Literature DB >> 1621468

Cardiorespiratory parameters in draught horses before and after short term draught work pulling loads.

R Pérez1, S E Recabarren, G Mora, C Jara, G Quijada, E Hetz.   

Abstract

In order to establish the relationship between draught force and cardiorespiratory responses to exercise heart rate (HR), respiratory rate (RR), arterial and venous blood gases, pH, hemoglobin concentration and temperature were measured in five draught horses during rest, immediately after exercise and 30 min post-exercise under field conditions. A wagon equipped with an odometer and a hydraulic dynamometer was used for measuring distance and draught force. The wagon was loaded with 946 kg for the low load, 1,979 kg for the medium load and 2,994 kg for the high load, and drawn for a distance of 1,500 m. Draught force and load weight were linearly related. The response of the draught horse to low and medium load exercise was characterized by a moderate increase in HR, RR and temperature with no significant changes in arterial blood gases and pH. An increase in HR, RR and temperature was observed, whereas no changes in arterial PO2 and increases in venous PO2 were noticed after high load exercise. Slight increase in venous lactic acid concentration as a result of high load exercise was observed, suggesting that some anaerobic work was performed. However this was insufficient to produce changes in blood pH. The increase in metabolic requirements during the three levels of draught exercise was associated with increases in arterial hemoglobin concentration and oxygen content of blood.

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Year:  1992        PMID: 1621468     DOI: 10.1111/j.1439-0442.1992.tb00175.x

Source DB:  PubMed          Journal:  Zentralbl Veterinarmed A        ISSN: 0514-7158


  1 in total

1.  High intensity, short duration pulling in heavy horses: physiological effects of competition and rapid weight change.

Authors:  Persephone Greco-Otto; Shannon Massie; Erin Shields; Marie-France Roy; Edmond Pajor; Renaud Léguillette
Journal:  BMC Vet Res       Date:  2017-11-07       Impact factor: 2.741

  1 in total

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