Wearing lights when out riding on roads could be safer than wearing reflective or fluorescent clothing according to research presented at the International Society of Equitation Science annual conference, July 2013.
Rose Scofield, from Duchy College, Cornwall, UK conducted a questionnaire-based study to investigate the value of bright reflective clothing in reducing the risk of ”near misses” between horses and vehicles.
She distributed questionaires through equine websites and forums, receiving 426 replies. Participants answered questions regarding the fluorescent or reflective equipment they and their horses were wearing, and whether they had been involved in near miss incidents.
Scofield grouped the responses according to whether the respondents had experienced a “near miss” with traffic or not. Then she examined whether or not they had been wearing reflective and /or fluorescent clothing.
Most riders who responded to the questionnaire did use some reflective equipment or clothing when riding on the road.
However, when she analysed the data, what she found was perhaps surprising. Reflective clothing, worn either by the rider or the horse, appeared to have no significant effect on the likelihood of a “near miss”.
60% of riders reported a near miss. But the proportion wearing reflective clothing on either the horse or rider was similar to that of those who did not experience a near miss.
However, significantly fewer near misses were reported by riders wearing lights.Of all the riders, 8.2% wore lights and did not experience a near miss, whereas 3.6% had a near miss despite wearing lights.
“This suggests that wearing lights should possibly be recommended when riding on the roads to enhance the safety of both rider and horse and contribute to the welfare of the leisure horse in particular.”
“The use of lights by a rider and horse combination may prove a sound contribution to the welfare of the leisure horse in avoiding possible road accidents.”
For more details see:
Road safety: is there a relationship between ‘near misses’ and the use of rider and horse reflective/fluorescent equipment?
Rose M. Scofield, Hannah Savin, and Hayley Randle,
Proceedings of the International Society of Equitation Science (2013) p30
Thursday, August 15, 2013
Does whip use improve show jumping performance?
Researchers in the UK have turned their attention to the use of the whip in show jumping, to see whether it is associated with improved performance.
Catherine Watkins of Hartsbury College in Gloucester presented the results of the study at the 2013 International Society for Equitation Science (ISES) conference.
Whips are carried and used in competition by show jumpers at both the non-elite and elite levels. The study showed that non-elite show jumping riders were more likely than elite riders to carry a whip. It also showed that increased use of the whip did not increase the chance of finishing with a clear show jumping round. In fact, when the whip was used, the horse was less likely to complete a clear round.
The researchers observed 229 non-elite and 229 elite show jumpers at affiliated UK show jumping competitions.
Non-elite riders were found more likely (69%) to carry a whip than elite riders (62%). Faults were 1.3 times more likely to occur for those riders who carried a whip. The likelihood of achieving a clear round decreased for riders who used the whip, with riders who carried but did not use a whip faring better. Elite riders who carried the whip but did not use it fared the best.
In addition to calculating the likelihood of achieving faults or clear rounds, the researchers compared active use of the whip with current British Show Jumping rules, which state that: misuse or excessive use will not be tolerated; the whip should not be used more than three times after entering the arena; the whip cannot be used prior to commencement of the course; and the whip is only used if the rider removes a hand from the reins.
In spite of these rules, Ms Watkins and her research partner observed seeing “a fair amount of misuse or excessive use of the whip in the arena” “The study found a total of 38 cases where the whip was used either as a punishment tool, or was not presented at the fence.” Of all the show jumping riders observed, none was reprimanded for misuse of the whip or rule infraction.
Of the 458 rounds observed, “Overall 65.5% of riders carried a whip…and 20.7% of those who carried a whip used a whip. Non-elite riders were more than twice as likely to use the whip.”
The researchers speculated that knowledge and experience level reduced the likelihood of the whip being used. An alternative explanation is that elite riders are on higher quality, more athletic horses that simply don’t have as much “need” for the whip.
This information may be of value to both show jumping organizations reviewing position statements on whip use and equestrians competing in shows. “Those who used the whip were statistically less likely to achieve a clear round…elite riders were statistically more likely to achieve faults if the whip was used.” states Watkins.
With an increase in public awareness of welfare in equestrian sport, discussion of the rules governing whip use is gaining momentum. As evidence is emerging from other equestrian disciplines there is clearly a need for continuing review of whip use. The researchers hope that their study will help stimulate the debate.
For more details see:
Evaluation of whip use and prevalence in elite and non-elite show jumpers.
Catherine Watkins and Darcy Murphy.
Proceedings International Society for Equitation Science (2013) p54
Catherine Watkins of Hartsbury College in Gloucester presented the results of the study at the 2013 International Society for Equitation Science (ISES) conference.
Whips are carried and used in competition by show jumpers at both the non-elite and elite levels. The study showed that non-elite show jumping riders were more likely than elite riders to carry a whip. It also showed that increased use of the whip did not increase the chance of finishing with a clear show jumping round. In fact, when the whip was used, the horse was less likely to complete a clear round.
The researchers observed 229 non-elite and 229 elite show jumpers at affiliated UK show jumping competitions.
Non-elite riders were found more likely (69%) to carry a whip than elite riders (62%). Faults were 1.3 times more likely to occur for those riders who carried a whip. The likelihood of achieving a clear round decreased for riders who used the whip, with riders who carried but did not use a whip faring better. Elite riders who carried the whip but did not use it fared the best.
In addition to calculating the likelihood of achieving faults or clear rounds, the researchers compared active use of the whip with current British Show Jumping rules, which state that: misuse or excessive use will not be tolerated; the whip should not be used more than three times after entering the arena; the whip cannot be used prior to commencement of the course; and the whip is only used if the rider removes a hand from the reins.
In spite of these rules, Ms Watkins and her research partner observed seeing “a fair amount of misuse or excessive use of the whip in the arena” “The study found a total of 38 cases where the whip was used either as a punishment tool, or was not presented at the fence.” Of all the show jumping riders observed, none was reprimanded for misuse of the whip or rule infraction.
Of the 458 rounds observed, “Overall 65.5% of riders carried a whip…and 20.7% of those who carried a whip used a whip. Non-elite riders were more than twice as likely to use the whip.”
The researchers speculated that knowledge and experience level reduced the likelihood of the whip being used. An alternative explanation is that elite riders are on higher quality, more athletic horses that simply don’t have as much “need” for the whip.
This information may be of value to both show jumping organizations reviewing position statements on whip use and equestrians competing in shows. “Those who used the whip were statistically less likely to achieve a clear round…elite riders were statistically more likely to achieve faults if the whip was used.” states Watkins.
With an increase in public awareness of welfare in equestrian sport, discussion of the rules governing whip use is gaining momentum. As evidence is emerging from other equestrian disciplines there is clearly a need for continuing review of whip use. The researchers hope that their study will help stimulate the debate.
For more details see:
Evaluation of whip use and prevalence in elite and non-elite show jumpers.
Catherine Watkins and Darcy Murphy.
Proceedings International Society for Equitation Science (2013) p54
Wednesday, July 31, 2013
700,000 year old horse DNA sequenced
Researchers have constructed the DNA from a 700,000 year old horse fossil from the far north west of Canada, which has challenged the accepted version of equine evolution.
Indeed, the widely accepted understanding of the horse's evolution is of a gradual increase in size from small forest-dwelling animals to the larger animals of today.
The fossil, found in the Klondike area of Yukon by University of Alberta researcher Duane Froese, raised questions about this version of events. Not only was the fossil considerably older than those commonly found in ice age deposits in the Yukon, Alaska and Siberia, it was also at least as large as many modern horses.
The layer of permafrost in which the fossil was found has been dated by the volcanic ashes it contained as originating about 700,000 years ago. This puts it among the oldest known ice in the northern hemisphere.
An international research team, led by Ludovic Orlando, and colleagues at the University of Copenhagen, Denmark, managed to extract fragments of ancient DNA from the fossil. After several years work, they succeeded in constructing a draft genome of the horse. This is by far the earliest genome sequence yet recorded. “Our data represent the oldest full genome sequence determined so far by almost an order of magnitude” they say in the report of their work, which is published in the journal Nature.
It is unlikely that the research would have been successful had the DNA not remained frozen over the past 700,000 years.
Having reconstructed the complete genome of the horse, the team compared it with DNA from a horse dating from the Late Pleistocene (about 43,000 years ago), and from five contemporary domestic horse breeds, a Przewalski's horse and a donkey.
By looking at differences between the DNA of the various horses, they could estimate the rate at which mutations occurred in the genetic code over time.
Analysis of differences between these genomes indicated the last common ancestor of all modern equids ( horses, zebras and donkeys ) would have lived about 4.0- 4.5 million years ago. This is about twice as far back than previously thought.
The results also indicated that Przewalski’s horse― an endangered subspecies native to the Mongolian steppes ― diverged from the lineage that gave rise to modern domesticated horses about 50,000 years ago.
More information at: equinescienceupdate.com
Indeed, the widely accepted understanding of the horse's evolution is of a gradual increase in size from small forest-dwelling animals to the larger animals of today.
The fossil, found in the Klondike area of Yukon by University of Alberta researcher Duane Froese, raised questions about this version of events. Not only was the fossil considerably older than those commonly found in ice age deposits in the Yukon, Alaska and Siberia, it was also at least as large as many modern horses.
The layer of permafrost in which the fossil was found has been dated by the volcanic ashes it contained as originating about 700,000 years ago. This puts it among the oldest known ice in the northern hemisphere.
An international research team, led by Ludovic Orlando, and colleagues at the University of Copenhagen, Denmark, managed to extract fragments of ancient DNA from the fossil. After several years work, they succeeded in constructing a draft genome of the horse. This is by far the earliest genome sequence yet recorded. “Our data represent the oldest full genome sequence determined so far by almost an order of magnitude” they say in the report of their work, which is published in the journal Nature.
It is unlikely that the research would have been successful had the DNA not remained frozen over the past 700,000 years.
Having reconstructed the complete genome of the horse, the team compared it with DNA from a horse dating from the Late Pleistocene (about 43,000 years ago), and from five contemporary domestic horse breeds, a Przewalski's horse and a donkey.
By looking at differences between the DNA of the various horses, they could estimate the rate at which mutations occurred in the genetic code over time.
Analysis of differences between these genomes indicated the last common ancestor of all modern equids ( horses, zebras and donkeys ) would have lived about 4.0- 4.5 million years ago. This is about twice as far back than previously thought.
The results also indicated that Przewalski’s horse― an endangered subspecies native to the Mongolian steppes ― diverged from the lineage that gave rise to modern domesticated horses about 50,000 years ago.
More information at: equinescienceupdate.com
Tuesday, July 30, 2013
Genetics and tendon injury
Superficial digital flexor (SDF) tendon injury is a common cause of wastage in National Hunt Thoroughbred (TB) horses – leading to training and racing days lost and early retirement.
Recent research, funded by the Horserace Betting Levy Board, explored whether genetic susceptibility is a potential risk factor for SDF tendon damage in the TB racehorse.
The work, by Lucinda Tully and colleagues, compared the genotype of horses with and without SDF tendinitis in a case-control study.
Tully looked specifically at single nucleotide polymorphisms (SNPs) in seven genes that are involved in tendon structure, function, and remodelling or are known to be involved in Achilles tendinopathy (an equivalent condition in humans).
Genetic material for the study was derived from mane hair, or peripheral blood cells, collected from 270 horses with a history of SDFT strain, and 270 unaffected control samples, chosen at random from among the other horses on yards with affected cases.
The study's findings suggest that sequence variants in TNC and COL5A1 genes are associated with SDF tendinopathy in TB racehorses.
A SNP in COL5A1 significantly increased the odds of having SDF tendinitis. Racehorses having two copies of the COL5A1 COL5A1_01 variant allele were nearly 3 times more likely to have SDF tendinopathy than those homozygous for the wild-type allele.
Conversely , a SNP in the TNC gene was associated with significantly lower odds of SDFT injury. Racehorses heterozygous for the TNC BIEC2-696469 polymorphism were less likely to have SDF tendinopathy than those with two copies of the wild-type allele.
The research team conclude that variants in the TNC and COL5A1 genes are associated with SDF tendinopathy in a population of UK trained NH TB racehorses.
They suggest that further studies in a larger group of horses are needed to determine the significance of these findings at the population level.
In the future it may be possible to use genetic markers to identify horses at risk of SDF tendinopathy.
Read more: www.equinescienceupdate.com
Recent research, funded by the Horserace Betting Levy Board, explored whether genetic susceptibility is a potential risk factor for SDF tendon damage in the TB racehorse.
The work, by Lucinda Tully and colleagues, compared the genotype of horses with and without SDF tendinitis in a case-control study.
Tully looked specifically at single nucleotide polymorphisms (SNPs) in seven genes that are involved in tendon structure, function, and remodelling or are known to be involved in Achilles tendinopathy (an equivalent condition in humans).
Genetic material for the study was derived from mane hair, or peripheral blood cells, collected from 270 horses with a history of SDFT strain, and 270 unaffected control samples, chosen at random from among the other horses on yards with affected cases.
The study's findings suggest that sequence variants in TNC and COL5A1 genes are associated with SDF tendinopathy in TB racehorses.
A SNP in COL5A1 significantly increased the odds of having SDF tendinitis. Racehorses having two copies of the COL5A1 COL5A1_01 variant allele were nearly 3 times more likely to have SDF tendinopathy than those homozygous for the wild-type allele.
Conversely , a SNP in the TNC gene was associated with significantly lower odds of SDFT injury. Racehorses heterozygous for the TNC BIEC2-696469 polymorphism were less likely to have SDF tendinopathy than those with two copies of the wild-type allele.
The research team conclude that variants in the TNC and COL5A1 genes are associated with SDF tendinopathy in a population of UK trained NH TB racehorses.
They suggest that further studies in a larger group of horses are needed to determine the significance of these findings at the population level.
In the future it may be possible to use genetic markers to identify horses at risk of SDF tendinopathy.
Read more: www.equinescienceupdate.com
Monday, July 29, 2013
Fishing for chips
Not only is chipping
far more reliable for marking horses than traditional methods of
branding, it also causes far less injury to the animals, according to
research led by Christine Aurich at the University of Veterinary
Medicine, Vienna.
With
very few exceptions, it is now mandatory within the European Union to
mark horses by means of transponders. Nevertheless, some sport-horse
registries oppose the use of microchips because they believe that the
rate of identification failure is unacceptably high.
The
“best” scanner (equipped with a digital signal processing
function that filters interfering signals) detected and read all
chips correctly when it was placed on the side of the neck where the
chip was implanted, and located nearly 90% of the chips even when it
was on the other side of the neck. The other two scanners performed
considerably less well, producing correct reads in around 90% of the
cases when on the same side of the neck. On the opposite side of the
neck, however, the success rate fell to between 20-25%.
It never took more than
25s to detect the microchip , and with the most effective scanner it
took a maximum of 5 seconds. So the most effective scanner not only
detected all the microchips , it did so in the shortest time.
As
Wulf puts it, “It is important that the scanners find and read the
chips correctly in every case. We can only recommend the
top-of-the-range scanner, which should ideally be placed on the side
of the horse’s neck where the chip was implanted.” However,
Aurich adds, “Even the lowest quality scanner we tested, performed
much better than traditional branding methods of horse
identification.”
The
major objection to the use of branding relates to the pain and
long-term damage it inflicts on the animals. Wulf and her colleagues
thus investigated whether the use of microchip markers was any
better. She looked closely at the site of chip implantation in 16
horses of nine different breeds and of various ages that had been
submitted to the Vetmeduni for post mortem examinations. In the vast
majority of cases, the chips seemed to have caused absolutely no ill
effects. Two animals that were moderately affected had probably only
been chipped recently and the wound had not yet had time to heal.
Aurich sums up the
findings, “Not only is chipping a far more reliable method for
marking horses than traditional methods of branding, we also found
that it causes far less injury to the animals.”
More
information: equinescienceupdate.com
Tuesday, July 23, 2013
Does the human voice calm horses?
In
addition to being warned to move slowly around horses, many new
riders are also instructed to speak in a soothing tone, in the belief
that it can make the animal calm. A recent study presented at the
2013 conference of the International Society for Equitation Science
investigated whether such advice actually had a beneficial impact on
the horse.
According
to Katrina Merkies of the University of Guelph, “Anecdotally, we
know that horses respond better to calm and soothing tones, so our
hypothesis is that speaking in a calm and pleasant voice will inspire
calm behaviour in a horse.”
Merkies
and other researchers from both the University of Guelph, Ontario,
Canada and Agrocampus Rennes, Rennes, France set out to discover
whether emotional tone and pitch of voice did have any effect on
horses. For the study, eight draft horses were individually assessed
in a 10 m round pen. Each horse was released into the pen, and
baseline behaviour and heart rate (HR) readings were taken over a
five minute period. Behaviours scored included: gait; head height
position; ear and body position relative to the human.
After
establishing baselines, a familiar human approached the pen, and one
of four recorded voices was played for a 10 second duration: PL –
pleasant voice low tone; PH – pleasant voice high tone; SL –
stern voice low tone; SH – stern voice high tone.
Researchers
found that the horses maintained the lowest head position when no
human or sound was present, but all elevated their heads in the
presence of a human or sound. The playing of a pleasant tone resulted
in the horses positioning their bodies toward the human. While there
was no treatment effect on ear position, the horses did orientate
their ears more toward the sound if the human was present.
Horse
HR did not increase solely in the presence of the human, but it did
increase coupled with sound, with SL in particular resulting in the
greatest effect. Results would indicate that fewer signs of
behavioural distress are observed when a human speaks to the horse in
a pleasant, low tone rather than a stern tone.
“We’ve
shown that horses do in fact display different physiological and
behavioural responses to different tones and voice. So horses are
able to discriminate between different tones or qualities of voice.”
Research
often creates more questions than it answers, and based on the
results obtained, additional research may be required: “However,
it’s not clear if the horse is interpreting or responding to the
tone of voice alone, or if it’s looked at in combination - both
tone of voice and the human’s body language. Which is the more
salient clue to the horse? That certainly warrants further study.”
Monday, July 22, 2013
Improving management of wild horses and burros
How to manage the feral
horses and burros of the western United States has been the subject
of heated debate for some time.
A recent scientific
review found that the current practice of removing free-ranging
horses is counter-productive. The review concluded that the current
approach promotes a high population growth rate, and that maintaining
horses in long-term holding facilities is both economically
unsustainable and contrary to public expectations.
Most free-ranging horse
populations are growing at 15 percent to 20 percent a year, meaning
these populations could double in four years and triple in six years.
“With no intervention
by BLM (the U.S. Bureau of Land Management), the horse population
will increase to the point of self-limitation, where both degradation
of the land and high rates of horse mortality will occur due to
inadequate forage and water. In addition, periodic droughts, many of
them severe, in the western public lands cause immediate and often
unpredicted impacts.”
The report noted that
there is little, if any, public support for allowing such harm to
come to either the horse population or the land itself. However, the
current removal strategy used by BLM actually perpetuates the
overpopulation problem by maintaining the number of animals at levels
below the carrying capacity of the land. Although this protects the
rangeland and the horse population in the short term, it results in
continually high population growth and exacerbates the long-term
problem.
To manage horse
populations without periodic removals, the committee concluded that
widespread and consistent application of fertility control would be
required.
Here's a video in which
Committee chair Dr. Guy Palmer of Washington State University shares
key findings about using science to improve the BLM wild horse and
burro program.
The full report is
available online.
Thursday, June 27, 2013
Hendra Virus Research Program
The impact of human behaviour on the spread of the Hendra virus is being studied to help develop control strategies.
HHALTER (Horse owners and Hendra Virus: A Longitudinal cohort study To Evaluate Risk) is a three-year project funded by the Commonwealth of Australia, the State of New South Wales, the State of Queensland and the Rural Industries Research and Development Corporation under the National Hendra Virus Research Program.
The project aims to look at how humans respond to the threat of Hendra virus, and what can be done by horse owners and others in regular contact with horses to reduce the chance of transmission from flying foxes to horses and then to humans.
The researchers hope to attract more than 2500 people, horse owners and people in regular contact with horses, from all sectors of the equine industry throughout Australia. It is not only residents of areas where Hendra virus cases have already occurred that are sought for the study. People living in parts of Australia that have not seen cases of the disease are encouraged to take part as well.
Participants are asked to complete five surveys conducted at six-month intervals. The surveys investigate the factors influencing people’s awareness about the risks from Hendra virus and their use of prevention strategies.
Dr Kate Sawford, Research Associate in Animal Health Biosecurity at the University of Sydney, said: “The combination of a high human death rate, no cure and no human vaccine means that Hendra virus is a frightening disease. An outbreak of Hendra virus on a property cannot only impact people’s health, but also be financially, professionally, emotionally and psychologically damaging.
The first survey with horse owners and horse care providers has now been completed. This focused on Hendra virus risk awareness, perceptions and knowledge, with large sections dedicated to practices employed on properties to limit the risk from the virus and attitudes to vaccination.
Another four surveys with horse owners and horse care providers will be conducted over the next two years.
To participate in the research project or find out more information visit http://www.uws.edu.au/hhalter
A brief summary of some preliminary findings is available in the first HHALTER Project Research Newsletter.
HHALTER (Horse owners and Hendra Virus: A Longitudinal cohort study To Evaluate Risk) is a three-year project funded by the Commonwealth of Australia, the State of New South Wales, the State of Queensland and the Rural Industries Research and Development Corporation under the National Hendra Virus Research Program.
The project aims to look at how humans respond to the threat of Hendra virus, and what can be done by horse owners and others in regular contact with horses to reduce the chance of transmission from flying foxes to horses and then to humans.
The researchers hope to attract more than 2500 people, horse owners and people in regular contact with horses, from all sectors of the equine industry throughout Australia. It is not only residents of areas where Hendra virus cases have already occurred that are sought for the study. People living in parts of Australia that have not seen cases of the disease are encouraged to take part as well.
Participants are asked to complete five surveys conducted at six-month intervals. The surveys investigate the factors influencing people’s awareness about the risks from Hendra virus and their use of prevention strategies.
Dr Kate Sawford, Research Associate in Animal Health Biosecurity at the University of Sydney, said: “The combination of a high human death rate, no cure and no human vaccine means that Hendra virus is a frightening disease. An outbreak of Hendra virus on a property cannot only impact people’s health, but also be financially, professionally, emotionally and psychologically damaging.
The first survey with horse owners and horse care providers has now been completed. This focused on Hendra virus risk awareness, perceptions and knowledge, with large sections dedicated to practices employed on properties to limit the risk from the virus and attitudes to vaccination.
Another four surveys with horse owners and horse care providers will be conducted over the next two years.
To participate in the research project or find out more information visit http://www.uws.edu.au/hhalter
A brief summary of some preliminary findings is available in the first HHALTER Project Research Newsletter.
Tuesday, June 25, 2013
Tick paralysis high death rate
Tick paralysis is more likely to be fatal in horses than in small animals according to recent research.
Findings presented at the Australian Veterinary Association conference showed that 26% of affected horses died and 35% of surviving horses developed one or more complications.
Tick paralysis,is caused by the Australian paralysis tick Ixodes holocyclus, and has been known to affect horses since the early days of Australian settlement.
Dr Mick Ruppin, one of the co-authors of the study explained: “The paralysis tick is found predominantly along the east coast of Australia, in high rainfall areas. Our study was a retrospective analysis of cases treated at our practice on the east coast of Queensland, over the last ten years, as well as cases treated at other practices along the east coast over the last five years. A total of 103 cases were analysed.
“The number of paralysis ticks required to paralyse a horse is unknown but our study included cases where large horses with only one to two ticks were paralysed and unable to stand. Horses of any age and size can be affected by tick paralysis” Dr Ruppin added.
“The mortality rate of 26% in horses is much higher than the mortality rate in small animals which is around five per cent.
Dr Ruppin said that higher mortality rates in horses could be due to a range of factors including horses being badly affected before vets are called; difficulties associated with nursing a recumbent horse; difficulties with owners needing to deliver the bulk of nursing care and lack of information to veterinarians treating the disease in horses.
“In our study, 26 % of the horses died and of the surviving horses, 35% developed one or more complications including pressure sores, corneal ulcers, pneumonia and sepsis.
“Given the difficulties associated with treating tick paralysis in horses, prevention is the best option for horse owners,” he said.
Read more at equinescienceupdate.com
Findings presented at the Australian Veterinary Association conference showed that 26% of affected horses died and 35% of surviving horses developed one or more complications.
Tick paralysis,is caused by the Australian paralysis tick Ixodes holocyclus, and has been known to affect horses since the early days of Australian settlement.
Dr Mick Ruppin, one of the co-authors of the study explained: “The paralysis tick is found predominantly along the east coast of Australia, in high rainfall areas. Our study was a retrospective analysis of cases treated at our practice on the east coast of Queensland, over the last ten years, as well as cases treated at other practices along the east coast over the last five years. A total of 103 cases were analysed.
“The number of paralysis ticks required to paralyse a horse is unknown but our study included cases where large horses with only one to two ticks were paralysed and unable to stand. Horses of any age and size can be affected by tick paralysis” Dr Ruppin added.
“The mortality rate of 26% in horses is much higher than the mortality rate in small animals which is around five per cent.
Dr Ruppin said that higher mortality rates in horses could be due to a range of factors including horses being badly affected before vets are called; difficulties associated with nursing a recumbent horse; difficulties with owners needing to deliver the bulk of nursing care and lack of information to veterinarians treating the disease in horses.
“In our study, 26 % of the horses died and of the surviving horses, 35% developed one or more complications including pressure sores, corneal ulcers, pneumonia and sepsis.
“Given the difficulties associated with treating tick paralysis in horses, prevention is the best option for horse owners,” he said.
Read more at equinescienceupdate.com
Labels:
horse welfare,
immunity,
parasitic disease in horses
Sunday, June 23, 2013
Sycamore linked to Atypical Myopathy
Toxic seeds of the sycamore (Acer pseudoplatanus) are the likely cause of Atypical Myopathy (AM) Atypical Myopathy is a highly fatal muscle disease of horses in the UK and Northern Europe. In ten years, approximately twenty European countries have reported the disease. Incidences tend to occur repeatedly in the autumn and in the spring following large autumnal outbreaks. Horses that develop AM are usually kept in sparse pastures with an accumulation of dead leaves, dead wood and trees in or around the pasture and are often not fed any supplementary hay or feed.
A very similar disorder, Seasonal Pasture Myopathy (SPM), which occurs in Midwestern USA and Eastern Canada, is now known to be caused by a toxin (hypoglycin A), contained in seeds from the box elder tree.
The European research team, led by Dominic Votion, of the University of Liege, studied 17 horses from Belgium, Germany and The Netherlands, suffering from Atypical Myopathy. They found high concentrations of methylenecyclopropyl acetic acid (MCPA), a toxic metabolite of hypoglycin A, in the serum of all affected horses.
The pastures of 12 of the horses were visited by experienced botanists and Acer pseudoplatanus, the sycamore maple, was found to be present in every case. This was the only tree common to all visited pastures. Acer negundo, the box maple, was not present on any of the farms on which atypical myopathy occured.
Researchers believe hypoglycin A is the likely cause of both AM in Europe and SPM in North America. The sycamore and the box elder are known to produce seeds containing hypoglycin A and the pastures of the afflicted horses in Europe and the USA were surrounded by these trees.
in European horses, according a new study.
Read more at equinescienceupdate.com
Sunday, June 16, 2013
More help needed for saddle slip study
Horse riders are being asked to help with an important research project looking into the interaction between horse, saddle and rider. Researchers, led by Dr Sue Dyson, Head of Clinical Orthopaedics at the Centre for Equine Studies at the Animal Health Trust, are running a detailed study to find out how the horse, rider and saddle influence each other. In particular they want to understand better why some saddles persistently slip to one side in some horses.
Saddle slip in sports horses is a well-recognised problem that can occur for a variety of reasons, including asymmetry in the shape of the horse’s back, riders sitting crookedly and ill-fitting saddles.
Participants in the study simply need to complete an anonymous online questionnaire. In doing so the researchers say that they will be helping to protect and improve the future health, welfare and longevity of the ridden horse.
Preliminary invevstigations have looked at just over 700 riders, but for a more accurate picture the research team would like to include more than 1000 people.
“We are urging all riders, whatever their level or ability, to help by completing the questionnaire,” said Line Greve, a PhD student at the Centre for Equine Studies.
“Saddle slip is a problem seen in all sorts of horses and ponies and can contribute to back pain and thus impaired performance,” she explains. “Research suggests that 25% of British dressage horses have a history of back-related problems and subsequent reduced performance.”
The online questionnaire should take no more than 15 minutes to complete. The questions cover saddle types, use and maintenance as well as rider experience and training, and any previous equine lameness or back-related problems.
Participants will remain anonymous and the results will be presented at the Saddle Research Trust Conference in 2014.
To take part in the study, follow this link to the questionnaire
http://www.aht.org.uk/cms-display/premise_questionnaire.html.
Thursday, June 06, 2013
Sperm from dead horses
The unexpected death of a prize stallion need not necessarily spell the end of his breeding career. Obviously many breeding stallions will have had semen frozen and stored for future use. But what if that has not been done?
Or you may have a promising colt and be unable to decide between keeping him entire for breeding, or having him castrated. The answer may lie in cryopreservation of epididymal sperm.
It is now possible to salvage sperm from the tail of the epididymis – the long convoluted tube into which the sperm pass after being produced in the testis. As well as acting as a reservoir for the sperm, the epididymis provides an environment in which they can mature and become able to fertilise oocytes.
The procedure for harvesting and freezing the sperm is not widely available. So what can be done if the laboratory is a long way away? Will delay adversely affect the viability of the sperm?
Research in the Department of Physiology at the University of Murcia in Spain suggests that spermatozoa stored in the epididymis for up to 96 hours at 4º C can be cryopreserved successfully and still retain the ability to fertilise.
In work published in the journal Animal Reproduction Science, Luis Vieira and others studied the viability of sperm stored in the epididymis obtained from castrated horses.
Testes were transported to the laboratory in insulated containers at ambient temperature within one hour of castration. At the laboratory, the epididymides were washed in physiological saline, wrapped in foil to prevent them drying out, and stored in a refrigerator at 4º C for up to 96 hours.
The scientists harvested the sperm by introducing a syringe and needle into the vas deferens and flushing out the epididymal contents. The sperm were mixed with extender before being frozen and stored in liquid nitrogen.
Measurements of viability of sperm in the epididymal fluid were made at various stages in the procedure.
Viability was good (85%) if the sperm were harvested on the day of castration , and remained at more than 80% until 72 hours after castration. Sperm stored for 96 hours before harvesting were significantly less viable.
After dilution in the freezing media and storage at 4º C for 30 minutes, viability remained good for sperm harvested within 48 hours of castration. Viability was lower in sperm collected 72 and 96 hours after castration.
On the other hand, time (up to 96 hrs) from castration to harvesting did not appear to affect the viability after freezing and thawing, which was almost 35%.
Other measures of sperm viability and tests of their ability to fertilise in vitro, were carried out, including chromatin condensation, ROS generation, protein tyrosine phosphorylation and heterologous fertilization rate. These showed that epididymal stallion sperm stored for up to 72h in the epididymis at 4°C followed by cryopreservation, maintained both viability and ability to fertilize in vitro.
Although these were laboratory tests of viability, epididymal sperm have been used successfully.
Read more at equinescienceupdate.com
Or you may have a promising colt and be unable to decide between keeping him entire for breeding, or having him castrated. The answer may lie in cryopreservation of epididymal sperm.
It is now possible to salvage sperm from the tail of the epididymis – the long convoluted tube into which the sperm pass after being produced in the testis. As well as acting as a reservoir for the sperm, the epididymis provides an environment in which they can mature and become able to fertilise oocytes.
The procedure for harvesting and freezing the sperm is not widely available. So what can be done if the laboratory is a long way away? Will delay adversely affect the viability of the sperm?
Research in the Department of Physiology at the University of Murcia in Spain suggests that spermatozoa stored in the epididymis for up to 96 hours at 4º C can be cryopreserved successfully and still retain the ability to fertilise.
In work published in the journal Animal Reproduction Science, Luis Vieira and others studied the viability of sperm stored in the epididymis obtained from castrated horses.
Testes were transported to the laboratory in insulated containers at ambient temperature within one hour of castration. At the laboratory, the epididymides were washed in physiological saline, wrapped in foil to prevent them drying out, and stored in a refrigerator at 4º C for up to 96 hours.
The scientists harvested the sperm by introducing a syringe and needle into the vas deferens and flushing out the epididymal contents. The sperm were mixed with extender before being frozen and stored in liquid nitrogen.
Measurements of viability of sperm in the epididymal fluid were made at various stages in the procedure.
Viability was good (85%) if the sperm were harvested on the day of castration , and remained at more than 80% until 72 hours after castration. Sperm stored for 96 hours before harvesting were significantly less viable.
After dilution in the freezing media and storage at 4º C for 30 minutes, viability remained good for sperm harvested within 48 hours of castration. Viability was lower in sperm collected 72 and 96 hours after castration.
On the other hand, time (up to 96 hrs) from castration to harvesting did not appear to affect the viability after freezing and thawing, which was almost 35%.
Other measures of sperm viability and tests of their ability to fertilise in vitro, were carried out, including chromatin condensation, ROS generation, protein tyrosine phosphorylation and heterologous fertilization rate. These showed that epididymal stallion sperm stored for up to 72h in the epididymis at 4°C followed by cryopreservation, maintained both viability and ability to fertilize in vitro.
Although these were laboratory tests of viability, epididymal sperm have been used successfully.
Read more at equinescienceupdate.com
Tuesday, June 04, 2013
When to stop Lyme disease treatment?
Don't expect Borrelia antibodies to disappear rapidly following treatment in horses naturally infected with Lyme disease.
Lyme disease (LD) is caused by systemic infection with the spirochaete Borrelia burgdorferi. The most common signs in affected animals are lameness, often affecting more than one limb, and reluctance to work. Diagnosis of the disease is complicated by the many other possible causes of lameness and the high incidence of sub-clinical infection in areas in which the infection occurs. Many clinically normal animals have antibodies to Borrelia burgdorferi in their blood.
How do you decide on the length of treatment course necessary in cases of Lyme disease in horses?
Changes in the antibody levels are often used to assess when treatment has been successful. In experimental infections, infected animals show marked reduction in antibody levels after antibiotic treatment.
Does the same apply to naturally infected cases? Research in New York State suggests that ELISA serology is less helpful in those cases for determining when treatment is complete.
The study saw Dr Thomas J Divers and colleagues at Cornell Veterinary School collaborating with Dr Amy L Grice of the Rhinebeck Equine practice in New York State.
Thomas J Divers and colleagues at Cornell Veterinary School and Dr Amy L Grice of the Rhinebeck Equine practice compared Borrelia ELISA antibody concentrations in naturally exposed horses before and after antibiotic treatment for Lyme disease. The study included 68 horses treated with doxycycline or oxytetracycline and 183 horses that received no treatment.
They found that antibiotic treated horses had a decline in ELISA values in comparison to control horses. The scale of the decline in ELISA units following treatment was small compared to that previously reported in experimentally infected and treated ponies.
They conclude: “Persistently high ELISA titres following appropriate treatments for Lyme disease may not, without appropriate clinical signs, be a reason for more prolonged treatment.”
Read more at equinescienceupdate.com
Lyme disease (LD) is caused by systemic infection with the spirochaete Borrelia burgdorferi. The most common signs in affected animals are lameness, often affecting more than one limb, and reluctance to work. Diagnosis of the disease is complicated by the many other possible causes of lameness and the high incidence of sub-clinical infection in areas in which the infection occurs. Many clinically normal animals have antibodies to Borrelia burgdorferi in their blood.
How do you decide on the length of treatment course necessary in cases of Lyme disease in horses?
Changes in the antibody levels are often used to assess when treatment has been successful. In experimental infections, infected animals show marked reduction in antibody levels after antibiotic treatment.
Does the same apply to naturally infected cases? Research in New York State suggests that ELISA serology is less helpful in those cases for determining when treatment is complete.
The study saw Dr Thomas J Divers and colleagues at Cornell Veterinary School collaborating with Dr Amy L Grice of the Rhinebeck Equine practice in New York State.
Thomas J Divers and colleagues at Cornell Veterinary School and Dr Amy L Grice of the Rhinebeck Equine practice compared Borrelia ELISA antibody concentrations in naturally exposed horses before and after antibiotic treatment for Lyme disease. The study included 68 horses treated with doxycycline or oxytetracycline and 183 horses that received no treatment.
They found that antibiotic treated horses had a decline in ELISA values in comparison to control horses. The scale of the decline in ELISA units following treatment was small compared to that previously reported in experimentally infected and treated ponies.
They conclude: “Persistently high ELISA titres following appropriate treatments for Lyme disease may not, without appropriate clinical signs, be a reason for more prolonged treatment.”
Read more at equinescienceupdate.com
Friday, May 31, 2013
Healthy horses needed for research study in Saskatchewan
Researchers at the Western College of Veterinary Medicine (WCVM) in Saskatoon are looking to enrol between 40 and 50 healthy horses for a respiratory study this summer.
The study, led by Dr Julia Montgomery and Dr Katharina Lohmann, aims to determine reliable reference ranges for two common tests used to investigate respiratory disease in horses.
In the WCVM newsletter, Christina Weese writes that that questions about the two tests initially arose when a graduate student was studying lung inflammation markers in normal horses.
“We started looking at what the expected ranges for two common tests – tracheal wash and bronchoalveolar lavage (BAL) – were supposed to be,” explains Dr. Montgomery, an assistant professor in the WCVM’s Department of Large Animal Clinical Sciences.
“In the course of the study, we came across several horses that looked clinically healthy, but their tracheal wash and BAL levels were - according to the current definition - not normal.”
To be eligible for the study, horses should have no history of chronic airway disease, no history of respiratory disease within the last six months and no clinical symptoms at the time of the study. Also, to ensure collected samples remain viable, horses must be within two to three hours’ drive from the WCVM.
An initial examination will identify whether the animal is suitable for the study. The clinicians will perform a clinical examination, including listening to the heart and lungs and checking the temperature. They will also carry out a rebreathing test. This involves placing a bag over the horse's nose, making him breathe deeply, which may make any abnormalities in the lungs easier to detect.
If any signs of abnormality are discovered, the horse will not be suitable for the study and no further tests will be carried out.
If the respiratory system appears normal then further tests to sample fluids from the trachea (“tracheal wash”) and lungs (“brocho-alveolar lavage”) will be performed under sedation.
After samples are collected, team members will examine the blood work for any evidence of inflammation. Dr. Hilary Burgess, a veterinary clinical pathologist at the WCVM, is collaborating with Montgomery and Lohmann to do a cytological analysis of the tracheal wash and BAL samples. The samples will also be sent to the bacteriology lab at Prairie Diagnostic Services (Saskatchewan’s provincial veterinary laboratory) to determine what types of bacteria may be present.
Lohmann and Montgomery say their results will provide invaluable baseline information for equine populations around the Saskatoon area. The study will also help them to identify the next steps for future investigations of equine airway diseases such as RAO.
All study procedures can be carried out at the owners premises, and are free of charge.
The study runs from May to August 2013. More details can be found at:
http://www.usask.ca/wcvm/vmc_clients/respiratory_study/
Wednesday, May 29, 2013
Measuring response to flexion tests
For many years, opinions on the value of flexion tests in assessing equine lameness have been divided. Now, new research has shown that a system based on a wireless, inertial sensor can be used to measure the horse’s response to a flexion test.
Horses were fitted with sensors on the head, pelvis and right forelimb. The sensors measured vertical pelvic movement asymmetry for both right and left hind limb strides and the average difference in maximum and minimum pelvic height between right and left hind limb strides.
The response to a hind limb flexion test was assessed by an experienced observer and compared with measurements taken with the horse trotting before and after flexion.
John Marshall, lecturer in equine surgery at the University of Glasgow, who led the study, concluded: “A positive response to flexion resulted in significant changes to objective measurements of pelvic symmetry, supporting the use of inertial sensor systems to objectively assess response to flexion tests.
Read more at equinescienceupdate.com
Horses were fitted with sensors on the head, pelvis and right forelimb. The sensors measured vertical pelvic movement asymmetry for both right and left hind limb strides and the average difference in maximum and minimum pelvic height between right and left hind limb strides.
The response to a hind limb flexion test was assessed by an experienced observer and compared with measurements taken with the horse trotting before and after flexion.
John Marshall, lecturer in equine surgery at the University of Glasgow, who led the study, concluded: “A positive response to flexion resulted in significant changes to objective measurements of pelvic symmetry, supporting the use of inertial sensor systems to objectively assess response to flexion tests.
Read more at equinescienceupdate.com
Saturday, March 09, 2013
Tapeworms in working donkeys in Ethiopia
The work, carried out by Dr Mulugeta Getachew formed part of his PhD studies and was funded by the Donkey Sanctuary.
He
conducted a serological survey of donkeys from four different
geographical regions of Ethiopia. Blood samples were collected from
797 donkeys, that had been naturally exposed to tapeworm infection.
None had never been treated for tapeworms.
The
tapeworm ELISA test, developed for use in horses, was used to detect
parasite-specific serum antibody, IgG(T), in the serum of donkeys. A
pilot study had confirmed that the test was suitable for use with
donkey sera.
Dr
Getachew found substantial serological evidence that donkeys were
potentially infected with the tapeworm Anoplocehala
perfoliata.
Overall,
most animals harboured few parasites and a few donkeys were infected
with
large
number of parasites. The results indicated that 26% and 8% of the
donkeys were moderately and highly infected, respectively. The
remainder had low infection intensity or were negative for A.
perfoliata infection.
He found a marked difference between results from different regions of the country. Bereh, a mountainous region, had
significantly more moderately (51.2%) or highly (23.5%) infected
donkeys, than the other midland or lowland regions.
He
explains that, in contrast to the other regions studied, Bereh is
characterized by pastures that are low-lying and wet, with
wide areas of permanent pasture specifically kept for animals and for
haymaking.This is
likely to result in favourable environmental conditions for the
survival and development of both the oribatid mites that are the
tapeworm's intermediate host and the tapeworm eggs.
He
concludes: “The finding
of high sero-prevalence of cestode (tapeworm) infection, which is
consistent with the results of coprological and post-mortem findings
clearly indicates that cestodosis is one of the major parasitic
problems in the donkey population of Ethiopia.”
“These
results indicate a risk of intestinal disorders, particularly, colic,
associated with A. perfoliata
infection in donkeys.”
Read more at www.equinescienceupdate.com
Wednesday, March 06, 2013
Effect of composting on Parascaris equorum eggs
The
eggs of the large roundworm of horses,
Parascaris equorum,
are particularly resistant to extremes of climate and may survive for
many years in stables and on pasture. Composting is becoming a
popular method of dealing with waste from equine premises. How likely
are P. equorum eggs to survive in composted manure?
A
study carried out by researchers from the University of Kentucky
Department
of Animal and Food Sciences on a central
Kentucky horse farm investigated the viability of P. equorum
eggs in manure subjected to windrow composting.
For
the purposes of this study, a single windrow approximately 42.3m in
length, 2.7m in width, and 0.9m in height was built. It contained
equine manure, soiled bedding and other waste material, which came
from stables occupied by adult stallions and mares. Temperature and
carbon dioxide levels within the row were monitored daily. The
compost would be mechanically turned and aerated as necessary to
maintain optimum conditions. Previous experience had shown
that it took 10-12 weeks for the windrow to decompose completely.
Sentinel
chambers were used to expose 3g samples of feces to the composting
process. The faeces, collected from a weanling foal, had an average
of 2216 P. equorum eggs per gram.
The
chambers were made of mesh that kept the P.
equorum eggs inside, whilst allowing liquids and
bacteria to pass through.
Chambers
were exposed to one of three treatments.
- Constant exposure. These were placed within the centre of the windrow. Each day after the windrow had been turned, the chamber was placed back in the centre of the windrow.
- Intermittent exposure. The chambers were placed in the centre of the windrow. On alternate days, after the windrow had been turned, the chamber was placed back in the centre, or placed on the outside of the windrow.
- Control chambers were kept at 4°C.
Every
two days, one chamber from each group was removed and incubated at
room temperature for 21 days, at which stage the eggs were examined
microscopically to assess if they were viable. (Viable eggs contained
larvae.)
Chambers
treated with constant exposure contained about 10% viable eggs on
day 2 and 0% by day 8. Intermittent treatment resulted in 16%
viable eggs on day 2 and 0% by day 6. In contrast , control
chambers had average P. equorum
egg viabilities of 79% throughout the 18 days of the study.
The
researchers concluded that not only was the windrow composting system
effective in eliminating viable P.
equorum
eggs, it did so rapidly.
For more details see: http://www.equinescienceupdate.com/articles/ecpee.html
Monday, March 04, 2013
Information sought on saddle slip
Can
you spare a few minutes to complete a questionnaire to help research
into saddle slip? Scientists at the Animal Health Trust are trying to
understand more about the reasons for a saddle to slip persistently
to one side in some horses.
To
this end they have devised a questionnaire to examine the
interactions between horses, saddles and riders.
Saddle
slip is a problem seen in all sorts of horses and ponies and can
contribute to back pain. It may also be a sign of hindlimb lameness.
A
recent study by Line Greve and Sue Dyson at the Animal Health Trust
Centre for Equine Studies in Newmarket, found that that saddle slip
is not necessarily due to an ill-fitting saddle or asymmetric shape
of the horse’s back.
Sue
Dyson said: “Detection of saddle slip provides an opportunity for
the owner, riders and trainers to detect low-grade and subclinical
lameness, with important welfare consequences.”
Greve
and Dyson are continuing their investigations, trying to understand
more about the reasons for a saddle to slip persistently to one side
in some horses. To this end they have devised a questionnaire to
examine the interactions between horses, saddles and riders.
The
questionnaire should only take a few minutes to complete, and will
help reveal the frequency of occurrence of saddle slip and the risk
factors involved. Follow the link for more details...
Saturday, March 02, 2013
Maggot wound therapy
Maggots
might be the last thing you'd want to find in a horse's wound. But a
recent study assessed the efficacy of maggot debridement therapy in a
range of equine lesions and found it was beneficial in 93% of cases.
Over
a four year period, Dr Olivier Lepage and colleagues treated
forty-one cases (35 horses, 4 donkeys, 2 ponies ) in France and Mali.
The
maggots used were sterile common
green bottle fly maggots, which have been used in human medicine to
clean long-standing, infected or necrotic wounds. Maggots digest
fibrin and necrotic tissue, along with bacteria, and secrete
proteolytic enzymes and antimicrobial agents into the wound.
Interestingly
these are the same species of fly larvae that are the most common
cause of fly strike in rabbits and sheep. In horses (and humans) it
appears that healthy tissue is able to inactivate the proteolytic
enzymes so that only diseased tissue is digested. In contrast, sheep
and rabbits can not inactivate the enzymes.
Maggots
were applied either directly onto the wound or retained within a
polyester net containing small pieces of foam. They were kept in
place with cohesive, but not occlusive, bandage – maggots need
oxygen.
Between
300 and 900 maggots were used for each wound, depending on its size.
They were left in place for three days. In 5 cases the response to
the initial MDT was inadequate and so a second treatment was applied
for a further 3-4 days.
Conditions
treated included limb lacerations, deep seated foot infections and
soft tissue abscesses and abdominal incision breakdown. Within just
one week a favourable outcome was recorded in 38 of 41 cases. Wounds
that did not respond well were those involving neoplasia or a bone
sequestrum.
No
more than 2 MDTs were needed in this series of cases, in contrast to
other reports. The clinicians suggest that this was likely due to
the light surgical debridement that was carried out in most cases in
this series, before the maggots were applied.
Lepage
and colleagues conclude that maggots can be recommended in horses,
ponies and donkeys for debridement of wounds and for their potent
antibacterial effects – including their use against difficult to
control infections such as MRSA and other multibacterial resistant
bacteria.
They
advise against its use in cases where neoplasia is present. In this
study, melanoma and squamous cell carcinoma continued to deteriorate
after MDT.
Read more: www.equinescienceupdate.com
Developmental joint disease in Norwegian Standardbreds
A
research project carried out at the Norwegian School of Veterinary
Science has revealed that 50.7% of Norwegian Standardbred yearlings
suffer from loose bone fragments and lesions in their joints.
Developmental
orthopaedic disease is well recognised in the horse, and can result
in lameness or poor performance. It can appear in various forms such
as: osteochondrosis (OC)/osteochondrosis dissecans (OCD),
palmar/plantar osteochondral fragments (POF or “Birkeland
fractures”), ununited palmar/plantar eminences (UPE) and
dorsoproximal first phalanx fragments.
The
aim of the study, led by Sigrid Lykkjen, was to assess the
prevalence, development and interrelation of the various forms of
developmental orthopaedic disease (DOD) affecting the tarsocrural,
metacarpophalangeal (MCP) and metatarsophalangeal (MTP) joints in
Standardbred trotters.
The
work formed the basis of her PhD thesis entitled “Genetic studies
of developmental orthopaedic joint diseases in the Standardbred
trotter”. The research was carried out as a collaborative project
between the Horse Clinic and Department of Disease Genetics at The
Norwegian School of Veterinary Science, the University of Ã…s and the
University of Minnesota.
Tarsocrural
and MCP/MTP joints of 464 Norwegian Standardbred yearlings, born in
2006 and 2007,were examined radiographically. Lykkjen assessed the
prevalence of osteochondral lesions and also looked at the
interrelation between affected sites.
She
found osteochondral lesions in 50.7% of the horses. OC/OCD of the
tarsocrural (hock) joint occurred in 19.3%. Of the lesions in the
hock joint, OCD of the distal intermediate ridge of the tibia (DIT)
was the most common. The prevalence of OC/OCD in MCP joints was 3.6%,
whereas the prevalence of POF and UPE in MCP/MTP joints was 23.1% and
3.9%, respectively.
It
was common for horses to have similar lesions on the opposite leg.
There was an association between OCD of the distal intermediate ridge
and OCD of the lateral trochlea ridge, and between POF and UPE.
The
high prevalence results for tarsocrural OC/OCD
emphasise the need for breeders to take account of these diseases in
planning their breeding programme.
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