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经颅刺激人类皮层和颈髓交界处诱发的静息期。

Silent period evoked by transcranial stimulation of the human cortex and cervicomedullary junction.

作者信息

Inghilleri M, Berardelli A, Cruccu G, Manfredi M

机构信息

Department of Neurological Sciences, University of Rome La Sapienza, Italy.

出版信息

J Physiol. 1993 Jul;466:521-34.

Abstract
  1. The silent period evoked in the first dorsal interosseous (FDI) muscle after electrical and magnetic transcranial stimulation (TCS), electrical stimulation of the cervicomedullary junction and ulnar nerve stimulation was studied in ten healthy subjects. 2. With maximum-intensity shocks, the average duration of the silent period was 200 ms after electrical TCS, 300 ms after magnetic TCS, 43 ms after stimulation at the cervicomedullary junction and 100 ms after peripheral nerve stimulation. 3. The duration of the silent period, the amplitude of the motor-evoked potential, and the twitch force produced in the muscle were compared at increasing intensities of magnetic TCS. When the stimulus strength was increased from 30 to 70% of the stimulator output, the duration of the silent period lengthened as the amplitude of the motor potential and force of the muscle twitch increased. At 70 to 100% of the output, the amplitude of the motor potential and force of the muscle twitch saturated, whereas the duration of the silent period continued to increase. 4. Proximal arm muscle twitches induced by direct electrical stimulation of the biceps and extensor wrist muscles produced no inhibition of voluntary activity in the contracting FDI muscle. 5. The level of background activation had no effect on the duration of the silent period recorded in the FDI muscle after magnetic TCS. 6. Corticomotoneurone excitability after TCS was studied by means of a single magnetic conditioning shock and a test stimulus consisting either of one single magnetic shock or single and double electrical shocks (interstimulus interval 1.8 ms) in the relaxed muscle. A conditioning magnetic shock completely suppressed the response evoked by a second magnetic shock, reduced the size of the response evoked by a single electrical shock but did not affect the response evoked by double electrical shocks. Inhibition of the test magnetic shock was also present during muscle contraction. 7. Our findings indicate that the first 50 ms of the silent period after TCS are produced mainly by spinal mechanisms such as after-hyperpolarization and recurrent inhibition of the spinal motoneurones. If descending inhibitory fibres contribute, their contribution is small. Changes in proprioceptive input probably have a minor influence. From 50 ms onwards the silent period is produced mainly by cortical inhibitory mechanisms.
摘要
  1. 对10名健康受试者研究了经颅电刺激(TCS)、颈髓交界处电刺激及尺神经刺激后,第一背侧骨间肌(FDI)诱发的静息期。2. 使用最大强度刺激时,经颅电刺激后静息期平均时长为200毫秒,经颅磁刺激后为300毫秒,颈髓交界处刺激后为43毫秒,外周神经刺激后为100毫秒。3. 在逐渐增加经颅磁刺激强度时,比较了静息期时长、运动诱发电位幅度及肌肉产生的抽搐力。当刺激强度从刺激器输出的30%增加到70%时,静息期时长随着运动电位幅度和肌肉抽搐力增加而延长。在输出的70%至100%时,运动电位幅度和肌肉抽搐力达到饱和,而静息期时长继续增加。4. 直接电刺激肱二头肌和腕伸肌诱发的近端手臂肌肉抽搐,未对收缩的FDI肌肉中的自主活动产生抑制。5. 背景激活水平对经颅磁刺激后FDI肌肉记录的静息期时长没有影响。6. 通过单次磁刺激条件刺激和测试刺激研究经颅磁刺激后的皮质运动神经元兴奋性,测试刺激由单次磁刺激或单次及双次电刺激(刺激间隔1.8毫秒)组成,刺激处于放松肌肉状态。条件磁刺激完全抑制了第二次磁刺激诱发的反应,减小了单次电刺激诱发反应的大小,但不影响双次电刺激诱发的反应。在肌肉收缩期间也存在对测试磁刺激的抑制。7. 我们的研究结果表明,经颅磁刺激后静息期的前50毫秒主要由脊髓机制产生,如脊髓运动神经元的超极化后电位和回返性抑制。如果下行抑制纤维有作用,其作用较小。本体感觉输入的变化可能影响较小。从50毫秒起,静息期主要由皮质抑制机制产生。

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引用本文的文献

本文引用的文献

1
The silent period in a muscle of the human hand.人手肌肉中的静息期。
J Physiol. 1951 Jun;114(1-2):183-98. doi: 10.1113/jphysiol.1951.sp004610.
2
CORTICAL INHIBITION.皮质抑制
Nature. 1964 Mar 28;201:1294-6. doi: 10.1038/2011294a0.
5
Nature of a cortical inhibitory process.皮质抑制过程的本质。
J Physiol. 1966 May;184(1):49-77. doi: 10.1113/jphysiol.1966.sp007903.
6
An inhibitory process in the cerebral cortex.大脑皮层中的一个抑制过程。
J Physiol. 1966 May;184(1):16-48. doi: 10.1113/jphysiol.1966.sp007902.

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