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猫在各种自主运动过程中的Ia传入活动。

Ia afferent activity during a variety of voluntary movements in the cat.

作者信息

Prochazka A, Westerman R A, Ziccone S P

出版信息

J Physiol. 1977 Jun;268(2):423-48. doi: 10.1113/jphysiol.1977.sp011864.

Abstract
  1. Implanted dorsal root electrodes were used to record discharge trains of single spindle primary afferents (Ia's) of the cat's hind limb during different types of movement.2. The length of the ipsilateral ankle extensors was continuously monitored by an implanted length gauge. Length changes occurring during active stepping were subsequently passively reproduced during brief anaesthesia.3. A comparison of the Ia responses in active and simulated step cycles revealed that moderate fusimotor drive to ankle extensor spindles probably occurred mainly, if not exclusively, during the E(1), E(2) and E(3) phases of active stepping.4. A temporal advance in the Ia response to passive stretching in the F-phase was attributed to the after-effects of fusimotor activity in the extension phases.5. Light thrust applied to the animal's back evoked a potent fusimotor response. This load compensation effect may provide an explanation for the apparently higher degree of alpha-gamma co-activation seen in the mesencephalic locomotor preparation.6. Ankle extensor Ia discharge decreased during falls, despite an increase in extensor e.m.g. This is seen as a clear example of independent alpha and gamma control.7. Placing reactions during walking were consistent with the notion that cutaneous inputs dominate over proprioceptive inputs in these movements.8. alpha and Ia discharge during paw-shaking showed many of the characteristics of that in decerebrate and spastic clonus. The present results suggest that movements resembling clonus may be part of the animal's normal repertoire.9. Isometric co-contraction of agonists and antagonists was found to involve alpha-gamma co-activation.10. Hamstring Ia discharge behaviour during stepping further highlighted the increases in firing rate which normally occur during passive muscle stretching in ;pre-programmed' movements.
摘要
  1. 植入的背根电极用于记录猫后肢单梭形初级传入纤维(Ia类)在不同类型运动期间的放电序列。

  2. 同侧踝关节伸肌的长度通过植入的长度测量仪持续监测。主动踏步期间发生的长度变化随后在短暂麻醉期间被动重现。

  3. 对主动和模拟步周期中Ia反应的比较表明,对踝关节伸肌梭的适度肌梭运动驱动可能主要(如果不是唯一)发生在主动踏步的E(1)、E(2)和E(3)阶段。

  4. Ia对F期被动拉伸反应的时间提前归因于伸展期肌梭运动活动的后效应。

  5. 对动物背部施加轻微推力会引起强烈的肌梭运动反应。这种负荷补偿效应可能为中脑运动准备中明显更高程度的α-γ共同激活提供解释。

  6. 尽管伸肌肌电图增加,但在跌倒期间踝关节伸肌Ia放电减少。这被视为α和γ独立控制的明显例子。

  7. 行走期间的放置反应与皮肤输入在这些运动中比本体感受输入占主导地位的观点一致。

  8. 爪子抖动期间的α和Ia放电表现出许多去大脑和痉挛性阵挛中的特征。目前的结果表明,类似阵挛的运动可能是动物正常行为的一部分。

  9. 发现激动剂和拮抗剂的等长共同收缩涉及α-γ共同激活。

  10. 踏步期间绳肌Ia放电行为进一步突出了在“预编程”运动中被动肌肉拉伸期间通常发生的放电率增加。

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The silent period in a muscle of the human hand.人手肌肉中的静息期。
J Physiol. 1951 Jun;114(1-2):183-98. doi: 10.1113/jphysiol.1951.sp004610.
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Supraspinal control of the muscle spindles and its significance.肌梭的脊髓上控制及其意义。
J Physiol. 1953 Dec 29;122(3):498-523. doi: 10.1113/jphysiol.1953.sp005017.
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Adequate stimulus for tendon organs with observations on mechanics of ankle joint.
J Neurophysiol. 1971 Nov;34(6):1051-65. doi: 10.1152/jn.1971.34.6.1051.

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