首页> 外文期刊>The Journal of Physiology >Muscle spindle signals combine with the sense of effort to indicate limb position.
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Muscle spindle signals combine with the sense of effort to indicate limb position.

机译:肌肉纺锤体信号与努力意识相结合,以指示肢体位置。

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摘要

Experiments were carried out to test the hypothesis that, in the absence of vision, position sense at the human forearm is generated by the combined input from muscle spindles in elbow flexor muscles and signals of central origin giving rise to a sense of effort. In a forearm position-matching task, to remove a possible contribution from the sense of effort, the reference arm was held supported at the test angle. Subjects were less accurate in matching elbow position of the supported forearm than when it was unsupported. Adding a 2 kg weight to the unsupported reference arm led subjects to make matching errors consistent with an increase in the effort signal. Evidence of a contribution from muscle spindles was provided by showing that the direction of position matching errors could be systematically altered by flexion or extension conditioning of the reference arm before its placement at the test angle. Such changes in errors with conditioning could be shown to be present when the reference arm was supported, unsupported, or unsupported and weighted. It is concluded that both peripheral signals from muscle spindles and signals of central origin, associated with the motor command required to maintain arm position against the force of gravity, can provide information about forearm position.
机译:进行实验以检验以下假设:在没有视力的情况下,肘前屈肌的肌肉纺锤体和中央起源信号的组合输入产生人的前臂位置感,从而产生努力感。在前臂位置匹配任务中,为了消除力度感的可能影响,将参考臂保持在测试角度。与不支撑时相比,受试者在支撑前臂的肘部位置匹配方面的准确性较差。向不受支持的参考臂增加2千克的重量会使受试者产生与努力信号增加相符的匹配误差。通过显示在参考臂放置在测试角度之前,可以通过参考臂的弯曲或伸展条件来系统地改变位置匹配错误的方向,从而提供了来自肌肉纺锤体的贡献的证据。当参考臂被支撑,不支撑,或不支撑和称重时,这种调节误差的变化可能会出现。结论是,来自肌肉纺锤体的外围信号和中心原点的信号,与保持手臂位置抵抗重力所需要的运动命令相关,都可以提供有关前臂位置的信息。

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