首页> 外文期刊>Scandinavian Journal of Laboratory Animal Science >Effect of Body Weight Variation on Swimming Exercise Workload in Rats With Constant and Size-Adjusted Loads
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Effect of Body Weight Variation on Swimming Exercise Workload in Rats With Constant and Size-Adjusted Loads

机译:体重变化对恒定大小调整后的大鼠游泳运动负荷的影响

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In swimming animal models, weights are added according to some percentage of body weight (%BW) or as a constant load (CL) to equalize the workload of each animal or to reduce the time in swimming-to-exhaustion endurance tests. The objective of the present study was to evaluate the effect of body weight variation on swimming exercise workload through the reliability analysis of swimming-to-exhaustion endurance tests. We examined the reliability by comparing the mean time to exhaustion (TEx) in trials performed on the 30(th), 60(th), 90(th) 120(th) and 150(th) days of life of Wistar rats using three %BW and CL workloads (4%, 6% and 8% and 7 g, 11 g and 15 g, respectively). We also examined the within-subject variation of TEx over three trials of a CL test (15 g) within one week (when variability in body weight is minimal). The rats' body density was maintained during growth (mean (SD) 1.031 (0.026) g/ml - 1.026 (0.005) g/ml) despite their significant increase in body weight (mean(SD) 109.05(13.8))) g - 442.92(29.39) g). Thus, the absolute loads in longitudinal %BW tests increased gradually, causing a decrease in TEx under all workloads. The CV confidence limits for TEx in CL tests showed high within subjects variation (17.1-111%) compared to the body weight variation (0.4-2.8%). We conclude that load adjustment based on %BW does not adequately equate to the workload between rats of different sizes. The methodology also showed high within-subject variation between trials (not related to body mass changes.) that compromises the significance of small effects.
机译:在游泳动物模型中,重量是按一定百分比的体重(%BW)或作为恒定负荷(CL)添加的,以平衡每只动物的工作量或减少游泳至疲惫耐力测试的时间。本研究的目的是通过游泳至体力耐力测试的可靠性分析来评估体重变化对游泳运动负荷的影响。我们通过比较Wistar大鼠在30天,60天,90天,120天和150天的寿命中的平均疲惫时间(TEx)来检验其可靠性BW和CL的工作负载百分比(分别为4%,6%和8%,以及7 g,11 g和15 g)。我们还检查了一周内(体重变化极小时)进行的三项CL试验(15 g)的TEx受试者内部变化。尽管大鼠体重显着增加(平均(SD)109.05(13.8)))g-大鼠在生长过程中仍保持其身体密度(平均(SD)1.031(0.026)g / ml-1.026(0.005)g / ml) 442.92(29.39)g)。因此,纵向%BW测试中的绝对负载逐渐增加,从而在所有工作负载下导致TEx降低。与体重变化(0.4-2.8%)相比,CL测试中TEx的CV置信限显示较高的受试者变化(17.1-111%)。我们得出的结论是,基于%BW的负荷调整不足以等同于不同大小大鼠之间的工作量。该方法还显示试验之间的受试者内部差异很大(与体重变化无关),这损害了小效应的重要性。

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