PO-181 The Comparative Study on the Maximum Oxygen Uptake Test of 10- Month Old Wistar Rats

Yanan Dong, F. Qin, Jiexiu Zhao, Songtao Wang, Min-xiao Xu, Zhongwei Wang
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Abstract

Objective The maximum oxygen uptake (VO2max) is an ideal index to objectively evaluate the cardiopulmonary function, as well as the basic to define exercise intensity. In the field of sports science, laboratory animals are often used to explore the effect and mechanism of exercise intervention. Therefore, it is very important to design optimal VO2max test protocol and to ensure the accuracy of VO2max according to the characteristics of the experimental animal itself. In this study, Wistar rats were selected, and various VO2max test protocols were designed and analyzed to screen out the optimal VO2max test protocol for the 10-month old wistar rats. Methods  20 SPF Wistar rats (male, 10 month old) were tested for maximal oxygen uptake by a four channel metabolic monitoring system and running treadmill. Five different test protocols were executed. Each rat completed five test protocols in random order with 3 days’ interval. The exercise performance (coordination degree, exhaustion state), oxygen uptake platform, finish time, VO2max and RER value were recorded during the test of each program, and the performance and test data were compared. Results  1) 12 rats completed all 5 test protocols of VO2max. The induction ratio of VO2max of P1 was only 58%, and P2 and P4 were 75%. While, the induction rate of P3 and P5 were both 83%. 2) For the Bedford improvement protocol (P1), due to the intense increased exercise load, the rats showed more intense stress, the less coordination degree, injured even death, and lower induction rate of VO2max. 3) The VO2max and RER values induced by the P5 are significantly higher than that of P1 (p<0.05). The finish time of P3 is significantly higher than that of P1 (p<0.01) and P5 (p<0.05). Conclusions For the VO2max test for middle aged rats, with the suitable speed of the running treadmill, the change of gradient should be as the main way of increasing load, or increasing the gradient of the slope firstly, which can obtained optimal VO2max, meanwhile reduce the stress response and the risk of injury and serious damage.
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PO-181对10月龄Wistar大鼠最大摄氧量的比较研究
目的最大摄氧量(VO2max)是客观评价心肺功能的理想指标,也是确定运动强度的基础。在运动科学领域,经常使用实验动物来探索运动干预的效果和机制。因此,根据实验动物自身的特点,设计最佳的VO2max测试方案,保证VO2max的准确性是非常重要的。本研究选取Wistar大鼠,设计并分析各种VO2max测试方案,筛选出10月龄Wistar大鼠的最佳VO2max测试方案。方法采用四通道代谢监测系统和跑步机对20只10月龄雄性SPF级Wistar大鼠进行最大摄氧量测定。执行了五种不同的测试方案。每只大鼠按随机顺序完成5个试验方案,间隔3天。在每个项目的测试过程中记录运动表现(协调度、衰竭状态)、摄氧量平台、完成时间、VO2max和RER值,并将性能与测试数据进行比较。结果1)12只大鼠完成了5个VO2max测试方案。P1的VO2max诱导率仅为58%,P2和P4为75%。P3和P5的诱导率均为83%。2)对于贝德福德改善方案(P1),由于运动负荷的剧烈增加,大鼠表现出更强烈的应激,协调度降低,甚至受伤死亡,VO2max诱导率降低。3) P5诱导的VO2max和RER值显著高于P1 (p<0.05)。P3的完成时间显著高于P1 (p<0.01)和P5 (p<0.05)。结论对于中年大鼠VO2max测试,在适宜的跑步机速度下,应以坡度的变化为主要增加负荷的方式,或先增加坡度,这样可以获得最佳的VO2max,同时减少应激反应,降低损伤和严重损伤的风险。
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