首页> 美国卫生研究院文献>The Journal of Physiology >Latency of effects evoked by electrical and magnetic brain stimulation in lower limb motoneurones in man.
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Latency of effects evoked by electrical and magnetic brain stimulation in lower limb motoneurones in man.

机译:电和磁脑刺激在人下肢运动神经元中引起的影响的潜伏期。

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摘要

1. The latency of effects in the tibialis anterior (TA) and soleus (Sol) muscles evoked by electrical and magnetic stimulation of the motor cortex was evaluated in human subjects by H reflex testing. Post-stimulus time histograms (PSTHs) were established for the discharge of single voluntarily activated motor units and motor-evoked potentials (MEPs) in the surface electromyogram. 2. At rest both electrical and magnetic stimulation evoked an inhibition of the Sol H reflex at the lowest intensities of stimulation. In some subjects a facilitation with an earlier onset was seen when increasing the stimulation strength. When the anode for the electrical stimulation was placed at the vertex directly above the leg motor area, the inhibition or facilitation often had the same latency as when evoked by magnetic stimulation. However, when the anode was placed 2-3 cm lateral to the vertex, effects evoked by the electrical stimulus often occurred 1-2 ms earlier. 3. Short-latency peaks in the PSTH of the discharges of single TA motor units also tended to occur earlier when evoked by electrical stimulation with the anode lateral to the vertex than when evoked by magnetic stimulation or electrical stimulation with the anode at the vertex. 4. In one subject, near-maximal electrical stimulation evoked MEPs with a latency corresponding to that seen following stimulation of the brainstem by electrodes placed bilaterally over the mastoid processes approximately 16 cm more distal. Maximal magnetic stimulation, in contrast, never resulted in responses with a latency shorter than that seen with the weakest electrical stimuli at the vertex. 5. The initial facilitation of the Sol H reflex evoked by magnetic stimulation and by electrical anodal stimulation at the vertex increased when the subject performed a voluntary plantarflexion. In contrast, the earlier facilitation evoked by electrical anodal stimulation 2-3 cm lateral to the vertex had the same size both at rest and during contraction. 6. We suggest that magnetic stimulation and electrical anodal stimulation at the vertex may preferentially activate descending cortical cells at, or close to, the cell soma. The initial responses evoked by these two stimuli may therefore be influenced by the excitability of the cortical cells. On the other hand, electrical stimulation with the anode 2-3 cm lateral to the vertex seems to often activate the axons at a deeper level. The initial responses evoked by this type of stimulation may therefore not be influenced by the excitability of the cortical cells.
机译:1.通过H反射测试评估了人类运动皮层的电磁刺激对胫前肌(TA)和比目鱼肌(Sol)的影响潜伏期。建立了刺激后时间直方图(PSTH),用于释放表面肌电图中的单个自愿激活的电机单元和电机诱发电位(MEP)。 2.在静止和静止状态下,电刺激和磁刺激均会在最低刺激强度下抑制Sol H反射。在某些受试者中,当增加刺激强度时,可以看到起病较早。当将电刺激的阳极放置在腿部运动区域正上方的顶点时,抑制或促进的潜伏期通常与磁刺激引起的潜伏期相同。但是,当将阳极放置在垂直于顶点2-3 cm的位置时,电刺激引起的影响通常会在1-2 ms之前发生。 3.单个TA电机单元的放电的PSTH中的短时延峰值也倾向于在阳极垂直于顶点的电刺激下比在顶点阳极进行磁刺激或电刺激的时候更早出现。 4.在一个受试者中,接近最大的电刺激诱发了MEP,其潜伏期对应于通过在乳突上方两侧双侧放置的电极刺激脑干之后向远端多大约16cm的潜伏期。相比之下,最大的磁刺激永远不会导致响应时间短于顶点最弱的电刺激。 5.当受试者进行自愿的足底屈曲时,通过磁刺激和通过电阳极刺激在顶点处引起的Sol H反射的初始促进增加。相比之下,在顶点和侧面2到3 cm处通过电阳极刺激引起的早期促动在静止和收缩过程中具有相同的大小。 6.我们认为,在顶点处的磁刺激和电阳极刺激可能会优先激活位于或接近细胞体的下降皮质细胞。因此,这两种刺激引起的初始反应可能受到皮层细胞兴奋性的影响。另一方面,阳极在顶点侧面2-3 cm处的电刺激似乎常常在更深的水平上激活轴突。因此,这种刺激引起的初始反应可能不受皮层细胞兴奋性的影响。

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