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人类中推测的脊髓固有神经元皮质脊髓兴奋的证据。

Evidence for corticospinal excitation of presumed propriospinal neurones in man.

作者信息

Gracies J M, Meunier S, Pierrot-Deseilligny E

机构信息

Neurophysiologie Clinique, Hôpital de la Salpétrière, Paris, France.

出版信息

J Physiol. 1994 Mar 15;475(3):509-18. doi: 10.1113/jphysiol.1994.sp020089.

DOI:10.1113/jphysiol.1994.sp020089
PMID:8006832
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1160401/
Abstract
  1. The possibility that stimulation of the motor cortex facilitates transmission in the pathway mediating non-monosynaptic ('propriospinal') excitation from low-threshold afferents to upper limb motoneurones was investigated. 2. Convergence between peripheral afferent volleys (from the ulnar or musculo-cutaneous nerve) and corticospinal volleys (evoked by magnetic stimulation of the motor cortex) was investigated using the spatial facilitation technique. Thus the effects of these volleys on the flexor carpi radialis H reflex were compared when applied separately and together. When cortical stimulation was optimal for the muscle from which the conditioning volley originated the facilitation of the reflex on combined stimulation was significantly larger than the algebraic sum of the effects of separate stimuli. 3. The extra facilitation on combined stimulation had all the characteristics of 'propriospinal' excitation (low threshold, long central delay, brief duration and depression when the afferent input was increased), and it is suggested that this reflects corticospinal excitation of 'propriospinal' neurones. 4. When varying the time interval between cortical and test stimulations, it was shown that extra facilitation on combined stimulation began 1 ms later than the onset of the control reflex facilitation. Assuming that the latter onset reflects the arrival of the monosynaptic corticospinal volley at the motoneurone pool, this 1 ms delay suggests a disynaptic pathway for the cortical excitation of motoneurones through 'propriospinal' neurones. 5. As at the onset of voluntary movement, the pattern of the cortical excitation of 'propriospinal' neurones was quite specific: extra facilitation of the reflex on combined stimulation only occurred when the cortical volley was preferentially directed to motoneurones supplying the muscle from which the afferents used for the peripheral volley originated. 6. It is concluded that corticospinal axons activate human 'propriospinal' neurones and thereby produce disynaptic excitation of the motoneurone pool. Given temporal summation with the monosynaptic excitation, this 'propriospinally mediated' disynaptic excitation might make a significant contribution to the evoked EMG potential.
摘要
  1. 研究了刺激运动皮层是否有助于介导从低阈值传入神经到上肢运动神经元的非单突触(“脊髓 propriospinal”)兴奋通路中的信号传递。2. 使用空间易化技术研究了外周传入冲动(来自尺神经或肌皮神经)与皮质脊髓冲动(由运动皮层磁刺激诱发)之间的汇聚情况。因此,分别和同时施加这些冲动时,比较了它们对桡侧腕屈肌 H 反射的影响。当皮层刺激对产生条件性冲动的肌肉最适宜时,联合刺激时反射的易化明显大于单独刺激效应的代数和。3. 联合刺激时的额外易化具有“脊髓 propriospinal”兴奋的所有特征(低阈值、长中枢延迟、短暂持续时间以及传入输入增加时的抑制),提示这反映了皮质脊髓对“脊髓 propriospinal”神经元的兴奋作用。4. 当改变皮层刺激与测试刺激之间的时间间隔时,发现联合刺激时的额外易化比对照反射易化的起始晚 1 毫秒。假设后者的起始反映了单突触皮质脊髓冲动到达运动神经元池,这 1 毫秒的延迟提示了通过“脊髓 propriospinal”神经元对运动神经元进行皮质兴奋的双突触通路。5. 如同在随意运动开始时一样,“脊髓 propriospinal”神经元的皮质兴奋模式相当特异:联合刺激时反射的额外易化仅在皮质冲动优先指向支配产生外周冲动的传入神经所来自肌肉的运动神经元时才会出现。6. 得出结论:皮质脊髓轴突激活人类“脊髓 propriospinal”神经元,从而产生运动神经元池的双突触兴奋。鉴于与单突触兴奋的时间总和,这种“脊髓 propriospinal 介导”的双突触兴奋可能对诱发的肌电图电位有显著贡献。

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