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人类手指缓慢运动过程中肌肉传入神经对搏动性运动输出的编码。

Coding of pulsatile motor output by human muscle afferents during slow finger movements.

作者信息

Wessberg J, Vallbo A B

机构信息

Department of Physiology, University of Göteborg, Sweden.

出版信息

J Physiol. 1995 May 15;485 ( Pt 1)(Pt 1):271-82. doi: 10.1113/jphysiol.1995.sp020729.

Abstract
  1. Impulse activities of thirty-eight muscle spindle and tendon organ afferents from the finger extensor muscles were recorded in the radial nerve of human subjects while the subjects performed voluntary flexion and extension finger movements at a single metacarpophalangeal joint. 2. The afferent firing was analysed in relation to the 8-10 Hz discontinuities which previously have been shown to characterize these movements. Spike-triggered averaging and frequency domain analyses demonstrated that all Ia muscle spindle afferents and a large proportion of group II spindle afferents responded in close association with local peaks in the joint acceleration. During muscle lengthening the impulses appeared during phases of rapid muscle stretch, whereas they appeared during the phase of minimal speed during muscle shortening. 3. The Golgi tendon organ (Ib) afferents displayed a reverse pattern of activity in relation to the discontinuities, i.e. the impulses tended to appear in the phase of minimal speed during lengthening movements and close to maximal shortening speed during shortening movements. Hence, their firing often coincided with the phasic increases of the parent muscle activity which account for the 8-10 Hz discontinuities. 4. A close analysis of the time relations between spindle firing and the kinematics of the 8-10 Hz discontinuities revealed that the population spindle response was too delayed and too dispersed to support the hypothesis that the discontinuities are accounted for by the stretch reflex. 5. If, as suggested in a previous paper, the 8-10 Hz discontinuities are produced by a pulsatile descending motor command, the coding of the periodic but tenuous kinematic events by the population of proprioceptors may have a role in relation to an alleged pulsatile command generator.
摘要
  1. 在人类受试者的桡神经中记录了来自手指伸肌的38条肌梭和腱器官传入纤维的冲动活动,同时受试者在单个掌指关节处进行手指的主动屈伸运动。2. 针对先前已证明可表征这些运动的8 - 10Hz间断性,对传入放电进行了分析。触发脉冲平均法和频域分析表明,所有Ia类肌梭传入纤维和大部分II类梭内肌传入纤维的反应与关节加速度的局部峰值密切相关。在肌肉拉长期间,冲动出现在快速肌肉拉伸阶段,而在肌肉缩短期间,它们出现在速度最小的阶段。3. 高尔基腱器官(Ib)传入纤维表现出与间断性相反的活动模式,即在拉长运动期间,冲动倾向于出现在速度最小的阶段,而在缩短运动期间,接近最大缩短速度时出现。因此,它们的放电常常与引起8 - 10Hz间断性的母肌活动的相位增加相吻合。4. 对肌梭放电与8 - 10Hz间断性运动学之间的时间关系进行的仔细分析表明,总体肌梭反应延迟且分散,无法支持间断性由牵张反射引起这一假设。5. 如果如前一篇论文所提出的,8 - 10Hz间断性是由脉动性下行运动指令产生的,那么本体感受器群体对周期性但微弱的运动学事件的编码可能与所谓的脉动指令发生器有关。

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