Slocombe R F, Covelli G, Bayly W M
School of Veterinary Science, University of Melbourne, Parkville, Victoria.
Aust Vet J. 1992 Sep;69(9):221-5. doi: 10.1111/j.1751-0813.1992.tb09929.x.
Normal Standardbred horses were given an incremental exercise test on a horizontal treadmill to evaluate the influence of exercise on gas exchange, resistance, dynamic compliance and inertance of the respiratory system. The exercise test consisted of 2 min exercise steps at each of the following speeds: 2.4 m/sec (walk), 4.5 m/sec (slow trot), 7.0 m/sec (fast trot) and 10 m/sec (gallop). At rest and after 1 min of exercise at each step, airflow, tidal volume, respiratory frequency, pharyngeal, mid-oesophageal and transdiaphragmatic pressures and arterial blood gas tensions were measured. The same horses were subsequently treated intravenously with clenbuterol (0.8 microgram/kg) and an identical exercise test and measurement performed 10 min after clenbuterol injection. In response to exercise, there were large increases in tidal volume, respiratory frequency, airflow and pressures. Exercise was associated with a decrease in upper airway resistance but total pulmonary resistance was unchanged. Exercise did not alter inertance or dynamic compliance, horses became hypoxaemic, and at 10 m/sec (galloping) also developed hypercarbia. Treatment with clenbuterol did not alter any of these measurements in response to exercise. These data suggest that dilation of upper airways occurs during exercise, and that inertial forces are important in strenuously exercising horses and may influence the accuracy of dynamic compliance determinations at high exercise intensities.
对正常的标准赛马在水平跑步机上进行递增运动测试,以评估运动对呼吸系统气体交换、阻力、动态顺应性和惯性的影响。运动测试包括在以下每个速度下进行2分钟的运动阶段:2.4米/秒(行走)、4.5米/秒(慢步小跑)、7.0米/秒(快步小跑)和10米/秒(疾驰)。在休息时以及在每个阶段运动1分钟后,测量气流、潮气量、呼吸频率、咽部、食管中部和横膈膜压力以及动脉血气张力。随后,对同一批马静脉注射克伦特罗(0.8微克/千克),并在注射克伦特罗10分钟后进行相同的运动测试和测量。运动时,潮气量、呼吸频率、气流和压力大幅增加。运动导致上呼吸道阻力降低,但总肺阻力不变。运动未改变惯性或动态顺应性,马匹出现低氧血症,在10米/秒(疾驰)时还出现高碳酸血症。克伦特罗治疗并未改变运动时的这些测量结果。这些数据表明,运动时上呼吸道会扩张,并且惯性力在剧烈运动的马匹中很重要,可能会影响高运动强度下动态顺应性测定的准确性。