Schroter R C, Marlin D J
Department of Bioengineering, Imperial College of Science, Technology & Medicine, London, UK.
Equine Vet J Suppl. 2002 Sep(34):397-401. doi: 10.1111/j.2042-3306.2002.tb05455.x.
This study provides an objective method for estimating the oxygen consumption of horses while running on variable slopes so that realistic comparisons may be made of the locomotory transport cost involved in 3-day events, particularly the Speed and Endurance Test, at sites of differing terrain. A knowledge of the work profile over a particular course would enable competitors to plan speed and interval times appropriately along its length. We have developed a semi-empirical, but mechanistically based, model to calculate the oxygen cost of transport [COTpath in ml O2/kg/m path] for running on the flat, up or down a slope of given gradient (from -0.3 to +0.3). The model is then used to calculate the overall effort of running on a number of 3-day event courses of differing standard; the model does not assess the energetic cost of jumping. The cost of transport over the range of gradient of -0.3 to +0.3 was modelled using the following equations: On the flat or uphill: COTpath = 0.123 + 1.561(gradient); Downhill: COTpath = 0.123 + 1.591(gradient) + 9.762(gradient)2 + 14.0(gradient)3.
本研究提供了一种客观方法,用于估算马匹在不同坡度上奔跑时的耗氧量,以便能够对三日赛(尤其是速度与耐力测试)在不同地形场地中所涉及的 locomatory 运输成本进行实际比较。了解特定赛道的工作概况将使参赛者能够沿赛道长度合理规划速度和间歇时间。我们开发了一个半经验但基于机制的模型,用于计算在平坦路面、给定坡度(从 -0.3 到 +0.3)的上坡或下坡奔跑时的运输氧成本[COTpath,单位为 ml O2/kg/m 路径]。然后使用该模型计算在多个不同标准的三日赛赛道上奔跑的总体努力程度;该模型不评估跳跃的能量成本。在 -0.3 到 +0.3 的坡度范围内,运输成本使用以下方程建模:在平坦路面或上坡时:COTpath = 0.123 + 1.561(坡度);下坡时:COTpath = 0.123 + 1.591(坡度) + 9.762(坡度)² + 14.0(坡度)³ 。