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Interaction interference between arm and leg: division of attention through muscle force regulation.

机译:手臂和腿部之间的交互干扰:通过肌肉力量调节来分散注意力。

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The first purpose of this study was to examine whether decreases in muscle force similar to the bilateral deficit occur during simultaneous use of arm and leg. The second purpose was to examine the effect on the muscle force of one leg by a division of attention through the regulation of the muscle force in the arm. Six participants completed each of the following three tasks in a random order: (1) maximal unilateral flexion of the right or left elbow, (2) maximal unilateral extension of the left knee, and (3) multilimb effort (a maximal contraction of the muscles in the leg while maintaining a constant submaximal isometric elbow flexion force at 25%, 50%, 75%, or 100% MVC). The results showed that muscle force was lower during simultaneous exertion of arm and leg than during exertion of one limb alone. The maximal knee extension force was significantly (p<.05) lower, by as much as 40% or so, during regulation at 25% MVC. The division of attention is also thought to be involved in task execution and may thus explain the test results. A decrease in the muscle force of the leg due to the level of regulation of the muscle force of the arm indicates that the regulation of the muscle force affects the division of attention, and the finer level of muscle force regulation is a task that requires greater attention. When the muscle force is precisely controlled, a more accurate and more appropriate adjustment is required to focus attention.
机译:这项研究的第一个目的是检查在同时使用手臂和腿部时是否出现类似于双侧赤字的肌肉力量下降。第二个目的是通过调节手臂中的肌肉力量来检查注意力的分配,从而检查对一只腿的肌肉力量的影响。六名参与者以随机顺序完成了以下三个任务中的每一个:(1)右肘或左肘的最大单侧屈曲;(2)左膝盖的最大单侧伸展;(3)多肢力量(最大收缩力)。腿部肌肉,同时保持恒定的最大等长肘关节屈曲力(MVC为25%,50%,75%或100%)。结果表明,同时施加手臂和腿部的肌肉力量要比单独施加一个肢体的肌肉力量低。在调节为25%MVC的过程中,最大膝盖伸展力明显降低(p <.05),降低了40%左右。注意的划分也被认为与任务执行有关,因此可以解释测试结果。由于手臂的肌肉力量的调节水平而导致的腿部肌肉力量的减少表明,肌肉力量的调节会影响注意力的分配,而更精细的肌肉力量调节是一项需要更大工作的任务注意。当精确控制肌肉力量时,需要进行更准确和更适当的调整以吸引注意力。

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