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皮肤刺激无法改变去大脑猫的运动单位募集。

Cutaneous stimulation fails to alter motor unit recruitment in the decerebrate cat.

作者信息

Clark B D, Dacko S M, Cope T C

机构信息

Department of Physiology and Biophysics, Hahnemann University, Philadelphia, Pennsylvania 19102.

出版信息

J Neurophysiol. 1993 Oct;70(4):1433-9. doi: 10.1152/jn.1993.70.4.1433.

DOI:10.1152/jn.1993.70.4.1433
PMID:8283206
Abstract
  1. An attempt was made to repeat the observation that cutaneous input to the cat medial gastrocnemius (MG) muscle sometimes had the differential effect of inhibiting motoneurons with slow axonal conduction velocity while simultaneously exciting others with fast conduction velocity. Dual microelectrode recording from intact ventral root filaments was used to study the effects of cutaneous inputs on recruitment order and on firing frequency of physiologically characterized MG motor units in decerebrate cats. Motor responses to pinch of the skin over the lateral surface of the ankle as well as electrical stimulation of the caudal cutaneous sural (CCS) nerve were contrasted with the responses to static muscle stretch as well as muscle vibration. 2. In contrast to the prediction, recruitment order in pairwise tests was the same for skin pinch or CCS stimulation as it was for MG stretch or vibration in all 32 tested pairs of motor units. This sample included seven pairs comprising one slow-twitch (S) and one fast-twitch motor unit, where the predicted reversal of recruitment should have been most apparent. Regardless of the source of excitation, recruitment of motor units of the MG was consistent with Henneman's size principle in approximately 90% of trials. 3. Skin pinch increased the firing rate of 30 of 32 individual motor units previously activated by stretch or vibration, including 7 slow-twitch units. In the remaining two units, skin pinch transiently (100-400 ms) slowed the firing of an S unit in 11 of 13 vibration + pinch trials. The other unit (type unknown) showed one or two retarded spikes in each of four vibration + pinch trials. In three S units, including the lone inhibitable unit and two others that were only excited by skin pinch, there was a significant positive rank correlation between change in unit firing frequency and change in soleus integrated electromyographic activity.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 曾有人尝试重复一项观察结果,即猫的腓肠肌内侧头(MG)的皮肤传入有时会产生不同的效应,抑制轴突传导速度慢的运动神经元,同时兴奋传导速度快的其他运动神经元。采用从完整的腹根细丝进行双微电极记录的方法,研究皮肤传入对去大脑猫中生理特征明确的MG运动单位的募集顺序和放电频率的影响。将对踝关节外侧皮肤捏压以及对腓肠外侧皮神经(CCS)进行电刺激所引发的运动反应,与对静态肌肉拉伸以及肌肉振动的反应进行对比。2. 与预测结果相反,在所有32对测试的运动单位中,成对测试时皮肤捏压或CCS刺激的募集顺序与MG拉伸或振动的募集顺序相同。该样本包括七对,每对包含一个慢肌纤维(S)运动单位和一个快肌纤维运动单位,在这些配对中,预计的募集顺序逆转应该最为明显。无论兴奋源如何,在大约90%的试验中,MG运动单位的募集符合亨内曼的大小原则。3. 皮肤捏压使之前由拉伸或振动激活的32个单个运动单位中的30个放电率增加,其中包括7个慢肌纤维单位。在其余两个单位中,在13次振动 + 捏压试验中的11次试验中,皮肤捏压使一个S单位的放电暂时(100 - 400毫秒)减慢。另一个单位(类型未知)在4次振动 + 捏压试验中的每次试验中都出现了一两个延迟的尖峰。在三个S单位中,包括唯一可被抑制的单位以及另外两个仅由皮肤捏压兴奋的单位,单位放电频率变化与比目鱼肌积分肌电图活动变化之间存在显著的正等级相关性。(摘要截短于400字)

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