El desafío para la Industria del Caballo en la Argentina es nuevamente
"Trabajar en forma INTEGRADA, HACIENDO QUE LAS COSAS PASEN"
Este año ¿lo lograremos?
Mario López Oliva
Mostrando entradas con la etiqueta Jet Lag. Mostrar todas las entradas
Mostrando entradas con la etiqueta Jet Lag. Mostrar todas las entradas

martes, 25 de octubre de 2011

Horses and Jetlag. Dr. Domingo Tortonese



Interview by Dr. Julio Oriol

Dr. Domingo Tortoneses,

Ph.D. (Reproductive Physiology, Endocrinology). 1991. West Virginia University, Morgantown, WV, USA. (1987 - 1991). GPA: 3.8 (out of 4).

D.V.Sc




. (Doctor of Veterinary Sciences; Genetics of Reproduction). 1986. National University of La Plata, La Plata, Buenos Aires, Argentina. (1982 - 1986). Mark 10 (out of 10).

D.V.M. (Médico Veterinario - Veterinary Surgeon). 1980. National University of La Plata,
La PLata, Buenos Aires, Argentina. (1975 - 1980).

First Certificate in English. 1976. University of Cambridge, UK. (1970 - 1976).

Bachiller Nacional (Baccalaureate Diploma). 1974. Colegio San Luis, H.H. Maristas, La Plata, Buenos Aires, Argentina. (Mar. 1970 - Nov. 1974).


PRESENT APPOINTMENT

Senior Lecturer. Department of Anatomy, Faculty of Medical and Veterinary Sciences, University of Bristol, Bristol, U.K. 2004 - present.

lunes, 24 de octubre de 2011

Light dependency underlies beneficial jetlag in racehorses


FOR IMMEDIATE RELEASE
17 October 2011
A new study shows that racehorses are extremely sensitive to changes in daily light and, contrary to humans, can adapt very quickly to sudden shifts in the 24-hour light­¾dark cycle, such as those resulting from a transmeridian flight, with unexpected benefits on their physical performance.
            The research led by academics in the University of Bristol’s Faculty of Medical and Veterinary Sciences is published in the Journal of Neuroendocrinology.
This is the first study of its kind to investigate the effects of jetlag on the physiology and performance of racehorses under tightly controlled experimental conditions.  Horses are the only athletes, apart from humans, regularly flown across time zones for athletic competitions.
Dr Domingo Tortonese, Senior Lecturer in Anatomy in the University’s School of Veterinary Sciences, who led the study, said: “We tested the hypothesis that abrupt alterations in the 24-hour light¾dark cycle, such as those associated with the crossing of time-zones, would alter the molecular clockwork and neuroendocrine systems of racehorses with detrimental consequences on their athletic performance.
“In humans, air travel-associated sudden changes in the 24-hour light¾dark cycle disrupt biological rhythms with negative effects on cognitive and physical performance.  Indeed, jetlag has important implications for athletes who travel across time zones for competitive sporting events, particularly after an easterly flight.
“Our study shows that racehorses are different from humans in that they rely on light cues for their daily rhythms of activity, rather than for the synchronisation of an endogenously generated rhythm to the 24-hour light¾dark cycle.  This light dependency underlies a rapid process of adaptation with critical scientific implications and unexpected practical benefits.”
Thoroughbred horses with previous race training were housed in light-controlled rooms and put through a fitness program of daily sessions of exercise on a high–speed treadmill at variable times of the day for three months.  They then experienced a shift in the 24-hour light¾dark cycle that mimicked an easterly flight across seven time zones.
The 24-hour patterns of four clock genes, together with neuroendocrine systems involved in a variety of functions, including time measurement, homeostasis and the response to stress, were investigated before and after the shift.  The aerobic and anaerobic capacities were measured by standardised performance tests. Locomotor activity was also assessed continuously, under photoperiodic conditions and in the absence of light cues (constant darkness), to determine the expression and robustness of a 24-hour rest¾activity cycle. The speed of re-adaptation to a new light¾dark cycle was also investigated. 
Contrary to the prediction based on human and rodent data, the results show that whereas horses are extremely sensitive to sudden changes in the 24-hour light¾dark cycle, they can adapt very quickly to a phase shift. Importantly, this rapid adaptation is not accompanied by an increase in the level of stress, but by alterations in endocrine systems that favour an enhancement of the horse’s physical capacity during the process.
The improvement in athletic performance following experimental jetlag resulted in the animals being able to run at full gallop for an additional 25 seconds before reaching fatigue.  This differs from humans who show a slow adjustment, particularly after an eastbound flight, with detrimental consequences on performance.  The difference between the two species can be attributed to the powerful masking effect of light on the horse’s daily locomotor activity, which, together with the absence of a robust sleep¾wake cycle, can be a part of a mechanism of adaptation to sudden changes in the environment.
The results of this study have important practical implications, since equine athletes do not need to travel to be subjected to changes in daily light, and its beneficial consequences could help to reduce the level of injury in competitions.
This research by the University of Bristol in collaboration with academics from the University of Melbourne and the University of Cambridge was supported by a research grant from the Horserace Betting Levy Board and by a Wellcome Trust Equipment Grant.
The paper: Experimental jetlag disrupts circadian clock genes but improves performance in racehorses after light-dependent rapid resetting of neuroendocrine systems and the rest-activity cycle, Tortonese D J, Preedy D F, Hesketh S A, Webb H N, Wilkinson E S, Allen W R, Fuller C J, Townsend J, Short R V.  Journal of Neuroendocrinol, published online ahead of print, 15 September 2011. 
. . . ENDS
Issued by the Public Relations Office, Communications & Marketing Services, University of Bristol, tel (0117) 331 7276, mobile 07747 768805.  Contact: Joanne Fryer.

Jet lag benefits racehorses

http://www.equinescienceupdate.com/articles/jlbr.html



A new study has shown that not only do racehorses cope better with jetlag than humans do, but also their performance even appears to be enhanced by it.


The research, led by academics in the University of Bristol’s Faculty of Medical and Veterinary Sciences in collaboration with colleagues from the University of Melbourne and the University of Cambridge, is published in the Journal of Neuroendocrinology.

Do horses suffer from jetlag?
Jet lag benefits racehorses
Jet lag is a phenomenon encountered by long-distance travellers.  However, it is not just the length of the journey that is important. The significant factor is the rapid crossing
Report by Mark Andrews. Published on line 21.10.11




One of the horses used in the studies
during a performance test. Photo © Dr Domingo Tortonese / University of Bristol. Reproduction not  permitted without consent.
of multiple time zones.  So flying from California to the UK would have (in principle) more negative effects than flying from New York. This is certainly the case for humans. Jet lag is due to the conflict between the new cycle of light and dark and the body’s natural circadian (literally “about a day“) rhythm.


Symptoms of jetlag in humans include disturbed sleep patterns, loss of appetite, lack of concentration and lethargy. Human athletes have noticed that jetlag can impair performance. So they take time to adapt to conditions in the country where the competition is to be held.


But what about horses? This new study is the first of its kind to investigate the effects of jetlag on the physiology and performance of racehorses under tightly controlled experimental conditions.  Horses are the only athletes, apart from humans, regularly flown across time zones for athletic competitions.


Dr Domingo Tortonese, Senior Lecturer in Anatomy in the School of Veterinary Sciences, who led the study, said: “We tested the hypothesis that abrupt alterations in the 24-hour light-dark cycle, such as those associated with the crossing of time-zones, would alter the molecular clockwork and neuroendocrine systems of racehorses with detrimental consequences on their athletic performance.


“In humans, air travel-associated sudden changes in the 24-hour light-dark cycle disrupt biological rhythms with negative effects on cognitive and physical performance.  Indeed, jetlag has important implications for athletes who travel across time zones for competitive sporting events, particularly after an easterly flight.


“Our study shows that racehorses are different from humans in that they rely on light cues for their daily rhythms of activity, rather than for the synchronisation of an endogenously generated rhythm to the 24-hour light-dark cycle. This light dependency underlies a rapid process of adaptation with critical scientific implications and unexpected practical benefits.”


The research team took seven Thoroughbred horses with previous race training and put them through a fitness program of daily sessions of exercise on a high–speed treadmill at variable times of the day for three months. Throughout the study, the horses were kept in a light-controlled environment. The researchers then altered the lighting to mimic a sudden change in time zones - the equivalent of an easterly flight across seven time zones.


They found that the horses adapted very quickly to a shift in time zone. Importantly, this rapid adaptation was not accompanied by an increase in the level of stress, but by alterations in endocrine systems that favoured an enhancement of the horse’s physical capacity during the process.


In fact, following experimental jetlag, horses experienced improved athletic performance, being able to run at full gallop for an additional 25 seconds before reaching fatigue. The treadmill velocity at which blood lactate reached 4mmol/l was also significantly increased after the change in photoperiod.


This improved performance did not persist, however, and had returned to pre-shift values after 14 days in the new lighting conditions.


The researchers suggest that these findings have important practical implications, since equine athletes do not need to travel to be subjected to changes in daily light. Its beneficial consequences could help to reduce the level of injury in competitions.


The research was supported by a research grant from the Horserace Betting Levy Board and by a Wellcome Trust Equipment Grant.






For more details see: Experimental jetlag disrupts circadian clock genes but improves performance in racehorses after light-dependent rapid resetting of neuroendocrine systems and the rest-activity cycle, DJ Tortonese, DF Preedy, SA Hesketh, HN Webb, ES Wilkinson, WR Allen, CJ Fuller, J Townsend, RV Short. 
Journal of Neuroendocrinology, published online ahead of print, 15 September 2011.
DOI: 10.1111/j.1365-2826.2011.02222.x

Caballos y Opinion. Video News

google287c94251aa248c6.html

Racehorses get jet lag when traveling?

Racehorses get jet lag when traveling? por CNN_International Horses are flown around the world to compete and that raises a few intriguing questions. Andrew Stevens reports.
Racehorses get jet lag when traveling? por CNN_International