首页> 美国卫生研究院文献>The Journal of Physiology >Responses in small hand muscles from magnetic stimulation of the human brain.
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Responses in small hand muscles from magnetic stimulation of the human brain.

机译:人脑的磁刺激在小手肌肉中的反应。

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摘要

1. The magnetic field generated by a brief current in a 9 cm diameter flat circular coil varies rapidly with time and when applied over the human scalp it is capable of exciting motor structures subserving the small hand muscles. With a peak magnetic field at the centre of the coil of 0.9-1.6 Tesla, single scalp stimuli produced twitches in the right abductor digiti minimi (a.d.m.), first dorsal interosseous (f.d.i.) and adductor pollicis muscles. Compound muscle action potentials (c.m.a.p.s) and single motor units from these muscles were recorded. 2. The twitch force and corresponding c.m.a.p. were greatly enhanced by voluntary background contraction of the muscle and depended on the direction and intensity of the magnetic field. Response amplitude was maximal with the stimulating coil centred near the vertex but precise coil position was not critical. 3. When the orthodromic volley set up in the peripheral nerve by magnetic stimulation of the brain collided with a maximal antidromic volley set up by stimulation at the wrist, remaining electromyographic (e.m.g.) activity gave evidence of multiple firing of some spinal motoneurones, provided that the muscle exerted a slight voluntary background contraction and the stimulus intensity was above threshold for relaxed muscle. 4. When the muscle changed from total relaxation to a slightly contracted state the onset latency of the c.m.a.p. was shortened by about 3 ms without further change when the background contraction increased. In slightly contracted muscle, c.m.a.p. onset latency was little affected over a wide range of stimulus intensities and was unaffected by the position of the stimulating coil within an area of 6 X 6 cm over the vertex. 5. Single motor units, recorded with needle electrodes in the a.d.m. or f.d.i. muscle, could be caused to discharge at a constant latency by threshold brain stimuli. Different single motor units had latencies varying from 22.4 to 32.1 ms. The same motor unit was activated from different coil positions up to 7 cm apart. These motor units had the lowest thresholds for voluntary activation. Stronger stimuli caused the same motor unit to discharge 1.5 ms earlier. 6. The threshold for excitation of pathways to the a.d.m. muscle was reduced by voluntary contraction of the contralateral a.d.m. and by contraction of the ipsilateral f.d.i. muscles. Using these procedures, the c.m.a.p. of totally relaxed a.d.m. muscle showed a more than 2-fold amplitude increase, a shortening of onset latency to a similar degree as with contraction of the muscle itself, and single motor units in the a.d.m. muscle discharged 1.5 ms earlier.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.直径为9 cm的扁平圆形线圈中的短时电流所产生的磁场会随着时间而迅速变化,当施加在人类头皮上时,它能够激发保留小手部肌肉的运动结构。线圈中心的峰值磁场为0.9-1.6特斯拉,单头皮刺激会在右侧数指外展臂(a.d.m.),第一背骨间壁(f.d.i.)和内收肌波罗的肌肉中产生抽搐。记录这些肌肉的复合肌肉动作电位(c.m.a.p.s)和单个运动单位。 2.抽拉力和相应的c.m.a.p.肌肉的自愿背景收缩极大地增强了肌肉的活动,并且取决于磁场的方向和强度。当激励线圈位于顶点附近时,响应幅度最大,但是精确的线圈位置并不关键。 3.当通过脑部磁力刺激在周围神经中建立的正畸性凌空与手腕处刺激而形成的最大抗病性凌空相撞时,剩余的肌电图(emg)活性可以证明某些脊髓运动神经元被多次发射。肌肉会出现轻微的自愿背景收缩,并且刺激强度高于放松肌肉的阈值。 4.当肌肉从完全松弛状态变为轻微收缩状态时,c.m.a.p的发作潜伏期。当背景收缩增加时,缩短约3 ms,而没有进一步改变。在轻微收缩的肌肉中发作潜伏期在广泛的刺激强度范围内几乎不受影响,并且不受顶点上方6 X 6 cm区域内刺激线圈位置的影响。 5.单个电动机单元,其针状电极记录在上午。或f.d.i.肌肉可能会因阈值脑刺激而以恒定的潜伏时间放电。不同的单个电动机单元的延迟范围为22.4到32.1 ms。从相距不超过7厘米的不同线圈位置激活同一电机单元。这些运动单元具有自愿激活的最低阈值。强烈的刺激导致同一电机提前放电1.5 ms。 6.激发到a.d.m.的阈值对侧a.d.m.的自愿收缩使肌肉减少并通过收缩同侧f.d.i.肌肉。使用这些步骤,c.m.a.p。完全放松的上午肌肉表现出超过2倍的幅度增加,起病潜伏期缩短到与肌肉本身收缩相似的程度,并且在a.d.m.肌肉提前1.5毫秒放电(摘要以400字截断)

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