首页> 外文期刊>The Journal of Physiology >Control of motor units in human flexor digitorum profundus under different proprioceptive conditions.
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Control of motor units in human flexor digitorum profundus under different proprioceptive conditions.

机译:在不同的本体感受条件下,控制人指前屈屈肌的运动单位。

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摘要

1. Changing the posture of the human fingers can functionally 'disengage' the deep finger flexor muscle from its normal action on the terminal phalanx of the fourth (or third) finger. This enables the activity of the muscle to be studied both with and without its normal proprioceptive inputs. 2. Spike trains of long duration from pairs of concurrently active motor units in this muscle were recorded in both the engaged and disengaged hand postures. Subjects voluntarily kept one of the motor units (the 'controlled' unit) discharging at the same target frequency in both postures. The strength of short-term synchrony, the strength of common drive, and the variability of discharge of these pairs of motor units were determined in both postures. 3. All subjects reported that the effort required to activate the motor units in the disengaged hand posture was substantially greater than in the normal engaged posture. 4. Short-term synchrony, which is a function of common corticospinal inputs to pairs of motor units, was similar in both hand postures. However, the strength of common drive was significantly decreased when the muscle was disengaged. Although the neural substrate for common drive is not known, this observation suggests that proprioceptive feedback is involved either directly or indirectly. 5. Although the discharge rate of the 'uncontrolled' motor units increased when the muscle was disengaged, the variability of discharge of these and the 'controlled' motor units increased significantly. This supports the idea that the precision with which fine motor tasks can be performed is improved when proprioceptive feedback is intact.
机译:1.改变人手指的姿势可以使深指屈肌在功能上“脱离”其正常作用于第四(或第三)指的指骨。这使得无论有没有正常的本体感受输入,都可以研究肌肉的活动。 2.在已接合和未接合的手势中,记录了这对肌肉中同时发生活动的运动单元对产生的长时间的长钉运动。在两个姿势下,受试者自愿使其中一个运动单元(“受控”单元)以相同的目标频率放电。在这两种姿势下,都确定了这对电机单元的短期同步强度,通用驱动强度以及放电的可变性。 3.所有受试者均报告,以松开的手姿势启动马达装置所需的努力明显大于正常的啮合姿势。 4.短期同步,这是成对的运动单元的普通皮质脊髓输入的函数,在两个手部姿势中相似。但是,当肌肉脱离时,普通驱动力明显下降。尽管不知道用于共同驱动的神经底物,但该观察结果表明本体感觉反馈直接或间接地参与。 5.尽管当肌肉脱离时“不受控制的”运动单元的放电速率增加,但是这些和“受控制的”运动单元的放电差异却显着增加。这支持了这样的想法,即在本体感觉反馈完好无损的情况下,可以提高执行精细运动任务的精度。

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