在凉爽(20摄氏度/40%RH)、炎热干燥(30摄氏度/40%RH)或炎热潮湿(30摄氏度/80%RH)条件下进行跑步机运动的非热适应马的电解质和总蛋白质的变化。

P A Harris, D J Marlin, C M Scott, R C Harris, P C Mills, A R Michell, C E Orme, C A Roberts, R C Schroter, C M Marr
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引用次数: 0

摘要

4匹马(H, J, N和M)进行了模拟竞赛运动测试(CET),旨在模拟3天赛事中速度和耐力(S & E)测试的生理和代谢压力,在3种不同的环境条件下:20摄氏度/40%相对湿度(RH)(凉爽,干燥[CD] 2次);30℃/40% RH(热、干[HD])和30℃/80% RH(热、湿[HH]) (Marlin et al. 1995a)。静脉血电解质和总蛋白(TP)的测定在每次CET和最初30分钟恢复期间的预定时间点从留置导管上采集。在最后8 min跑步结束后2 h和24 h通过颈静脉穿刺采集静脉血(D期),观察运动、环境条件和马对静脉TP、钠(Na+)、钾(K+)、氯(Cl-)、钙(Ca2+)、镁(Mg2+)和磷酸(PO4(3-))血浆浓度的影响。此外,还评价了环境条件对阳离子损失量的影响。在CD和HD条件下,所有的马都完成了完整的CET,但在HH条件下,只有一匹马完成了最后8分钟的中心D阶段。运动对各参数的影响均显著(P < 0.05),与野外比赛结果相似。TP、Na+和Cl-在时间和马之间存在显著交互作用(P < 0.05)。总体而言,环境条件对所有参数均有显著影响(P < 0.05),但除Cl-和TP外,不认为差异具有任何生理相关性。仅氯离子和TP在时间和环境条件之间存在显著的交互作用(P < 0.05)。在CET和恢复期的大部分时间里,第一次CD治疗的平均Cl-值高于第二次CD治疗或在HH或HD条件下。在D期2 min后和初始恢复期间,TP浓度在HH条件下较高,但恢复到前期值的速度较慢。估计的阳离子损失有显著的个体差异,没有发现环境条件的一致影响。尽管在HD和HH两种情况下,估计的体液流失是相似的,但在HH条件下,在CET研究中,体重的恢复速度较慢。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrolyte and total protein changes in nonheat acclimated horses performing treadmill exercise in cool (20 degrees C/40%RH), hot, dry (30 degrees C/40%RH) or hot, humid (30 degrees C/80%RH) conditions.

Four horses (H, J, N and M) undertook a simulated competition exercise test (CET), designed to simulate physiological and metabolic stresses of the Speed and Endurance (S & E) test of a 3-day-event, under 3 different environmental conditions: 20 degrees C/40% relative humidity (RH) (cool, dry [CD] 2 sessions); 30 degrees C/40% RH (hot, dry [HD]) and 30 degrees C/80% RH (hot, humid [HH]) (Marlin et al. 1995a). Venous blood samples for electrolyte and total protein (TP) determinations were collected from indwelling catheters at predetermined time points throughout each CET and initial 30 min recovery period. Venous blood samples were collected by jugular venepuncture at 2 h and 24 h after the end of the final 8 min canter (Phase D). The effects of exercise, environmental condition and horse on venous TP, sodium (Na+), potassium (K+), chloride (Cl-), calcium (Ca2+), magnesium (Mg2+) and phosphate (PO4(3-)) plasma concentrations were investigated. In addition, the effect of environmental condition on estimated cation loss was evaluated. All horses completed the full CET under the CD and HD conditions, but only one horse completed the full 8 min of the final canter Phase D under HH conditions. Exercise had a significant (P < 0.05) effect on all parameters similar to those reported previously in field competitions. There was a significant (P < 0.05) interaction between time and horse for TP, Na+ and Cl-. Overall, the environmental condition had a significant (P < 0.05) effect on all parameters, but the differences were not considered to be of any physiological relevance, other than for Cl- and TP. There was a significant (P < 0.05) interaction between time and environmental condition for Cl- and TP only. During much of the CET and recovery period, mean Cl- values were higher with the first CD session than the second CD session or under the HH or HD conditions. For TP after 2 min of Phase D and during the initial recovery period, concentrations were higher under the HH conditions and returned to the Pre- values less quickly. There were marked individual variations in the estimated cation losses and no consistent effect of environmental condition was found. Although estimated fluid loss was similar following both HD and HH sessions, restoration of bodyweight was slower following the CET studies under HH conditions.

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