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Changes in presynaptic inhibition of afferents to propriospinal-like neurones in man during voluntary contractions.

机译:在人自愿收缩过程中突触前抑制人传入螺旋体样神经元的变化。

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摘要

1. The possibility was investigated that the facilitation of the transmission in the propriospinal-like system during voluntary contraction, documented in the companion paper (Burke, Gracies, Mazevet, Meunier & Pierrot-Deseilligny, 1992), is due to a decrease in presynaptic inhibition of afferents projecting to propriospinal-like neurones. 2. The radial nerve was stimulated to evoke presynaptic inhibition of the monosynaptic Ia projections to forearm flexor motoneurones (Berardelli, Day, Marsden & Rothwell, 1987) and, hopefully, of the afferent input to propriospinal-like neurones projecting to these motoneurones. 3. The propriospinal-like excitation of forearm motoneurones evoked from mixed afferent inputs was depressed by radial nerve stimulation, and this depression was long-lasting (200 ms). Despite the convergence of mixed nerve and cutaneous afferents onto common propriospinal-like neurones, the radial stimulation did not depress the cutaneous-induced excitation. This differential effect and the time course of the depression suggest that it results from presynaptic inhibition of mixed nerve afferents (presumably large muscle afferents) projecting to propriospinal-like neurones. 4. With voluntary contractions, phasic or tonic, the radial-induced depression of the propriospinal-like excitation evoked by mixed nerve afferents was much greater than at rest, but the cutaneous-evoked excitation was unchanged. Thus, with voluntary contractions, there was no evidence of decreased gating of the afferent input to propriospinal-like neurones whether the input was of muscle or cutaneous origin and it is concluded that changes in presynaptic inhibition cannot account for the facilitation of the transmission in the propriospinal-like system during voluntary contraction. 5. By contrast, presynaptic inhibition of the monosynaptic Ia projections to motoneurones was consistently reduced at the onset of contraction, and to a much lesser extent during a weak tonic contraction.
机译:1.调查了伴随文件(Burke,Gracies,Mazevet,Meunier&Pierrot-Deseilligny,1992)中记载的在自愿性收缩过程中促进脊椎样系统传递的可能性,是由于突触前减少抑制投射到脊椎样神经元的传入神经。 2.刺激The神经引起对前臂屈肌神经元的单突触Ia投射的突触前抑制(Berardelli,Day,Marsden&Rothwell,1987),并希望传入到投射至这些运动神经元的螺旋体样神经元的传入输入。 3. radial神经刺激可抑制混合传入输入引起的前臂运动神经元的脊椎样兴奋,这种持续时间长(200毫秒)。尽管混合的神经和皮肤传入神经汇聚到了常见的脊椎样神经元上,但径向刺激并未抑制皮肤诱发的兴奋。这种差异作用和抑郁症的时程表明,它是由突触前抑制混合神经传入神经(可能是大肌肉传入神经)投射到脊椎样神经元引起的。 4.在自愿收缩,阶段性或强直性的情况下,由混合神经传入引起的脊椎样兴奋的放射状抑制比静息时大得多,但经皮肤诱发的兴奋并没有改变。因此,在无意识收缩的情况下,没有证据表明无论是肌肉还是皮肤来源的输入,对脊椎样神经元的传入输入门控的减少,并且得出的结论是,突触前抑制的改变不能解释促进神经元传递的原因。自愿收缩期间的脊椎样系统。 5.相比之下,在收缩开始时,单突触Ia投射对运动神经元的突触前抑制作用持续降低,而在弱的强直性收缩过程中的抑制作用则要小得多。

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