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Author Aerts, J.-M.; Gebruers, F.; Van Camp, E.; Berckmans, D. doi  openurl
  Title Controlling horse heart rate as a basis for training improvement Type Journal Article
  Year (up) 2008 Publication Computers and Electronics in Agriculture Abbreviated Journal  
  Volume 64 Issue 1 Pages 78-84  
  Keywords Heart rate; Horse; Model predictive control; Transfer function model  
  Abstract Equine training methods, and consequently, performance times have improved little since the last decades. With advances in measuring signals on-line by means of several new technologies and analytical procedures, and processing these signals immediately with strong and compact processors, it may be possible to develop new training methods. In this research, the objective was to explore the possibilities of using modern model-based algorithms to control the heart rate of horses (bpm) on-line by means of the control input running speed (km/h). Forty-five experiments with five horses and four riders were carried out to generate measurements of physiological status during running. The dynamical characteristics of each horse were quantified using linear discrete transfer function models. The dynamic response of heart rate to step changes in running speed were accurately described. In 90% of the cases, a first-order model gave the best fit. For 69% of the models, the r2 was higher than 0.90 and for 34% of the models, the r2 was even higher than 0.95. In a next step, the model-based algorithm was evaluated by controlling cardiac responses of two horses (horses 2 and 4) to a pre-defined trajectory. The model parameters were kept constant. On average, the error between the defined target trajectory in heart rate and the actual controlled heart rate ranged between 0.2 and 1.4 bpm for the whole target heart rate trajectory. During the steady-state part of the trajectory the average error was maximum 1.1 bpm. In the transient from one steady-state heart rate to another level, the error could increase on average up to 5 bpm. In the future, the combination of on-line measured bioresponses with real-time analysis can be used for adjusting the work load of the horse, during training, directly to the immediate needs of horse (welfare) and trainer (performance).  
  Address Division Measure, Model and Manage Bioresponses (M3-BIORES), Katholieke Universiteit Leuven, Kasteelpark Arenberg 30, B-3001 Leuven, Belgium  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 4555  
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Author Christensen, J.W.; Rundgren, M. url  doi
openurl 
  Title Predator odour per se does not frighten domestic horses Type Journal Article
  Year (up) 2008 Publication Applied Animal Behaviour Science Abbreviated Journal Appl. Anim. Behav. Sci.  
  Volume 112 Issue 1-2 Pages 136-145  
  Keywords Horse; Predator odour; Behaviour; Heart rate; Fear  
  Abstract Horses frequently react nervously when passing animal production farms and other places with distinctive smells, leading riders to believe that horses are innately frightened by certain odours. In three experiments, we investigated how horses respond to (1) urine from wolves and lions, (2) blood from slaughtered conspecifics and fur-derived wolf odour, and (3) a sudden auditory stimulus in either presence or absence of fur-derived wolf odour. The experiments were carried out under standardised conditions using a total of 45 naive, 2-year-old horses. In the first two experiments we found that horses showed significant changes in behaviour (Experiments 1 and 2: increased sniffing; Experiment 2 only: increased vigilance, decreased eating, and more behavioural shifts), but no increase in heart rate compared to controls when exposed to predator odours and conspecific blood in a known test environment. However, the third experiment showed that exposure to a combination of wolf odour and a sudden stimulus (sound of a moving plastic bag) caused significantly increased heart rate responses and a tendency to a longer latency to resume feeding, compared to control horses exposed to the sudden stimulus without the wolf odour. The results indicate that predator odour per se does not frighten horses but it may cause an increased level of vigilance. The presence of predator odour may, however, cause an increased heart rate response if horses are presented to an additional fear-eliciting stimulus. This strategy may be adaptive in the wild where equids share habitats with their predators, and have to trade-off time and energy spent on anti-predation responses against time allocated to essential non-defensive activities.  
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  Notes Approved no  
  Call Number Admin @ knut @ Serial 4339  
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Author Fazio, E.; Medica, P.; Cravana, C.; Giacoppo, E.; Ferlazzo, A. pdf  openurl
  Title Effect of Short-Distance Road Transport on Thyroid Function, Rectal Temperature, Body Weight and Heart Rate of Stallions Type Conference Article
  Year (up) 2008 Publication IESM 2008 Abbreviated Journal  
  Volume Issue Pages  
  Keywords horses, iodothyronines, rectal temperature, body weight, heart rate, transport  
  Abstract Aim of study was to investigate the effects of transport stress on thyroid response, body weight, rectal temperature and heart rate changes in one hundred twenty-six healthy stallions in basal conditions, before and after short road transport. One hundred twenty-six Thoroughbreds and crossbreds stallions with previous travelling experience, aged 4 to 15 yr, were transported by road in a commercial trailer for a period of 3 h (distance <300 km). Blood samples and physiological parameters were collected at 0800 (basal I) and at 1100 (basal II), in each horse“s box, one week before the loading and transport in basal conditions, and one week later, at 0800 immediately before loading (pre-transport), and after 3 h period of transport and unloading, on their arrival at the breeding stations (post-transport), in each new horse”s box, within 30 min. Increases in circulating T3, T4 and fT4 levels (P < 0.01), but not for fT3 levels, were observed after transport, as compared to before loading values, irrespective of different breed. Lower T4 and fT4 levels were observed in basal II (P < 0.01) than basal I and before loading values (pre-transport). After transport Thoroughbreds showed higher fT3 (P < 0.05) and fT4 (P < 0.01) levels than crossbred stallions. No significant differences for T3 and T4 changes were observed. A significant increase in rectal temperature (P < 0.01) and heart rate (P < 0.05) was observed after transport, as compared to before loading values (pre-transport). No differences between basal I, basal II and before loading values (pre-transport) for physiological parameters were observed.

The highest T3, T4 and fT4 levels recorded after short transport seem to suggest a preferential release from the thyroid gland. The results indicate that short road transport stress contributes significantly to thyroid hormone changes, according to different breed, and to the increase in rectal temperature and heart rate. No differences related to different age were observed.
 
  Address Department of Morphology, Biochemistry, Physiology and Animal Production – Unit of Veterinary Physiology, Faculty of Veterinary Medicine, University of Messina, Polo Universitario Annunziata, 98168 Messina, Italy  
  Corporate Author Cravana, C. Thesis  
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  Area Expedition Conference IESM 2008  
  Notes Poster IESM 2008 Approved yes  
  Call Number Equine Behaviour @ team @ Serial 4494  
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Author Hoffmann, G.; Bockisch, F.-J.; Kreimeier, P. openurl 
  Title Einfluss des Haltungssystems auf die Bewegungsaktivität und Stressbelastung bei Pferden in Auslaufhaltungssystemen Type Journal Article
  Year (up) 2009 Publication Landbauforschung – vTI Agriculture and Forestry Research Abbreviated Journal  
  Volume 2 Issue 59 Pages 105-112  
  Keywords Bewegung, Cortisol, Herzfrequenzvariabilität (HFV), Pferd, Verhalten [movement, cortisol, heart rate variability (HRV), horse, behaviour]  
  Abstract Frühere Untersuchungen haben gezeigt, dass die tägliche Bewegung für die Gesunderhaltung der Pferde notwendig ist. Inwieweit sich jedoch unterschiedliche Bewegungsangebote auf das Stress-und Bewegungsverhalten von Pferden in einer Gruppen-Auslaufhaltung auswirken und ob der Bewegungsbedarf der Pferde durch eine Auslaufhaltung ohne zusätzliche Bewegung gedeckt werden kann, ist der Literatur bisher nicht zu entnehmen. Daher sollte in der nachfolgend beschriebenen Untersuchung der Frage nachgegangen werden, welche Auswirkungen verschiedene Bewegungsangebote auf die Bewegungsaktivität von Pferden in Gruppen-Auslaufhaltungen haben und ob diese das Wohlbefinden der Tiere beeinflussen. Letzteres wurde durch Messung der Herzfrequenzvariabilität und Bestimmung von Cortisolmetaboliten im Pferdekot erfasst und die Bewegungsaktivität der Pferde wurde mit ALT-Pedometern bestimmt.

Verglichen wurden eine Einzel-und Gruppenhaltung mit jeweils angrenzendem Auslauf, aber ohne eine zusätzliche Bewegung der Pferde außerhalb des Stalls. In drei weiteren Varianten der Gruppenhaltung bekamen die Pferde täglichen Auslauf auf einer unbegrünten Koppel, auf einer Weide oder durch gezielte Bewegung in einer Führanlage. Die Bewegungsaktivität konnte durch die zusätzliche Bewegung in Form von Weide oder Führanlage signifikant gesteigert werden.

Ein zusätzliches Bewegungsangebot führte bei den Pferden zu einer Abnahme der Stressbelastung und sollte auch den Pferden ermöglicht werden, die in einer Gruppenhaltung gehalten werden, um ihre physische und psychische Gesundheit zu erhalten.

[Former studies confirm the necessity of daily movement for the health of a horse. But so far no description could be found in the literature how different movement offerings impact the stress and movement behaviour of horses in group husbandries with close-by discharge. The same holds true for the question whether a discharge husbandry system can meet the movement requirements of horses if there isn&#65533;t any additional movement possibility. The aim of the present study was to examine different movement offerings, their effects on the movement activities of horses in a group horse husbandry with close-by discharge and the impact of the movement on the wellbeing of the animals.

The heart rate variability and the concentration of the cortisol metabolites in the horse excrement were analyzed for detecting the wellbeing of the horses. Additionally ALT-Pedometers were used for determining the movement activity.

A single and a group husbandry system, each with closeby discharge, were compared when horses had no additional movement outside the stable. In three further variants the group husbandry was supplemented with daily time on a non-grassy pasture land, a pasture or in a horse walker. Pasture or horse walker increased movement activity significantly. Nevertheless an additional movement offering resulted in a lower stress load of the horses and should also be allowed to horses in group husbandry systems to ensure the horse&#65533;s physical and mental health.]
 
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 5661  
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Author Keeling, L.J.; Jonare, L.; Lanneborn, L. url  doi
openurl 
  Title Investigating horse–human interactions: The effect of a nervous human Type Journal Article
  Year (up) 2009 Publication The Veterinary Journal Abbreviated Journal Vet J  
  Volume 181 Issue 1 Pages 70-71  
  Keywords Behaviour; Reactivity; Heart rate; Accidents; Equitation  
  Abstract The heart rates (HR) of horses and the people leading them (10 horses, 20 people), and riding them (17 horses, 17 people), were recorded in an indoor arena. The horses were Swedish leisure horses of mixed ages, sex and breed. All except two of the people were female and all were of mixed age and riding experience. Each horse–human pair walked or rode between points A and B (30 m) four times on each test occasion. However, just before the fourth pass, participants were told that an umbrella would be opened as they rode, or led, the horse past the assistant. The umbrella was not opened, so this pass was no different to the previous control occasions, but nevertheless there was an increase in HR for both the person (leading, P = 0.06; riding, P < 0.05) and the horse (being led, P < 0.05; being ridden, P < 0.05). The findings indicate that analysis of HR recorded simultaneously from people and horses under different experimental handling or riding conditions presents a useful tool to investigate horse–human interactions.  
  Address  
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  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 1090-0233 ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 5908  
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Author Schmidt, A.; Aurich, J.; Möstl, E.; Müller, J.; Aurich, C. url  doi
openurl 
  Title Changes in cortisol release and heart rate and heart rate variability during the initial training of 3-year-old sport horses Type Journal Article
  Year (up) 2010 Publication Hormones and Behavior Abbreviated Journal Horm Behav  
  Volume 58 Issue 4 Pages 628-636  
  Keywords Horse; Initial training; Cortisol; Heart rate variability  
  Abstract Based on cortisol release, a variety of situations to which domestic horses are exposed have been classified as stressors but studies on the stress during equestrian training are limited. In the present study, Warmblood stallions (n = 9) and mares (n = 7) were followed through a 9 respective 12-week initial training program in order to determine potentially stressful training steps. Salivary cortisol concentrations, beat-to-beat (RR) interval and heart rate variability (HRV) were determined. The HRV variables standard deviation of the RR interval (SDRR), RMSSD (root mean square of successive RR differences) and the geometric means standard deviation 1 (SD1) and 2 (SD2) were calculated. Nearly each training unit was associated with an increase in salivary cortisol concentrations (p < 0.01). Cortisol release varied between training units and occasionally was more pronounced in mares than in stallions (p < 0.05). The RR interval decreased slightly in response to lunging before mounting of the rider. A pronounced decrease occurred when the rider was mounting, but before the horse showed physical activity (p < 0.001). The HRV variables SDRR, RMSSD and SD1 decreased in response to training and lowest values were reached during mounting of a rider (p < 0.001). Thereafter RR interval and HRV variables increased again. In contrast, SD2 increased with the beginning of lunging (p < 0.05) and no changes in response to mounting were detectable. In conclusion, initial training is a stressor for horses. The most pronounced reaction occurred in response to mounting by a rider, a situation resembling a potentially lethal threat under natural conditions.  
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  Series Editor Series Title Abbreviated Series Title  
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  ISSN 0018-506x ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 5223  
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Author Schmidt, A.; Biau, S.; Möstl, E.; Becker-Birck, M.; Morillon, B.; Aurich, J.; Faure, J.-M.; Aurich, C. url  doi
openurl 
  Title Changes in cortisol release and heart rate variability in sport horses during long-distance road transport Type Journal Article
  Year (up) 2010 Publication Domestic Animal Endocrinology Abbreviated Journal Domest Anim Endocrinol  
  Volume 38 Issue 3 Pages 179-189  
  Keywords Horse; Transport; Cortisol; Heart rate variability  
  Abstract It is widely accepted that transport is stressful for horses, but only a few studies are available involving horses that are transported regularly and are accustomed to transport. We determined salivary cortisol immunoreactivity (IR), fecal cortisol metabolites, beat-to-beat (RR) interval, and heart rate variability (HRV) in transport-experienced horses (N = 7) in response to a 2-d outbound road transport over 1370 km and 2-d return transport 8 d later. Salivary cortisol IR was low until 60 min before transport but had increased (P < 0.05) 30 min before loading. Transport caused a further marked increase (P < 0.001), but the response tended to decrease with each day of transport. Concentrations of fecal cortisol metabolites increased on the second day of both outbound and return transports and reached a maximum the following day (P < 0.001). During the first 90 min on Day 1 of outbound transport, mean RR interval decreased (P < 0.001). Standard deviations of RR interval (SDRR) decreased transiently (P < 0.01). The root mean square of successive RR differences (RMSSD) decreased at the beginning of the outbound and return transports (P < 0.01), reflecting reduced parasympathetic tone. On the first day of both outbound and return transports, a transient rise in geometric HRV variable standard deviation 2 (SD2) occurred (P < 0.01), indicating increased sympathetic activity. In conclusion, transport of experienced horses leads to increased cortisol release and changes in heart rate and HRV, which is indicative of stress. The degree of these changes tended to be most pronounced on the first day of both outbound and return transport.  
  Address  
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  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 0739-7240 ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 5386  
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Author Schmidt, A.; Möstl, E.; Wehnert, C.; Aurich, J.; Müller, J.; Aurich, C. url  doi
openurl 
  Title Cortisol release and heart rate variability in horses during road transport Type Journal Article
  Year (up) 2010 Publication Hormones and Behavior Abbreviated Journal Horm. Behav.  
  Volume 57 Issue 2 Pages 209-215  
  Keywords Horse; Transport; Cortisol; Heart rate variability  
  Abstract Based on plasma cortisol concentrations it is widely accepted that transport is stressful to horses. So far, cortisol release during transport has not been evaluated in depth by non-invasive techniques such as analysis of salivary cortisol and faecal cortisol metabolites. Transport also causes changes in heart rate and heart rate variability (HRV). In this study, salivary cortisol, faecal cortisol metabolites, heart rate and HRV in horses transported by road for short (one and 3.5 h) and medium duration (8 h) were determined. With the onset of transport, salivary cortisol increased immediately but highest concentrations were measured towards the end of transport (4.1 ± 1.6, 4.5 ± 2.6, 6.5 ± 1.8 ng/ml in horses transported for one, 3.5 and 8 h, respectively). Faecal cortisol metabolite concentrations did not change during transport, but 1 day after transport for 3.5 and 8 h had increased significantly (p < 0.01), reflecting intestinal passage time. Compared to salivary cortisol, changes in faecal cortisol metabolites were less pronounced. Heart rate increased and beat-to-beat (RR) interval decreased (p < 0.05) with the onset of transport. Standard deviation of heart rate increased while root mean square of successive RR differences (RMSSD) decreased in horses transported for 3.5 (from 74 ± 5 to 45 ± 6 ms) and 8 h (from 89.7 ± 7 to 59 ± 7 ms), indicating a reduction in vagal tone. In conclusion, transport of horses over short and medium distances leads to increased cortisol release and changes in heart rate and HRV indicative of stress. The degree of these changes is related to the duration of transport. Salivary cortisol is a sensitive parameter to detect transient changes in cortisol release.  
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  ISSN 0018-506x ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 5387  
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Author Zeitler-Feicht, M. H.; Streit, S.; Dempfle, L. openurl 
  Title Automatic feeding systems for horses in group housing systems with regard to animal welfare. Part 1: Feeding stalls versus automatic feeding systems Type Journal Article
  Year (up) 2010 Publication Tierärztliche Praxis Großtiere Abbreviated Journal Tierärztl Prax  
  Volume 38 Issue G Pages 363-370  
  Keywords Pferd, Fütterungseinrichtungen, soziale Interaktionen, Herzfrequenz, Verletzungsrisiko, Betriebseinfluss [Horse, feeding stations, social interactions, heart rate, risk of injury, individual farm management]  
  Abstract Gegenstand und Ziel: Überprüfung der Tiergerechtheit von Abrufstationen

für Kraftfutter und Heu in der Gruppenhaltung von Pferden anhand

ethologischer und physiologischer Parameter im Vergleich zu konventionellen

Fressständen. Material und Methoden: Die Verhaltensbeobachtungen

fanden in 11 bzw. 10 Offenlaufställen mit Abrufstationen

bzw. Fressständen statt. 270 Pferde wurden individuell unterschieden.

Untersuchungsparameter waren: Drohverhalten mit und ohne Verletzungsrisiko,

Meideverhalten, Verdrängung aus dem Fressstand sowie

Herzfrequenz und Integumentverletzungen. In jedem Betrieb erfolgten

kontinuierliche Direktbeobachtungen für je einen 24-Stunden-Tag (Tortenstückverfahren).

Ergebnisse: Im Wartebereich der Abrufautomaten

traten signifikant mehr Drohgesten ohne bzw. mit Verletzungsgefahr je

Pferd und Tag (8,6 bzw. 3,0) auf als im Wartebereich der Fressstände

(3,4 bzw. 0,9). Demgegenüber konnten die Pferde in Abrufstationen

(1,4 Drohgesten je Pferd und Tag) ungestörter fressen als in Fressständen

(3,2 Drohgesten je Pferd und Tag). Insgesamt betrachtet ergab sich

jedoch bei beiden Fütterungssystemen eine geringe Anzahl an sozionegativen

Interaktionen im Bereich der Futtereinrichtungen. Die Herzfrequenz

lag im Warteareal im Durchschnitt im physiologischen Bereich

(44,59 ± 11,73 Schläge/min). Integumentverletzungen im Zusammenhang

mit dem Fütterungssystem traten nicht auf. Der wichtigste Einflussfaktor

auf die Untersuchungskriterien war der Betrieb (Fläche, Konzeption,

Management). Schlussfolgerung: Unter dem Aspekt der Tiergerechtheit

hinsichtlich des Stress- und Verletzungsrisikos durch soziale

Interaktionen eignen sich bei ordnungsgemäßer Gruppenhaltung mit

fachgerechtem Management sowohl Fressstände als auch Abrufstationen

für Pferde im Offenlaufstall.

[Objective: A comparison with regard to animal welfare of feeding

stalls and automatic feeding systems for hay and concentrates in group

housing systems for horses using parameters of ethology and physiology.

Material and method: The observations of animal behaviour took

place in 10 stables with feeding stalls and in 11 stables with automatic

feeding systems. The field around the feeding systems was divided into

three areas with comparable dimensions (waiting area, exit area and

inside of the feeding system). 270 horses were individually observed.

Parameters of research comprised: threatening behaviour with and

without risk of injury, avoiding behaviour, ”chasing away from the feeding

place”, as well as heart rate and injuries of the integument. Every

group of horses was continuously observed for 24 hours. This observation

took place on four different days and comprised six sessions, each

of 4 hours. Results: In the waiting area of the automatic systems there

were significantly more threatening gestures with and without risk of

injuries for each horse and day (8.6 and 3.0, respectively) than in the

waiting area of the feeding stalls. In contrast, the horses could eat more

relaxed in the automatic systems (1.4 threatening gestures for each

horse and day) than in the feeding stalls (3.2 threatening gestures for

each horse and day). All together the number of negative interactions in

the feeding area of both feeding systems was relatively low. The heart

rate was within the physiological range (44,59 ± 11,73 beats/min) in

the waiting area. There were no injuries of the integument in correlation

with the feeding systems. The most important factor of the observation

criteria was the individual group housing system with its different dimension,

conception and management. Conclusion: Under the aspect

of animal welfare both feeding systems are suitable for horses with respect

to the risk of stress and injuries by social interactions and under

the condition of proper group housing with professional management.]
 
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 5765  
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Author König von Borstel, U.; Pasing, S.; Gauly, M. doi  openurl
  Title Towards a more objective assessment of equine personality using behavioural and physiological observations from performance test training Type Journal Article
  Year (up) 2011 Publication Applied Animal Behaviour Science Abbreviated Journal Appl. Anim. Behav. Sci.  
  Volume 135 Issue 4 Pages 277-285  
  Keywords Horse; Personality; Behaviour; Heart rate variability; Riding; Performance test  
  Abstract Current definitions of horse personality traits are rather vague, lacking clear, universally accepted guidelines for evaluation in performance tests. Therefore, the aim of the present study was to screen behavioural and physiological measurements taken during riding for potential links with scores the same horses received in the official stallion performance test for rideability and personality traits. Behaviour, heart rate (HR) and HR variability from thirty-six stallions participating in a performance test were recorded repeatedly during their performance test training. Using the coefficient of determination, regression analysis revealed that about 1/3 of variation (ranging between r = 0.26 (“constitution” (i.e. fitness, health)) and r = 0.46 (rideability)) in the personality trait scores could be explained by selecting the three most influential behaviour patterns per trait. These behaviour patterns included stumbling (with all traits except character), head-tossing (temperament, rideability), tail-swishing (willingness to work), involuntary change in gait (character) and the rider's use of her/his hands (constitution, rideability), voice (temperament) or whip (constitution). Subsequent mixed model analysis revealed a significant (P < 0.05) influence of the behaviour pattern “horse-induced change in gait” on character (-0.98 ± 0.31 scores per additional occurrence of change in gaits), of head-tossing (-0.25 ± 0.08 scores) and rider's use of voice (-0.51 ± 0.25; P = 0.0594) on temperament, and of stumbling on each of the following: willingness to work (-2.5 ± 1.2), constitution (-2.5 ± 1.2 scores; P = 0.0516) and rideability scores (-3.3 ± 1.4). In addition, constitution scores tended (P = 0.0889) to increase with higher low frequency/high frequency heart rate variation ratios (LF/HF), indicating a shift towards sympathetic dominance and thus a higher stress load in horses with higher scores for constitution. Rideability scores from the training phase were also significantly influenced by head-tossing (-0.5 ± 0.1), and in addition rideability scores from the final test were influenced by the training rider, ranging between average estimated rideability scores of 6.8 ± 0.4 for one training rider and 8.36 ± 0.3 scores for another training rider. Horses ridden with their nose-line predominantly behind the vertical received higher scores for rideability (8.3 ± 0.3) than horses ridden with their nose-line at the vertical (7.7 ± 0.2). These findings indicate that either judges perceive horses to have a better rideability when they readily offer a more extreme poll flexion, or that riders make use of horses’ better rideability by imposing a more extreme poll flexion. Several of the above described associations, but also of the non-existing links (e.g. no association between shying or heart rate and temperament) between behaviour patterns and scores for personality traits are rather surprising, warranting further investigation regarding the underlying causes of these relationships. Some of these behaviour patterns should be considered when redesigning the current guidelines for evaluation of personality traits during breeding horse performance tests, ultimately leading to improved genetic selection for equine personality traits. However, ethical implication of defining aversive behaviour such as head-tossing as an indicator of, for example, poor temperament, should not be neglected when devising new guidelines: such aversive behaviour may in fact be an indication of inadequate training techniques rather than poor horse personality.  
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  Series Volume Series Issue Edition  
  ISSN 0168-1591 ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 5489  
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