Make sure horses do not get too much grass. Consider using a muzzle; increase the number of horses (and /or cattle and sheep) on the pasture. It’s important to feed a balanced diet.  Make sure the horses receive adequate proteins, minerals and vitamins by feeding a low calorie commercial feed balancer.

The solution is to reduce obesity, ensure nutrition is optimal, and increase exercise.

Wednesday, April 28, 2010

Monitoring respiratory disease

Researchers at the University of Glasgow have developed  two new non-invasive methods of monitoring respiratory disease in horses.

The number of times a horse coughs provides a good indication of respiratory inflammation - the more inflammation, the more the horse coughs. But it is often not practical, or cost-effective, for someone to physically count the number of times a horse coughs over an extended period.

The research team, led by Professor Sandy Love,  has developed a technique that uses a digital audio recorder attached to the head collar to monitor cough frequency over a long period of time.

In a study to test the value of the technique, the researchers compared audio recordings, each lasting one hour,  with simultaneous video recordings. A total of nine recordings were collected from seven stabled horses .

The  graph of the  audio file could then be examined to identify coughs. Not only was this a rapid process - a  recording lasting one hour could be analysed within three minutes - the technique was also found to be very accurate.

When they compared the audio and video recordings the researchers found that every cough was correctly identified, and no extraneous noises, such as foot stamping,  were mistaken for coughs.
They point out that the speed of the  analysis could be increased further by using  computer software to automate the analysis.

The project also led to the development of a simple device that could be attached to the horse’s head collar to  collect expired moisture. It was used to study the constituents of exhaled breath to see if any could be used as indicators of respiratory inflammation.

The researchers found that the most useful indicator was the pH of the liquid condensed from the expired breath. There was trend toward a reduced pH (acidification) in horses with lower airway inflammation.

The concentration of gases such as carbon monoxide, nitric oxide and ethane was also measured, but the researchers found no correlation between these substances and inflammation in the respiratory tract.

The work was made possible by funding from The Horse Trust . Paul Jepson, Chief Executive and Veterinary Director of The Horse Trust said, “ "We are delighted that the research we have funded has led to new, non-invasive ways of monitoring respiratory inflammation in horses. These techniques could have a major impact on horse welfare by improving the diagnosis and treatment of this common condition.”

Tuesday, April 27, 2010

Bladder stone laser treatment

Normal equine urine contains many calcium carbonate crystals. Despite that, it is not common for stones (“calculi”) to form in the urinary tract of horses. They are most often seen in the bladder (“urocystoliths”) or urethra (urethroliths”).

It is possible to remove them surgically, which may require general anaesthesia and carry the risk of complications - in particular peritonitis. Other methods include disrupting the calculi with shock waves or laser.

Researchers at the Virginia-Maryland Regional College of Veterinary Medicine and the School of Veterinary Medicine at the University of California, Davis have described a minimally invasive technique using a laser to break up the urinary calculi.

An optical fibre is passed through the biopsy channel of the endoscope. This is used to direct the beam from the laser onto the bladder stone. The procedure can be carried out without the need for epidural or local analgesia.

The surgeon sweeps the fibre across the surface of the stone to produce a crater or groove until eventually a fragment breaks off. This process is repeated as many times as necessary until the remaining pieces of urolith are small enough to pass out through the urethra.

Larger fragments are removed by grasping them with a wire basket passed through the endoscope. Smaller fragments are flushed out.

The technique was successful for removing all uroliths and fragments in five of a series of seven cases. The authors concluded that laser lithotripsy combined with lavage and retrieval of larger fragments using the endoscope was a safe procedure. They suggest that if no progress is made within the first 30 minutes the case will have to be managed by other means.

Read more at Equine Science Update

Saturday, April 24, 2010

Equine atypical myopathy - possible cause found

Researchers at the University of Bern, Switzerland, have identified a possible cause for the often fatal disease atypical myopathy. They found evidence to implicate a toxin produced by the bacterium Clostridium sordellii. The toxin is known to cause severe muscle damage in mice.

The researchers examined heart and skeletal muscle samples from horses affected with Atypical Myopathy using transmission electron microscopy. They found that the changes that were present were similar to those found in mice affected by the toxin.

They also used immuno histochemistry staining techniques to show that the lethal toxin of Clostridium sordellii was present in the muscle fibres of affected animals. Antibodies from horses with Equine Atypical Myopathy and antibodies to the lethal toxin of Clostridium sordellii both bound to muscle fibres taken from horses affected with EAM.

In contrast, neither of the antibodies attached to normal horse muscle fibres or to muscle fibres taken from horses with other types of muscle disease.

The scientists concluded that there is evidence that the lethal toxin of Clostridium sordellii plays a role, either as a trigger, or even as a lethal factor, in Atypical Myopathy.

Read more at Equine Science Update.co.uk

Monday, March 29, 2010

Urine DNA profiling

Scientists will soon be able to use DNA profiling techniques to confirm the identity of racehorses that have tested positive to drugs.

Such a test would dispel any doubt about sample substitution and confirm that a sample did in fact come from a particular horse, helping to either confirm the identity of horses returning positive drug samples, or exonerating horse and trainer.

The report “DNA Profiling of Horse Urine Samples to Confirm Donor Identity” resulted from studies carried out by Paula Hawthorne and colleagues at the University of Queensland, and was funded by the Australian Government's Rural Industries Research and Development Corporation (RIRDC). The research team tested various techniques for DNA profiling on seven urine samples and compared the results with those from hair samples taken from the same horses.

They found that storage time and temperature had a significant effect on the success of the DNA profiling. Urine could be stored at 4°C for no more than two days (or frozen at -20°C or -80°C) before processing. Samples stored at 4°C for a week or more yielded no profiles.

The most successful technique, a commercially available test, allowed them to identify all twelve microsatellites, in four urine samples - all from male animals. As only seven samples were examined overall, it was not possible to tell whether that was a coincidence, or whether it really is more difficult to extract DNA from mare’s urine.

All DNA profiles from the urine samples matched those from the hair taken from the same horses.

There is still more work to do - for example, the researchers point out that drugs in the urine may interfere with DNA profiling. So once the best method of DNA profiling has been established, further tests will be required to assess whether the results are affected by drugs likely to be found in the urine.

However, the authors of the report suggest that once the optimum method has been finalised it should not take long to integrate it into existing procedures of racing drug-testing laboratories.

The full report is available for purchase or free download. See:
https://rirdc.infoservices.com.au/items/09-076

Friday, March 26, 2010

Risk of Atypical Myopathy cases this spring.

“There seems to be an increased risk of cases of Atypical Myopathy during the spring, when the disease has occurred during the previous fall” warns Dr Domonique Votion, of the University of Liege.

In the last few months of 2009, Western Europe experienced the largest ever series of cases of the disease, according to the Atypical Myopathy Alert Group (AMAG).

No less than 371 cases were notified to the AMAG. Of those horses, 265 died, giving a survival rate of just 22%. Most cases were reported in France (124) Germany (92), and Belgium (64).
Thirty-five cases were identified in the UK.

Horses with Atypical Myopathy suffer from severe, generalised weakness. They are often unable to get to their feet, or only do so with difficulty. If they are still able to walk, they do so with a stiff gait - especially of the hindquarters. Muscle tremors and generalised or patchy sweating may be seen.

Affected animals have elevated heart rates. They often have increased respiratory rates, with difficulty on expiration. The rectal temperature is usually below normal. Dark brown colouration of the urine is characteristic.

Despite the severity of the signs, horses often still seem keen to eat and will try to grasp hay that is held close to their mouth.

Often the first sign of disease is stiffness, especially of the hindquarters. However, it is not unusual for severely affected cases to be found dead on the pasture with no previous sign of illness.

For more details about the Atypical Myopathy and the Atypical Myopathy Alert Group see:

http://www.myopathieatypique.be

Thursday, March 25, 2010

Disease surveillance report

The latest equine disease surveillance report published jointly by the UK Government’s Department for environment food and rural affairs (Defra), Animal Health Trust (AHT) and the British Equine Veterinary Association (BEVA), is now available. The report covering the period October - December 2009 has been uploaded recently to the Animal Health Trust website.

The Defra/AHT/BEVA equine quarterly disease surveillance report collates equine disease data arising from multiple diagnostic laboratories and veterinary practices throughout the United Kingdom. The current edition includes data from 30 laboratories and offers a unique insight into equine disease occurrence in the UK.

A form is available on the AHT website for registration to receive reports free of charge, via e-mail, on a quarterly basis.

See:

http://www.aht.org.uk/equine_disease.html

Monday, March 22, 2010

EMS research: help needed

Do you have a horse or pony with Equine Metabolic Syndrome? If so, scientists at the University of Minnesota's Equine Genetics and Genomics Laboratory would like to hear from you.

EMS is characterized by three main features: obesity or regional accumulation of fat (particularly in the crest or over the rump), insulin resistance and laminitis.

Some horses, often considered to be "easy keepers" by their owners, are more at risk of EMS than others. It is likely that the genetic make-up of the horse affects its susceptibility to the condition.

The aim of the study is to better understand the role in EMS of factors such as breed, gender, age, environment (diet and exercise) and genetics. To achieve this, the researchers need to collect data from as many horses with EMS as possible. So, they are keen to encourage horse owners and their veterinarians to get involved.

If you are interested in taking part in the Equine Metabolic Syndrome research project, the first step is to complete a short online survey. Within about one month, if your horse is considered suitable for the project, you will be asked to complete a second survey. This will ask for further information about the horse and about another horse, unaffected by EMS, that lives on the same property. This horse will serve as a "control". Ideally the control horse should be of similar breed and age, have no history of laminitis, not be overweight and show no signs of Cushing's syndrome (delayed shedding, increased drinking/urination).

The third step is to submit a blood sample to the laboratory, for biochemical analysis and DNA evaluation.

To identify the underlying genetic susceptibility to EMS, the scientists will compare genetic markers between horses with and without EMS. The genetic differences that are highly correlated to having EMS can be used as genetic markers for the disease.

The long-term goal is to use these EMS genetic markers to detect horses susceptible to EMS and laminitis before they have clinical signs. It may then be possible to change the management of susceptible animals to reduce the risk of them developing disease.


For more details about the study

http://www.cvm.umn.edu/equinegenetics/ems/research/index.htm

Saturday, March 20, 2010

Rapid ringworm diagnosis

Scientists in South Korea have described a rapid method for diagnosing ringworm (dermatophytosis.)

Fungal culture is the “gold standard” method for identifying the species of dermatophyte involved, based on the colony characteristics and microscopic appearance. It is accurate but time consuming. Samples may have to be cultured for up to three weeks before the organism can be identified.

It’s not necessary to know the species before starting treatment. Indeed, to prevent the spread of infection, treatment is usually started pending the results of laboratory investigations.

However, there are occasions when it may be useful to know the identity of the dermatophyte involved, as it may help to identify the source of the outbreak. For example Trichophyton mentagrophytes can be found in soil and be carried by rodents.

Researchers at the Colleges of Veterinary Medicine at Seoul National University and Konkuk University compared a rapid molecular PCR assay with conventional fungal culture for diagnosing ringworm.

They found that the PCR analysis of the fungal DNA was superior to traditional fungal culture for diagnosing dermatophyte infection, “ in terms of sensitivity, specificity and particularly rapidity.”

Read more at www.equinescienceupdate.co.uk/rmmdd.htm

Thursday, February 25, 2010

Exercise and pregnant mares

In humans, moderate exercise in pregnancy seems to do no harm and may help limit excessive weight gain and maintain fitness for the birth. What about horses? Many pregnant mares are ridden and subject to moderate training up to the later stages of pregnancy.

A research team from the University of Maine and the Equine Science Center, Rutgers University, New Jersey compared the response of pregnant and non-pregnant mares to a graded exercise test.

Six unfit standardbred mares were assessed when nine months pregnant and again eight months later after weaning. The exercise test was carried out on a treadmill inclined at 6%. The speed increased in steps of one minute each at 4m/s, 6m/s and 7m/s.

At each stage of the graduated exercise test, mares had lower heart rates when pregnant than after weaning. Plasma lactate concentrations rose less in response to exercise when mares were pregnant than when they were not. The researchers speculate that this might be due to greater cardiovascular efficiency during pregnancy.

Resting plasma cortisol levels were lower during pregnancy than when the mares were not pregnant.

When exercised, pregnant mares showed no increase in cortisol levels. In contrast, when they were not in-foal, the mares showed a normal increase in plasma cortisol during and after the exercise test.

Neither did exercise have an effect on foetal heart rate. This suggests that the unborn foal is not stressed by the mare undertaking moderate exercise.

The researchers conclude: “these data suggest that pregnant mares benefit from greater cardiovascular efficiency during pregnancy. They should be able to perform limited moderate exercise without any major deleterious effects on their unborn foals or themselves during late gestation.”


Read more...

Tick-borne disease in Danish horses

Tick-borne infections are common in Danish horses. A survey published in Acta Veterinaria Scandinavica showed that many Danish horses carry antibodies to Borrelia burgdorferi sensu lato (the group of Borrelia species known to cause Lyme disease) and Anaplasma phagocytophilium (the cause of equine granulocytic anaplasmosis).

The study, overseen by Dr Anders M Bojesen of the Department of Veterinary Disease Biology, Faculty of Life Sciences, University of Copenhagen, Denmark aimed to evaluate the seroprevalence of B. burgdorferi s. l. and A. phagocytophilium in Danish horses.

Overall, 29.0% horses were seropositive for B. burgdorferi s. l. and 22.3% were seropositive for A. phagocytophilium. This was a higher proportion than had been found in previous studies in neighbouring countries.

There was no significant correlation between risk factors investigated, including breed, gender, age, use and housing and the occurrence of antibodies against B. burgdorferi s. l.

However the researchers did find that older horses were more likely to have been infected with A. phagocytophilium. Compared with horses aged between 1-4 years old, those aged 11-20 years were 2.3 times more likely to be seropositive for A. phagocytophilium, and horses over 21 years old were 3.3 times more likely to be seropositive.

Horses seropositive for B. burgdorferi s. l. were likely to be seropositive for A. phagocytophilium and vice versa.

The researchers conclude “these findings warrant further attention to these infections in horses particularly with regard to improved means for detection of active infections, which may contribute to a better understanding of these diseases and their impact on horse behaviour and welfare.”

More details...

Wednesday, February 24, 2010

New equine respiratory condition described


Danish Researchers have identified a new cause of respiratory disease in horses. They found the bacterium Stenotrophomonas maltophilia in samples collected from horses with chronic lower airway disease.

Stenotrophomonas maltophilia, a Gram-negative bacterium, has been found increasingly in human medicine, especially in patients with impaired immune systems. Until recently the organism has been recorded only rarely in animals.

In a paper to be published in The Veterinary Journal, Lotte Winther, a PhD student in the Department of Large Animal Sciences at the University of Copenhagen, and colleagues present data from seven horses with respiratory disease associated with S. maltophilia infection.

All cases had a history of chronic coughing. Endoscopic examination revealed copious mucopurulent exudate in the lower trachea. Culture of the tracheal exudate produced grey, slow-growing colonies, which were identified as S. maltophilia by both culture and DNA testing.

Many antibiotics commonly used to treat equine respiratory infections were not effective against S. maltophilia.

The findings suggest that S. maltophilia can act as a respiratory pathogen. The researchers advise that the organism be included in the differential diagnosis of horses with respiratory disease associated with copious mucopurulent exudate.

Read more...

Wednesday, February 03, 2010

TEST TO PREVENT UNNECESSARY FOAL DEATHS LAUNCHED


A new diagnostic test, which gives breeders the ability to eradicate Foal Immunodeficiency Syndrome, was launched on 1 February by UK scientists.

Foal Immunodeficiency Syndrome (FIS), a genetic disorder which is known to affect Fell and Dales ponies, causes foals to become anaemic and prone to opportunistic infections. Sadly, any foal born with the syndrome will not survive.

The DNA test, which costs £40, will not only identify foals which have the fatal condition but will highlight adult ponies who are carriers of the genetic trait which causes the syndrome. Affected foals will be prevented by avoiding breeding a carrier mare with a carrier stallion.

Owners and breeders who wish to find out the genetic status of their ponies can arrange for a simple pulled mane or tail hair sample to be taken by a vet and submitted to the Animal Health Trust. The Fell Pony or Dales Pony Societies will supply sample bags for submission on request.

Dr. June Swinburne of the AHT, who led the research team, said: “The DNA test gives owners and breeders the power to overcome this devastating illness. It enables them to make informed decisions about which ponies to breed. We have already had samples submitted by HM The Queen from her own breeding stock of Fell ponies. I’d urge any breeders of Fell or Dales ponies to submit samples in order to arm themselves with the facts they need to prevent the birth of affected foals and thereby avoid this distressing condition.”

For more information on testing, owners should contact the Fell or Dales Pony Societies.
Alternatively visit the AHT website http://www.aht.org.uk/genetics_fis.html or email FIStesting@aht.org.uk

Thursday, January 28, 2010

Ivermectin for foal deworming warning

Ivermectin should not be the drug of choice for controlling Parascaris equorum (large roundworm) in foals a recent study warns.

Dr Eva Osterman-Lind and Dr Dan Cristensson of the National Veterinary Institute, Uppsala, Sweden, investigated the occurrence of Parascaris equorum infection on nine stud farms in Sweden and assessed the efficacy of three commonly used dewormers.

They found that ivermectin had very little, or no, effect on the output of ascarid eggs.

“The most striking result from this study was that in five studs out of six, ivermectin failed to suppress the faecal output of P. equorum eggs” Osterman-Lind and Cristensson report in the journal Acta Vet Scandinavica. “Ivermectin resistance is now a widespread problem in Swedish stud farms.”

Read more...

How common are wobblers?

Cervical vertebral stenotic myelopathy (CVSM) is an important disease of Thoroughbred horses in which compression of the spinal cord in the neck leads to incoordinated gait. Affected horses are often described as “wobblers”.

But how common is the condition? Researchers at the University of Glasgow studied records from four breeding establishments - three European Thoroughbred stud farms (936 foals) and one farm in USA (353 foals) - over a 7 year period.

During that time there were 13 cases of Type 1 CVSM, (dynamic stenosis); 5 horses with Type 2 CVSM (static stenosis) and 5 horses in which the Type could not be determined. Overall, 1.3% of the animals were found to be affected.

The average age at which signs of the condition became apparent differed. Horses affected with dynamic stenosis were noticed at a younger age than were those with static stenosis. Type 1 (dynamic stenosis) was diagnosed typically in yearlings (Mean 433days old - about 1y 2 months.) Horses affected with the stenotic compression were diagnosed later - (mean 1188d -about 3years 3 months)

The researchers also found that male horses were significantly more likely to be affected (17 male to 6 female), which agreed with previous studies.

“CVSM is an important disease of Thoroughbred horses and leads to wastage in the thoroughbred industry through the inability to race and the loss of affected horses” the report's authors conclude.

They suggest that “further investigations of the prevalence of CVSM in populations of thoroughbreds and other breeds and determination of risk factors for the disease are warranted.”

More details...

Thursday, January 21, 2010

Genetic Test for ‘Speed Gene’ in Thoroughbred Horses


Researchers have identified a gene that can predict the type of work that is most appropriate for an individual Thoroughbred racehorse.

The work, led by Dr Emmeline Hill at University College Dublin, was published in the Public Library of Science Journal, PLoS ONE.

The MSTN gene is responsible for muscle mass development. At a specific point in the gene, the code can contain either the letter C or the letter T. As each individual has two copies of the gene—one inherited from the dam, one from the sire—there are three possible combinations of the letters: C:C, C:T or T:T.

The researchers found that C:C horses were suited to fast, short-distance races; C:T horses competed favorably in middle-distance races; and T:T horses had greater stamina.

The findings were independently validated in a re-sampled group of 62 unrelated elite (Group and Listed race winners) Thoroughbreds and in another group of 37 elite racehorses.

Following the success of the research program, Dr Hill and Mr Jim Bolger, the renowned Irish racehorse trainer and breeder, co-founded a company, Equinome, in 2009 to commercialize the test.

Dr Hill says “Using the Equinome Speed Gene test, a world first in equine genetics, it will now be possible to definitively know a horse’s genetic type within weeks of a sample being taken, thus reducing much of the uncertainty that has been typically involved in selection, training and breeding decisions.”

“Racehorse owners and trainers around the world will be able to identify if a horse is ideally suited to racing over short, middle or middle-to-long distances. With this information, they can then optimize their purchasing and training decisions and better target suitable races for their horses. Breeders, stallion managers and bloodstock agents will also be able to use the test to make more precise selection and breeding decisions to maximize the genetic potential and commercial value of their horses.”

Dr Hill will formally launch Equinome and the Equinome Speed Gene test at 2pm on January 29th at the Irish Thoroughbred Breeders Association Expo 2010 in a seminar entitled Cracking the code: The Speed Gene revealed.


Read more at EquineScienceUpdate.co.uk

For more information about Equinome

Wednesday, January 20, 2010

Oxytocin promotes placental expulsion


Retention of the fetal membranes is a common post-foaling complication. It is of particular concern in heavy draft breeds, which seem especially likely to develop laminitis if expulsion of the membranes is delayed.

A Japanese study, led by Dr Mitsuo Ishii, found that hourly injections of oxytocin after foaling was an effective way of inducing placental expulsion.

"I recommend that for heavy draft mares, 50iu of oxytocin should be administered from one
hour after foaling and continued at one hour intervals until expulsion of the placenta" Dr Ishii says. " We usually don't remove the placenta manually until 8 hours after foaling."

See more details at equinescienceupdate.co.uk

Monday, January 18, 2010

Sarcoid treatment breakthrough

The battle against sarcoids is forging ahead. Researchers in Scotland have succeeded in killing equine sarcoid cells using a technique known as gene silencing. They are now hoping to obtain funding for clinical trials using the new technique, which could result in a more effective, non-toxic treatment for sarcoids.

Sarcoids are the most common type of tumour found in horses. They are caused by infection with the Bovine Papillomavirus (BPV). The response to treatment is variable, and if treatment fails the sarcoids will often come back with a vengeance.

Recent research, funded by The Horse Trust, offers a potential ray of hope for owners of horses affected by sarcoids. The work was published in the journal Virus Research.

The research, led by Professor Lubna Nasir of the University of Glasgow, found that by inhibiting the activity of a particular viral protein within sarcoid cells, the amount of viral DNA in the cells reduced. This led to a reduction in the growth of the sarcoid cells and caused the cell to die by “Programmed cell-death” (PCD). The researchers believe that PCD occurs because the sarcoid cells become reliant on the virus.

"This could potentially be a major breakthrough in the treatment of sarcoids," said Professor Lubna Nasir. "We are now seeking funding to use this technique in clinical trials on horses that have sarcoids."

"One of the challenges with gene silencing is administering it within clinical setting - as you need to get molecules into every cell. As sarcoids are on the surface of a horse, we think administration should be relatively easy - potentially by injecting or applying a cream to the sarcoid," said Professor Nasir. "If we are able to successfully develop this technique it would be a non-toxic and easy to administer treatment for horses affected by this distressing condition."

See www.equinescienceupdate.co.uk for more details.

Saturday, December 26, 2009

Treating piroplasmosis

Research brings hope for horses with piroplasmosis. A drug used to treat protozoal infections in cattle has been shown to be effective against one form of the disease in horses when used at relatively high doses.

Piroplasmosis in horses is known to be caused by two blood-borne parasites, Babesia (Theileria) equi and Babesia caballi. The organisms infect the red blood cells and cause fever, anemia and jaundice.

Infected horses may remain carriers of the infection after recovering from the initial signs of disease. Such horses can transmit the disease even though the organisms can no longer be found in blood smears.

Now researchers at the Agricultural Research Service Animal Disease Research Unit in Pullman, Washington, led by Dr Don Knowles, have found that relatively high doses of imidocarb dipropionate are effective for treating horses infected with Babesia caballi.

Read the full story at equinescienceupdate.co.uk

Tuesday, December 22, 2009

Test for Fell Pony syndrome

Scientists have developed a test for the gene responsible for Foal Immunodeficiency Syndrome (FIS).

FIS is more often known as Fell Pony Syndrome after the breed most commonly affected. However, the disease is not confined to the Fell Pony, and has been reported in the Dales Pony as well.

Affected foals become ill when they are a few weeks old. Signs include loss of condition, diarrhea, coughing and weight loss. As the condition progresses, they develop anemia, immune dysfunction, and wasting.

FIS is always fatal. Affected foals die or are euthanized, usually before reaching three months of age.

Researchers at New market’s Animal Health Trust (AHT) and Liverpool University have announced that a DNA-based test that should be available in February 2010.

Read the full story at equinescienceupdate.co.uk

Wednesday, December 09, 2009

Does work cause stereotypies?

Does the type of work that horses do make them more or less likely to adopt stereotypic behaviour? Recent studies in France suggest it could do.

Stereotypies are abnormal repetitive behaviours with no apparent function. They are sometimes referred to as stable vices. Examples include wind sucking, crib biting and head tossing.

Researchers at the Université de Rennes 1, led by Dr Martine Hausberger, observed horses’ behaviour and related it to the type of work they performed.

Seventy-six French Saddlebred horses were divided into six groups according to their work: eventing; show jumping; advanced riding school; dressage; high school and voltige (a mixture of acrobatics and gymnastics on horseback.) All horses worked for only one hour a day and spent the remaining 23 hours in their stable.

The proportion of horses in each work group showing stereotypies was similar (between 81-100%). However, different types of work appeared to be associated with different stereotypies.

Dressage and high school horses were most likely to show stereotypic behaviours. Some of them showed more than one abnormal behaviour pattern. They were also more likely to display the more serious abnormalities such as cribbing, wind sucking and head tossing and nodding.

For more details see equinescienceupdate.co.uk/wsbd.htm

Sunday, December 06, 2009

Scientists to study effect of exercise on laminitis.

The Laminitis Trust has awarded a grant of £134,425 to the Royal Veterinary College and the Laminitis Consortium to investigate the effects of exercise on horses and ponies that are predisposed to pasture-associated laminitis.

Lead investigator, Dr Menzies-Gow, explains: “This project will in part investigate whether exercise can reduce the level of chronic inflammation in laminitis-prone animals, which may then prove to be a simple and practical way of reducing the risk of future bouts of disease in susceptible animals.”

The grant commences in January 2010 and will run over two years. The Laminitis Consortium will provide regular updates on progress.

See equinescienceupdate.co.uk for more details...

Friday, November 27, 2009

3D study of neck anatomy

Wobbler syndrome (Cervical Vertebral Malformation, CVM) is a common condition of Thoroughbred horses. Affected horses have a characteristic “wobbly” gait, caused by compression of the spinal cord.

In some cases, the signs of Wobbler Syndrome (Cervical Vertebral Malformation, CVM) have been linked to arthritic changes in the cervical articular process joints. These are the joints between adjacent vertebrae in the neck. They can become inflamed, which can result in soft tissue swelling, thickening of the joint capsule and new bone formation. The joints lie close to the spinal cord, so any increase in their size is a cause for concern.

Some “wobblers” have marked bony and soft tissue swelling around the joints. But does an increase in fluid in these joints result in spinal cord compression, even if no other bony of soft tissue changes are present? If so, it might be possible to prevent the disease progressing by detecting and treating the inflammation at an early stage.

Holly Claridge, working at the Royal Veterinary College, conducted a study using Computed Tomography to examine the structure of the horse’s neck. She found that the joints these joints do indeed extend towards, but do not actually touch, the spinal cord.

So, unless soft tissue or bony changes are also present, it seems unlikely that inflammation or swelling of these joints causes spinal cord compression.

More details...

Thursday, November 26, 2009

Inner secrets of Rhodococcus equi

Work to understand the genetic structure of Rhodococcus equi may lead to new measures to control disease in foals. Understanding the complex mechanisms used by the bacteria to cause disease may reveal the microbe’s “Achilles heel” that could be targeted by vaccines and drugs.

“Among the virulence factors we have identified, we have found one in particular that we think might be a good target for a vaccine” says Professor Jose Vazquez-Boland of Edinburgh University. Pathogenic strains of the bacteria have long processes or “pili”, with which they attach to the host cells.

“We identified the genes responsible and produced antibodies against them.” These antibodies prevent the bacteria attaching to the cells and so prevent infection getting established. So this would be a good candidate for a vaccine.

Read more...

Tuesday, November 24, 2009

How effective is your deworming program?

The importance of knowing that your worm control program is effective was emphasized by Professor Jacqui Matthews when she spoke at the Thoroughbred Racing and Breeding Seminar at Cheltenham.

The cyathostomins (small strongyles) are the most important group of intestinal parasites of the horse - both numerically, and through their ability to cause disease. They are becoming increasingly difficult to control as they develop resistance to the drugs used against them.

“Not enough of us are thinking about the level of burden individual horses have in terms of giving them worm treatments. When we treat horses with viral disease we don’t usually treat the whole group. And we don’t do that with antibiotics.” So why not just deworm the horses that need it?

In the spring and summer, fecal egg counts can be used to identify which horses to treat. But encysted worms in the gut wall in winter cannot be detected with fecal egg counts. So we also need to detect horses with high larval counts.

Prof Matthews’ team have been working to develop a blood test to measure the antibody response to proteins released by these encysted stages within the gut wall.

Detecting resistance is also vital. The research team at Edinburgh has just received funding to update and refine the fecal egg count reduction test (FECRT) that is used to detect resistance to anthelmintics. Hopefully this will lead to better thresholds for resistance levels to individual drugs.

They are looking for studs with large numbers of young horses to help in the research. The project will involve a questionnaire, treatment with ivermectin and a FECRT, which will be provided free of charge.

Read more...

Sunday, November 22, 2009

Thoroughbred Racing and Breeding Seminar

A panel of top equine researchers and veterinarians covered a range of subjects at the Thoroughbred Racing and Breeders Seminar. The event, now in its ninth year, was supported by the Horserace Betting Levy Board, Intervet Schering Plough Animal Health and cheltenham Racecourse.

The latest research on a variety of topics was presented.

More details...

Saturday, November 14, 2009

Immunodeficiency/anaemia in a Dales pony.

Fell ponies are not the only breed to be affected with an immunodeficiency / anaemia syndrome.
Now a similar condition has been reported in a Dales pony

The report’s authors, based at the Animal Health Trust in Newmarket and the Liverpool Vet School, describe a female Dales pony foal with marked anaemia, diarrhoea and pneumonia, that failed to respond to treatment. The foal was euthanased at nearly 6 weeks of age. Post mortem signs were typical of Fell pony syndrome.

The scientists, who are already studying Fell pony syndrome, are now widening their scope to pay close attention to the Dales pony as well.

They suggest that, although there are other causes of anaemia in foals, the anaemia/immunodeficiency syndrome should be considered in any young foal with marked anaemia (PCV < 20%) and relevant clinical signs.

They urge owners, breeders and veterinarians dealing with Dales ponies to be aware of the disease, and ask that any suspect cases be referred to the research team at the Animal Health Trust or the Liverpool University Veterinary School.

More details...

Monday, October 26, 2009

Benefits of Bitless Bridle

Traditionally, bitted bridles have provided the main means of controlling ridden horses. The metal bit applies focused pressure on areas of sensitive tissue within the horse's mouth.

According to Dr Robert Cook, Surgery Professor Emeritus at Tuft's University in Massachusetts, the bit is to blame for numerous problems in the horse, including headshaking and upper respiratory obstruction.

For the past ten years Dr Cook has been researching the adverse effects of the bit and the advantages of communicating without using a bit. He developed a new type of bitless bridle that differs from hackamores and other traditional bitless bridles in being painless and incorporating a crossunder principle.

Is the bitless bridle as effective as Dr Cook would have us believe? Two small-scale studies have looked at how horses behave and perform in bitless or bitted bridles.

Read more..

Thursday, October 22, 2009

British racing whips microchipped

The British Horseracing Authority (BHA) has announced that a modified whip will be made available to British jockeys over the next few months. Initially, the new whips will be supplied to flat jockeys, followed by jump jockeys.

The new whip, which is a modification of the existing cushioned whip, will include a microchip of the same type used to identify racehorses. This will allow the Authority to monitor how the whips wear. Of particular interest is how well the cushioning properties last.

The cushioned whip was introduced in 2004 for Jump racing and in 2007 for Flat racing. Its success has been shown by the widespread international adoption of the principle of cushioned whips in horseracing and other equine sports.

Tim Morris, Director of Equine Science and Welfare for the Authority, said:

“At present we do not know if the cushioning effect is sustained over time. Identification of individual whips via the microchip will allow objective assessment of whip age, allow estimates of the number in races where it has been used and ultimately avoid any whip wear that might affect horse welfare.

Read more...

Days numbered for hot iron branding?

A recent study found that hot iron branding inflicts more pain than does inserting a microchip and concluded that the practice should be abandoned wherever possible.

The study, carried out at the University of Copenhagen, in Denmark, compared the behavioral and physiological responses of seven horses that were subjected to both hot iron branding and microchip insertion.

The researchers found that the horses showed significantly more signs of aversive behavior after hot iron branding than they did after microchip injection.

Also, hot iron branding caused significantly greater skin sensitivity around the treatment site compared with microchip injection. For 48 hours, there was significantly more heat and swelling of the skin where the hot iron branding was carried out than there was at the site of the microchip injection.

Heart rate increased at the time of branding or injection, but returned to normal quickly after the microchip injection. It remained high for five minutes after hot iron branding.

The researchers conclude that hot iron branding caused more pain than microchip injection. They recommend that hot iron branding should be abandoned if possible.

Read more...

Tuesday, October 20, 2009

Saving the Suffolk Punch.

Researchers at the Animal Health Trust, based in Suffolk, England, are working with the Suffolk Horse Society to develop a breeding program to help safeguard the future of their local native breed.

The Suffolk Punch, an ancient draught breed is on the Rare Breed Survival Trust's "critical" list. At the last count there were fewer than 300 breeding animals left in the UK.

With such limited numbers, inbreeding risks limiting genetic diversity. Eventually this could lead to health problems.

Dr Sarah Blott, leading the research in the Department of Genetics, said " Our project aims to help breeders make the best use of the genetic knowledge in their quest to conserve the breed."

More details...

Monday, October 05, 2009

Body condition scores fail to detect weight loss

Existing body condition scoring systems may not be sufficiently accurate for monitoring weight loss in dieting ponies according to researchers at the Liverpool Vet School.

This was one of the findings to come out of a study into the use of a restricted diet for producing weight loss.

For twelve weeks, overweight ponies were fed a chaff-based complete diet, with their intake limited to 1% of body weight.

The ponies achieved the desired weight loss. Their girth measurements decreased over time, as did measurements of subcutaneous fat. However, body condition scores remained unchanged.

As a result of the study the research group is developing a new condition scoring system designed specifically for ponies.

Read the full article in Equine Science Update

Monday, September 28, 2009

Method developed to diagnose overtraining syndrome.

Researchers at Utrecht University in the Netherlands have succeeded in diagnosing equine overtraining syndrome by measuring nocturnal growth hormone secretion.

Dr Ellen de Graaf-Roelfsema and colleagues conducted the study in conjunction with researchers at Maastricht University, the Free University of Brussels and the University of Virginia (USA).

The study involved twelve Standardbred geldings (average 20 months old) - trained in pairs. Both horses in the pair were managed identically apart from their exercise regime. One was trained normally, the other received an intensified training schedule.

“The intensively trained group clearly showed a loss of performance, indicative for over-reaching or maybe even over training.” Dr Graaf-Roelfsema reports.

"We were able to distinguish between overtrained and control horses by evaluation of their nocturnal GH secretion pattern. However, it is a very labor intensive method and not very practical to use for the individual patient. We are working on that right now."

Read more...

Friday, September 25, 2009

Search for new approach to equine stereotypies.

Pharmaceutical manufacturer CEVA Animal Health is looking to develop an equine pheromone to be used in the control of stereotypies, and is asking horse owners for help.

Pheromones are substances secreted by the body that have an effect on the behaviour of other animals of the same species. Lactating female mammals release substances called appeasing pheromones. Their function is to calm, and provide reassurance to the offspring, especially in unknown situations. They contribute to the foal bonding with the mare.

Equine appeasing pheromone has been shown to help calm horses in stressful situations. Could it also have a place in modifying stereotypies such as weaving and cribbing?

CEVA Animal Health already markets behaviour modifying produtcs based on pheromones for cats and dogs. These products reproduce natural pheromones that provide a feeling of comfort and help prevent or reduce stress-related behaviours such as urine spraying in cats and firework fears in dogs.

The company is working in partnership with the University of Nottingham’s Veterinary School to carry out initial research in the UK. They are asking owners of horses that display any type of stereotypical behaviour such a crib biting, weaving or box walking to complete a simple online survey about their horse and their management regime.

Liz Mossop BVM&S MRCVS at Nottingham Vet School said “Equine stereotypical behaviour, such as crib biting and weaving, is a difficult problem to manage for many owners. Nottingham Vet School is delighted to be involved with this project which should help to provide some new ideas and answers for both owners and the veterinary surgeons dealing with their horses and ponies. Pheromones have been shown to be very effective in supporting behaviour management of dogs and cats and we hope that an equine pheromone would prove equally useful.”

If you would like to take part please go to

www.nottingham.ac.uk/vet/Horseownersurvey and click on the survey link. It should take no more than 15 minutes of your time to complete the survey and your involvement would be very much appreciated.

Saturday, September 19, 2009

Iris scanning to identify horses.

Tattoos, brands, passport pictures and microchips may all become obsolete if a project to develop a portable iris scanner for horses is successful.

In the future, it could be that all a horse has to do to have its identity confirmed would be to glance at an iris scanner. The technology is already up and runnning for use in people. Airports throughout the world have started using iris cameras for passenger screening and immigration control as an alternative to checking passports.

The iris has a delicate pattern and, like a fingerprint, each one is unique. No two individuals have the same iris patterns - not even identical twins.

The Sarnoff Corporation has been commissioned to develop the first portable equine iris capture and identification system to help identify and track horses.

Mark Clifton, Sarnoff Corporation’s Vice President for Products and Services, said that the system would allow users to identify horses quickly and accurately, and without undue stress on the animal.

Read more...

Thursday, September 17, 2009

Thoroughbred Racing and Breeding Seminar

I have just received news of the programme for this year's Thoroughbred Racing and Breeding Seminar, which will be held at Cheltenham Racecourse on 12th November.

The Seminar presents the latest research and thinking on horse health and welfare. It offers owners, trainers and breeders the chance to hear about the latest scientific work and learn how the findings can be applied to the day-to-day management of their horses.

Although it is aimed at Thoroughbred breeders and trainers, most horse owners will find the information relevant and useful.

The morning session looks at infectious diseases. Professor Jose Vasquez-Boland discusses advances in understanding Rhodococcus equi - the cause of a particularly troublesome pneumonia in foals. Professor Jacqui Matthews considers the growing problem of anthelmintic resistance.

The morning finishes with a veterinary student, deemed to be a rising star in the field of equine research, giving a short presentation of their recent project.

In the afternoon, attention turns to jet lag and how it affects the horse's performance. Dr Domingo Tortonese explains the work carried out at Bristol University. Dr Richard Piercy will consider practical and state of the art approaches to diagnosis and treatment of setfast and other muscle disorders. The final speaker, Professor Stephen May, describes the use of the different imaging techniques used to resolve complex musculoskeletal problems.

There is plenty of opportunity to ask questions during the day including, just before lunch, an "Ask the panel" session, which is always lively and often contentious.

For more details see:

www.thoroughbred-seminar.co.uk

Thursday, September 10, 2009

Welfare of European horses transported for slaughter.

A recent study highlights concerns about the welfare of horses transported long distances by road for slaughter.

The study was carried out between March and September 2008. Groups of horses were inspected in Romania before being transported to Italy. Other horses were inspected on arrival at slaughterhouses in Italy. A few horses were observed both before and after transportation.

Many of the horses observed in the study, either at the start of their journey, or on arrival at the slaughterhouse, showed evidence of poor health and welfare.

The researchers observed 1519 horses being loaded onto lorries in Romania. They judged that fourteen percent of the animals were not fit to travel in accordance with EU Council Regulation 1/2005 on the Welfare of Animals during Transport. Both recent and long-term injuries were seen. Lameness was common.

1271 horses were observed on arrival in Italy. Of those, the observers considered that 37% were not fit to travel. Many horses showed clear signs of disease, including coughing and nasal discharge, which would have rendered them unsuitable to enter into the human food chain. One in 3 had recent injuries that were likely to have arisen on the journey.

More details...

Saturday, August 29, 2009

Diagnostic deworming for tapeworm.

Scientists in Japan have been looking for a more reliable way of diagnosing tapeworm infections in horses.

They have found that fecal exmination the day after deworming provides a reliable way of detecting tapeworm eggs.

A pilot study of 12 horses examined fecal samples before and one day after treating with bithionol. All horses had a higher tapeworm egg count the day after treatment.

In a further study they found that tapeworm egg counts were dramatically higher on the first day after treatment. By the second day they had fallen back to pretreatment levels.

See more details..

Friday, August 28, 2009

Jockey’s posture has dramatic effect on speed.

Research carried out at the Structure and Motion Laboratory at London's Royal Veterinary College explains how the familiar crouched racing posture adopted by the jockey improves the speed of the horse.

By crouching in the saddle, jockeys isolate themselves from the motion of the horse. This reduces the energy that the horse needs to expend to carry the jockey, and so enhances performance.

Read more about it here...

Botox as laminitis treatment.

Dr Daniel W Carter and Dr J Ben Renfroe have patented a technique using botulinum toxin to reduce the tension in the deep digital flexor tendon of horses with laminitis.

Increased tension is one of the factors thought to contribute to rotation of the pedal bone. So relieving the tension may limit the deleterious changes in the foot.

The technique involves injecting a diluted solution of Botox (Botulinum toxin type A) into the deep digital flexor tendon in several places. The toxin blocks the release of the neuro- transmitter (acetylcholine) from the nerve endings. This temporarily prevents the muscle contracting.

Read more about it here

Thursday, August 27, 2009

Night vision in horses.

Research at the Equine Research Foundation shows that horses can distinguish simple geometrical shapes under low light conditions.

Horses were trained to choose between two shapes - a circle and a triangle. The next step was to see if they could still distinguish the shapes in conditions of increasing darkness. The lighting was controlled to give conditions ranging from the equivalent of twilight to a moonless night in a dense forest.

The study showed that the horses could see at very low light levels. They were able to choose between the two shapes in almost complete darkness. Only when it was as dark as a moonless night in dense forest were they unable to differentiatebetween the two shapes.

Read more here

Sunday, July 26, 2009

Nervous humans worry horses.

Recent research has confirmed that horses react to nervousness in their rider or handler.

The project, led by Linda Keeling, Professor of Animal Welfare at the Swedish University of Agricultural Sciences, Uppsala, looked at how the heart rates of horses and riders responded to the rider anticipating a threatening situation.

More details...

Friday, July 24, 2009

Microchipping horses.

Should owners expect any adverse effects from having their horse implanted with a microchip?

A project at the Pennsylvania State University Department of Dairy and Agricultural Science, assessed the inflammatory response to microchip insertion - and whether the chips migrated after having been inserted.

Read more...

Tuesday, July 21, 2009

Equine herpesvirus myeloencephalopathy

Four clinical syndromes have been attributed to Equine herpes virus-1 (EHV-1): respiratory disease in younger horses, abortion in pregnant mares, stillbirth or weakness in newborn foals and paralysis ( equine herpes virus myeloencephalopathy (EHM)).

EHM has been identified more frequently in recent years. Knowledge gained in dealing with outbreaks of the disease is now available in a 74 page report published by the USDA Animal and Plant Health Inspection Services, Centers for Epidemiology and Animal Health.

The report, Equine Herpesvirus Myeloencephalopathy: Mitigation Experiences, Lessons Learned, and Future Needs is based on interviews with 18 veterinarians or state equine program managers who worked to control recent outbreaks of the disease. You can download a copy here.

Also available is an educational brochure about EHM produced by USDA Animal and Plant Health Inspection Service: Veterinary Services. Equine Herpesvirus (EHV) Myeloencephalopathy: A Guide to Understanding the Neurologic Form of EHV Infection is available here.

Read more.

Saturday, July 18, 2009

Laminitis: value of soaking hay?

Soaking hay before feeding cannot be relied on to make it safe for laminitis-prone horses, according to a recent study.

One of the factors that has been recognised as increasing the risk of laminitis is the over consumption of water soluble carbohydrates (WSC). It has been recommended that obese animals and those at risk of laminitis should be fed hay with a non-structural carbohydrate (WSC and starch) content of less than 10%. Soaking hay in water before being fed has been suggested in order to reduce the WSC.

The study, conducted by the Laminitis Consortium, examined the loss of water-soluble carbohydrates from different hays submerged in water for up to 16 hours. The nine different hay samples were analysed for WSC and then soaked in cold water. The soaked samples were subsequently analysed after 20 minutes, 40 minutes, three hours and 16 hours.

“The results showed a highly variable leaching of WSC and substantially less leaching than reported previously for chopped hay soaked for 30 minutes” explained Clare Barfoot. “Very few samples reached below 10% WSC, despite prolonged soaking. The concern is that this strongly suggests that soaking may not be sufficient to render some hays safe to feed to horses and ponies prone to laminitis.”

Read more...

Tuesday, July 14, 2009

Changes to UK horse passport rules

The UK's horse passport rules have been tightened up from the begining of July 2009. The horse's owner or keeper is responsible for making sure that each horse has a passport, and that it is available for inspection at all times. You don't need to have the passport with you when the horse is grazing or being moved on foot - but you do have to show it to an inspector within three hours of being asked.

With very few exceptions, all horses have to have a passport. Both the owner, and the main keeper, is responsible for making sure the horse is correctly identified - but only the owner can apply for the passport.

The big change is that to be issued with a passport now horses must be microchipped. As a consequence, the diagram (silhouette) of the horse is no longer compulsory. However, many breed societies and passport issuing authorities still require a silhouette at this time.

For more details see:

http://www.direct.gov.uk/en/HomeAndCommunity/InYourHome/AnimalsAndPets/DG_178412

Saturday, June 27, 2009

Treating aural plaques

#Aural plaques are whitish lesions on the inner surface of the ear. They are slightly raised, with a scaly appearance. One or both ears may be affected.

They are thought to be caused by infection with a papilloma (wart) virus and may be spread by biting flies. Aural plaques do not go away on their own and respond poorly to treatment.

But now research at the University of Minnesota suggests imiquimod can help clear the aural plaques and make the ears less sensitive.


Read more...

Friday, June 26, 2009

Hope for headshakers.

A new procedure may bring relief for headshaking horses.

Surgeons at the Philip Leverhulme Equine Hospital at the University of Liverpool have developed a technique that uses small coils implanted alongside the nerves in the side of the face.

Read more...

Effect of exercise on behaviour

Effect of exercise on behaviour

Is one type of exercise better than another for reducing unwanted behaviour in stabled horses?

Stabling reduces the opportunity for exercise. Horses confined to stables may become difficult to manage. And they often show a burst of activity when eventually turned out -trotting, cantering and bucking - (known as the “rebound effect”).

A recent study conducted at the Equine Centre at Charles Sturt University, Wagga Wagga, New South Wales, Australia assessed the influence of exercise on stabled horses’ behaviour.

Read more...

Thursday, July 06, 2006

New articles in archives.

The July edition of Equine Science Update e-news was published last week. The articles are now available in the archives.

Recent additions to the archives include:

  • Airway inflammation affects dope tests.
  • Ciplatin and IL-2 for sarcoid treatment.
  • Electrochemotherapy for sarcoid treatment.
  • Timed breeding protocol for frozen semen.
  • Frozen semen qality varies with time of year.
  • Gait analysis in the field.
  • Examining the horses'sear.
  • Absorption of topical hydrocortisone.
  • Welfare aspects of "rollkur" technique.

Don't miss the next edition of Equine Science Update e-news. It's free!

Or subscribe now to search the archives.

Tuesday, June 20, 2006

Archives growing.

More articles have been added to the archives including:

  • Can vaccines aggravate chronic laminitis?
  • Scintigraphy for investigating malabsorption.
  • MRI becoming more widespread.
  • Oxytocin for treatment of choke.
  • Non-surgical rectal tear treatment.
  • Controlling respiratory disease.
  • Rotavirus vaccine studies.
  • More shock wave success.

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Saturday, June 17, 2006

More articles added to archives.

A further batch of past articles have been posted to the Equine Science Update archives, including:

Equine Rhabdomyolisis Syndrome.
Recurrent Uveitis: new treatment.
Early test for Fell Pony Syndrome.
Does heart size affect racing speed?
Mold fungi may cause hoof disease.
Exercise and joint development.
Inducing lactation in mares.

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Friday, June 09, 2006

More articles added to archives.

Recent additions to the archives include:

Tenoscopic treatment of tendon sheath infection.
Equine motor neuron disease: diagnosis under epidural anesthesia.
Effect of recipent mare status on success of embryo transfer.
Exercise Induced Pulmonary Haemorrhage.
Incidence of colic.
COPD: recent developments.
Coughing in Thoroughbred racehorses.
Desmitis of the collateral ligaments of the distal interphalangeal joint.
Poor performance in sport horses.

Access to these and other articles in the archives are available to subscribers.

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Wednesday, June 07, 2006

More articles posted to archives.

More articles have be added to the archives, including:

Horse-friendly wormer testing.
Active abdominal fluid drainage.
Search for early tendon damage test.
Cushing's disease: Chaste berry ineffective.
Evaluating medications for grass sickness.
Urine test for grass sickness?
Potential non-invasive test for grass sickness.
Horses learn visual tasks better at ground level.

For details of subscriptions see Equine Science Update archives.

Monday, June 05, 2006

New articles in archives.

The May edition of the Equine Science Update e-news was published last week. Topics covered, which are now available in the archives were:

Hoof growth between shoeings.
Turnout and behavior.
Sucrose absorption ulcer test.
Dangers of ivermectin overdose.

Other articles recently added to the archives include:
Horse-friendly wormer testing.
Insemination after uterine flush.
Bots in South West England.


Access to the archives is available on subscription.

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Thursday, March 30, 2006

Equine Science Update e-news March edition.

The March edition of the newsletter is almost ready. Topics include:

Conformation and performance in Thoroughbred yearlings.
Anthelmintics - too much of a good thing?
Do horses find therapeutic riding stressful?
Confirming grass sickness.

If you would like a free copy, please go to
www.equinescienceupdate.co.uk

Wednesday, March 08, 2006

Equine Lameness News from Equine Science Update

News relating to lameness in horses is now available as an RSS feed. For more details see:

www.equinescienceupdate.co.uk/rssfeeds.htm

Monday, March 06, 2006

February e-news.

The February edition of Equine Science update e-news was published last week. Articles include:
  • Treatment of heaves.
  • Cyathostomes resistant to pyrantel.
  • Contaminated hay causes colic.
  • Assessment and foot care for limb deformities in foals.
The articles are all available in the archives.

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Monday, January 30, 2006

January e-news published.

The January edition of the equine science update e-news was distributed yesterday. This months topics covered:
Equine recurrent uveitis - vaccination evaluated.
Favorite flavors.
Yeast treatment for diarrhea.
DDSP - conservative treatment.

Don`t miss next month`s edition. Go to www.equinescienceupdate.co.uk and sign up now.

Thursday, January 12, 2006

The Foaling Guide arrives safely.

We are pleased to announce the arrival online of The Foaling Guide, filled with information, tips and advice. As you while away the hours waiting for your foal to arrive, why not prepare for the event by reading this e-book. For more details see: www.thefoalingguide.com .