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灵长类动物脊髓丘脑神经元对肌肉传入神经冲动的场电位及兴奋反应

Field potentials and excitation of primate spinothalamic neurones in response to volleys in muscle afferents.

作者信息

Foreman R D, Kenshalo D R, Schmidt R F, Willis W D

出版信息

J Physiol. 1979 Jan;286:197-213. doi: 10.1113/jphysiol.1979.sp012614.

DOI:10.1113/jphysiol.1979.sp012614
PMID:108390
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1281566/
Abstract
  1. In anesthetized monkeys, stimulation of muscle afferents results in a sequence of cord dorsum potentials. These include a group I volley followed by several negative potentials called here the NI, NII and NIII waves. 2. Evidence based on the effects of graded stimulus strengths, measurements of latencies, and the results of anodal blockade of large muscle afferents indicate that the NI, NII and NIII waves are evoked, respectively, by group I, II and III muscle afferents. 3. The NII and NIII waves appear to be confined to the lumbosacral enlargement when evoked by hind limb muscle afferents. However, the group I volley and NI wave can be detected at least as far rostrally as L 3. 4. The NII and NIII waves were mapped in the depth of the cord. The maxima for these waves were found in the neck of the dorsal horn. The waves reversed to become positive in the ventral horn. 5. Using graded electrical stimulation of muscle nerves it was possible to demonstrate that a few spinothalamic tract neurones could be activated monosynaptically by group I volleys; other spinothalamic cells may have been activated polysynaptically by group I volleys. The lack of any substantial excitation of spinothalamic neurones by intra-arterial injections of succinylcholine suggests that these group I actions may have been due to group Ib afferents from Golgi tendon organs. 6. The most potent excitation of spinothalamic tract cells was due to the action of middle sized and small muscle afferents. Evidence was obtained for an excitatory action of group II, III and IV afferents. There was a good correlation between the effects of graded stimulation in evoking discharges in separate bursts associated with the arrival of volleys in group II and group III afferents and the generation of the NII and NIII waves. 7. Some spinothalamic neurones, including several located in lamina I, were unaffected by the muscle afferent volleys used. It is suggested that such neurones might help to signal well localized pain, whereas the cells which respond to a variety of cutaneous and muscle afferents might be involved in signalling poorly localized pain which is subject to referral.
摘要
  1. 在麻醉的猴子中,刺激肌肉传入神经会产生一系列脊髓背电位。这些电位包括一个I组群峰电位,随后是几个负电位,在此称为NI、NII和NIII波。2. 基于分级刺激强度的效应、潜伏期测量以及大动脉传入神经阳极阻滞的结果的证据表明,NI、NII和NIII波分别由I、II和III组肌肉传入神经诱发。3. 当由后肢肌肉传入神经诱发时,NII和NIII波似乎局限于腰骶膨大。然而,I组群峰电位和NI波至少在L3水平以上也能检测到。4. 在脊髓深度绘制了NII和NIII波。这些波的最大值出现在背角颈部。这些波在腹角反转变为正电位。5. 使用肌肉神经的分级电刺激可以证明,一些脊髓丘脑束神经元可以被I组群峰电位单突触激活;其他脊髓丘脑细胞可能被I组群峰电位多突触激活。动脉内注射琥珀酰胆碱对脊髓丘脑神经元没有任何实质性兴奋作用,这表明这些I组作用可能是由于来自高尔基腱器官的Ib组传入神经。6. 脊髓丘脑束细胞最有效的兴奋是由于中等大小和小的肌肉传入神经的作用。获得了II、III和IV组传入神经兴奋作用的证据。分级刺激在诱发与II组和III组传入神经群峰电位到达相关的单独爆发放电方面的效应与NII和NIII波的产生之间存在良好的相关性。7. 一些脊髓丘脑神经元,包括位于I层的几个神经元,不受所用肌肉传入神经群峰电位的影响。有人认为,这类神经元可能有助于传递定位良好的疼痛信号,而对各种皮肤和肌肉传入神经有反应的细胞可能参与传递定位不佳且易牵涉的疼痛信号。

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Flexion-reflex of the limb, crossed extension-reflex, and reflex stepping and standing.肢体的屈曲反射、交叉伸展反射以及反射性踏步和站立。
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