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单一触觉传入神经与支配人手的运动神经元之间存在强突触耦合的证据。

Evidence for strong synaptic coupling between single tactile afferents and motoneurones supplying the human hand.

作者信息

McNulty P A, Türker K S, Macefield V G

机构信息

Prince of Wales Medical Research Institute, Randwick, Sydney, NSW 2031, Australia.

出版信息

J Physiol. 1999 Aug 1;518 ( Pt 3)(Pt 3):883-93. doi: 10.1111/j.1469-7793.1999.0883p.x.

Abstract
  1. Electrical stimulation of digital nerves elicits short-latency excitatory and inhibitory spinal reflex responses in ongoing EMG in muscles acting on the fingers and thumb. Similar responses are elicited by stimulating a population of muscle spindles but not when a single muscle spindle is activated. The current study investigated whether short-latency EMG responses could be evoked from the discharge of a single cutaneous afferent. 2. Thirty-three tactile afferents were recorded via tungsten microelectrodes in the median nerve of awake humans. Spike-triggered averaging revealed EMG events time-locked to the afferent discharge. The afferents were activated by an external probe and the EMG was elicited by a weak voluntary contraction. 3. Eleven cutaneous afferents (33 %) showed a short-latency response in the ongoing EMG. Overt increases or decreases in EMG were observed for seven afferents (onset latency 20.0-41.1 ms). For four slowly adapting (SA) type II afferents, EMG showed a periodicity that was correlated to the afferent interspike interval (r = 0.99). 4. The EMG associated with two rapidly adapting (FA) type I afferents (29 %) showed a short-latency excitation while five showed neither excitation nor inhibition. Seven SA II afferents (39 %) showed excitation and 11 no response; and none of the six SA I afferents showed any response. 5. We conclude that, unlike muscle spindle afferents, the input from a single cutaneous afferent is strong enough to drive, via interneurones, motoneurones supplying muscles acting on the digits. The potent short-latency response we found supports the important role of cutaneous mechanoreceptors in fine motor control of the human hand.
摘要
  1. 对指神经进行电刺激会在作用于手指和拇指的肌肉的肌电图(EMG)中引发短潜伏期的兴奋性和抑制性脊髓反射反应。刺激一群肌梭也会引发类似反应,但单独激活单个肌梭时则不会。本研究调查了能否从单个皮肤传入神经的放电中诱发短潜伏期的肌电图反应。2. 通过钨微电极在清醒人类的正中神经中记录了33条触觉传入神经。触发尖峰平均法揭示了与传入神经放电锁时的肌电图事件。通过外部探针激活传入神经,并通过微弱的自主收缩诱发肌电图。3. 11条皮肤传入神经(33%)在持续的肌电图中表现出短潜伏期反应。7条传入神经的肌电图出现明显的增加或减少(起始潜伏期为20.0 - 41.1毫秒)。对于4条慢适应(SA)II型传入神经,肌电图显示出与传入神经峰间间隔相关的周期性(r = 0.99)。4. 与2条快适应(FA)I型传入神经(29%)相关的肌电图表现出短潜伏期兴奋,而5条既无兴奋也无抑制。7条SA II型传入神经(39%)表现出兴奋,11条无反应;6条SA I型传入神经均无任何反应。5. 我们得出结论,与肌梭传入神经不同,单个皮肤传入神经的输入强度足以通过中间神经元驱动支配作用于手指的肌肉的运动神经元。我们发现的强大的短潜伏期反应支持了皮肤机械感受器在人类手部精细运动控制中的重要作用。

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