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Loss of power during fatigue of human leg muscles.

机译:人的腿部肌肉疲劳期间失去动力。

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摘要

1. We have investigated the loss of power seen during high-intensity exercise of human leg muscles such as might occur during sprinting. Subjects exercised the quadriceps and hamstring muscle groups using a Cybex dynamometer at an angular velocity of 90 deg s-1 once a second for 6 min. At 1 min intervals the quadriceps were electrically stimulated via the femoral nerve to produce an isometric contraction which was then released into an isokinetic shortening contraction at 90 deg s-1. 2. The extent of central fatigue was assessed by comparing the force of a voluntary isokinetic contraction with that elicited by electrical stimulation during isokinetic releases. Two subjects were repeatedly tested. In the first series of experiments, exercising the quadriceps of one leg, the instantaneous power fell to about 50% over the course of 2 min and remained constant for the rest of the exercise. For one subject the voluntary and electrically stimulated forces declined in parallel while for the second subject the voluntary force was 10% less than the stimulated force at the end of the exercise. These results show that central fatigue represented a minor factor contributing no more than one-fifth of the total loss of power in these circumstances. 3. In a second series of experiments the subjects alternately contracted the quadriceps and the hamstrings of both legs in an exercise which had a high rating of perceived exertion and entailed considerable respiratory and cardiovascular effort. The time course and proportionate loss of power were very similar to those seen with the one-leg exercise and neither subject showed evidence of significant central fatigue. The pattern of force loss was very similar for the hamstrings. We conclude that, for determined subjects, afferent feedback from muscles, tendons and joints or from the respiratory and cardiovascular systems does not have a major role in inhibiting voluntary activation of the quadriceps during heavy exercise. 4. In both series of experiments the power output during electrically stimulated isokinetic contractions was reduced to 50% of the initial value after 2 min of exercise while the isometric force, measured immediately before the release, fell to only 75%. This suggests that fatigue affects isometric and shortening contractions to different extents and the loss of power may be due to a combination of factors, only one of which is evident in the loss of isometric force.
机译:1.我们已经研究了高强度锻炼人的腿部肌肉时可能发生的力量损失,例如在短跑期间可能发生的力量损失。受试者使用Cybex测力计以90度s-1的角速度每秒锻炼一次四头肌和绳肌组,持续6分钟。每隔1分钟,股四头肌通过股神经电刺激股四头肌产生等距收缩,然后在90度s-1释放为等速收缩。 2.通过比较自发性等速收缩力与等速运动释放期间电刺激引起的收缩力来评估中枢疲劳程度。重复测试了两个对象。在第一个系列实验中,锻炼一条腿的四头肌,在2分钟的过程中瞬时功率下降至约50%,并在其余运动中保持恒定。对于一个受试者,自愿力和电刺激力平行下降,而对于第二个受试者,自愿力比运动结束时的刺激力低10%。这些结果表明,在这些情况下,中央疲劳仅占次要力量的五分之一。 3.在第二系列实验中,受试者在一项运动中交替地收缩了股四头肌和双腿的绳肌,这种运动具有很高的感知劳累力,并且需要相当大的呼吸和心血管力量。时间进程和相应的力量丧失与单腿运动所见非常相似,而且没有受试者显示出明显的中枢疲劳。 the绳肌的力损失模式非常相似。我们得出的结论是,对于确定的受试者,肌肉,腱和关节或呼吸系统和心血管系统的传入反馈在抑制剧烈运动过程中股四头肌的主动激活方面没有主要作用。 4.在这两个系列的实验中,运动2分钟后,电刺激的等速运动收缩期间的功率输出降低至初始值的50%,而即将释放前测得的等轴测力仅降低至75%。这表明疲劳会在不同程度上影响等轴测和缩短收缩,而动力损失可能是多种因素共同作用的结果,其中只有一个是等轴测力的损失。

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