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对向人类腕部屈肌运动神经元传递非单突触Ia兴奋的神经元的抑制作用。

Inhibition of neurones transmitting non-monosynaptic Ia excitation to human wrist flexor motoneurones.

作者信息

Malmgren K, Pierrot-Deseilligny E

机构信息

Department of Rééducation, Hôpital de la Salpêtrière, Paris, France.

出版信息

J Physiol. 1988 Nov;405:765-83. doi: 10.1113/jphysiol.1988.sp017360.

Abstract
  1. The possibility was investigated that the transmission of the interneuronally mediated Ia excitation to wrist flexor motoneurones described in the companion paper is inhibited by stimulation of afferent fibres. Two techniques were used: (i) the post-stimulus time histogram (PSTH) method for studying changes in firing probability of individual voluntarily activated wrist flexor motor units following various peripheral stimulations; and (ii) the indirect technique of spatial facilitation of the H reflex. 2. In those individual units where stimulation of the median and/or the ulnar nerve evoked a non-monosynaptic excitation, this excitation was reduced when the afferent input was increased. This reduction of the non-monosynaptic Ia excitation was found in 80% of the motor unit recordings, whether the afferent input was increased by increasing the stimulus intensity to one nerve or by using combined stimulation of two nerves. 3. Both group I muscle and low-threshold cutaneous afferents were shown to be able to reduce the non-monosynaptic Ia excitation. 4. The onset of the depression of the excitation was always found within the same 1 ms bin as that of the excitation. 5. Whatever the amount of afferent input (stimulus intensity increased up to motor threshold, spatial and temporal summation, summation of inhibitory effects from different origins), the depression could at the very most suppress the non-monosynaptic Ia excitation: i.e. a trough in the PSTH, reflecting an inhibition at the motoneuronal level, never appeared. In those units in which there was not non-monosynaptic excitation, peripheral stimulation did not evoke any inhibition appearing as a trough in the PSTH either. Hence, inhibition only appeared when there was a non-monosynaptic excitation, and then as a depression of it. 6. On the basis of these findings it is argued that the inhibition is not exerted directly onto motoneurones but acts at a pre-motoneuronal level on the interneurones mediating the non-monosynaptic Ia excitation to motoneurones. 7. Similarly, the homonymous non-monosynaptic Ia facilitation of the flexor carpi radialis H reflex was shown to be reduced by a preceding stimulation applied to the ulnar nerve. It is argued that this result is also compatible with an inhibition of transmission in interneuronal excitatory pathways to motoneurones. 8. It is suggested that the non-monosynaptic excitation of wrist flexor motoneurones in man and the inhibition of this excitation, both evoked by stimulation of low-threshold afferents, could be mediated through a system of cervical propriospinal neurones. Some aspects of the possible role of this system during movement are discussed.
摘要
  1. 我们研究了一种可能性,即同伴论文中描述的中间神经元介导的Ia类兴奋向腕部屈肌运动神经元的传递会受到传入纤维刺激的抑制。我们采用了两种技术:(i)刺激后时间直方图(PSTH)方法,用于研究在各种外周刺激后单个自主激活的腕部屈肌运动单位放电概率的变化;(ii)H反射空间易化的间接技术。2. 在那些正中神经和/或尺神经刺激诱发非单突触兴奋的单个运动单位中,当传入输入增加时,这种兴奋会减弱。在80%的运动单位记录中发现了这种非单突触Ia类兴奋的减弱,无论传入输入是通过增加对一条神经的刺激强度还是通过对两条神经进行联合刺激来增加的。3. 已表明I组肌肉传入纤维和低阈值皮肤传入纤维都能够减弱非单突触Ia类兴奋。4. 兴奋抑制的起始总是在与兴奋相同的1毫秒时间间隔内被发现。5. 无论传入输入的量如何(刺激强度增加到运动阈值、空间和时间总和、来自不同来源的抑制作用总和),这种抑制最多只能抑制非单突触Ia类兴奋:即PSTH中的波谷,反映运动神经元水平的抑制,从未出现过。在那些没有非单突触兴奋的运动单位中,外周刺激也不会诱发任何表现为PSTH中波谷的抑制。因此,抑制仅在存在非单突触兴奋时出现,然后表现为对其的减弱。6. 根据这些发现,可以认为这种抑制不是直接作用于运动神经元,而是在运动神经元前水平作用于介导非单突触Ia类兴奋至运动神经元的中间神经元。7. 同样,对尺神经施加的先前刺激显示会降低桡侧腕屈肌H反射的同名非单突触Ia类易化。有人认为这个结果也与中间神经元兴奋性通路向运动神经元的传递受到抑制相一致。8. 有人提出,人类腕部屈肌运动神经元的非单突触兴奋以及由低阈值传入纤维刺激诱发的对这种兴奋的抑制,可能是通过颈脊髓 propriospinal 神经元系统介导的。讨论了该系统在运动过程中可能作用的一些方面。

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