首页> 外文期刊>The Journal of Physiology >Role of spinal premotoneurones in mediating corticospinal input to forearm motoneurones in man.
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Role of spinal premotoneurones in mediating corticospinal input to forearm motoneurones in man.

机译:脊髓前神经元在调解皮质脊髓输入到人的前臂神经元中的作用。

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1. Evidence was sought to support the suggestion that corticospinal input can be relayed to motoneurones (MNs) via a population of interneurones (premotoneurones) in the cervical cord, and that this pathway operates in parallel with the direct monosynaptic pathway. 2. Single motor units were recorded in forearm muscles and post-stimulus time histograms (PSTHs) of their firing pattern were constructed during voluntary activation. Weak transcranial magnetic stimulation of the contralateral motor cortex was used to produce a small facilitation in the PSTH. We then examined how the size of this peak was affected by low threshold electrical stimulation of either the homonymous muscle nerve or the musculo-cutaneous nerve at various interstimulus intervals (ISIs). 3. Homonymous nerve stimulation had the following characteristics: (a) the cortical peak was facilitated when stimuli were timed so that both inputs arrived simultaneously at the MN; (b) the amount of facilitation was only slightly greater than the sum of the effects of each stimulus given alone; and (c) facilitation affected even the earliest bins of the cortically evoked peak. These three features are consistent with a monosynaptic input onto the MN from both sources. 4. Stimulation of the musculo-cutaneous nerve (which has no monosynaptic connections with forearm MNs) had no effect at similar timings. It (a) produced facilitation only at longer intervals corresponding to an extra central delay of 4-6 ms; (b) always gave a significantly larger facilitation than expected from the algebraic sum of the effects of each stimulus given alone; and (c) never affected the earliest bins of the cortical peak. These features are compatible with interaction of peripheral and cortical inputs at a population of premotoneurones. 5. These results confirm the suggestion that premotoneurones mediate part of the cortical command to MNs innervating forearm muscles. 6. Excitation is followed by an inhibition which may almost completely suppress the cortical peak. It is suggested that cortical and musculo-cutaneous volleys also converge onto inhibitory interneurones projecting to the premotoneuronal pool.
机译:1.寻求证据支持这一建议,即皮质脊髓输入可以通过颈脊髓中的一系列中间神经元(前神经元)中继至运动神经元(MNs),并且该途径与直接单突触途径平行。 2.在前臂肌肉中记录单个运动单位,并在自愿激活过程中绘制其射击方式的刺激后时间直方图(PSTH)。对侧运动皮层的弱经颅磁刺激被用来在PSTH中产生小的促进作用。然后,我们研究了在不同的刺激间隔(ISIs)下,同音肌神经或肌皮神经的低阈值电刺激如何影响该峰的大小。 3.同名神经刺激具有以下特征:(a)刺激定时可促进皮层峰,使两个输入同时到达MN。 (b)便利的数量仅略大于单独给予每种刺激的效果之和; (c)便利化甚至影响到了皮质诱发高峰的最早仓位。这三个特征与从两个源到MN的单突触输入一致。 4.刺激肌皮神经(与前臂MN没有单突触连接)在相似的时间没有影响。 (a)仅在较长的间隔产生促进作用,这对应于4-6 ms的额外中央延迟; (b)总是比单独给予每种刺激的效果的代数总和所提供的促进要大得多; (c)从未影响皮层峰的最早区域。这些特征与一群前运动神经元周围和皮质输入的相互作用兼容。 5.这些结果证实了以下建议:前运动神经元介导部分皮层命令至支配前臂肌肉的MN。 6.激发后是抑制作用,该抑制作用几乎可以完全抑制皮层峰。建议皮层和肌肉皮肤的齐射也汇聚到投射到运动前神经元池的抑制性中间神经元上。

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