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人类运动皮层的电刺激和磁刺激:表面肌电图及单个运动单位反应

Electric and magnetic stimulation of human motor cortex: surface EMG and single motor unit responses.

作者信息

Day B L, Dressler D, Maertens de Noordhout A, Marsden C D, Nakashima K, Rothwell J C, Thompson P D

机构信息

MRC Human Movement and Balance Unit, Institute of Neurology, Queen Square, London.

出版信息

J Physiol. 1989 May;412:449-73. doi: 10.1113/jphysiol.1989.sp017626.

Abstract
  1. The effects of different forms of brain stimulation on the discharge pattern of single motor units were examined using the post-stimulus time histogram (PSTH) technique and by recording the compound surface electromyographic (EMG) responses in the first dorsal interosseous (FDI) muscle. Electrical and magnetic methods were used to stimulate the brain through the intact scalp of seven normal subjects. Electrical stimuli were applied either with the anode over the lateral central scalp and the cathode at the vertex (anodal stimulation) or with the anode at the vertex and the cathode lateral (cathodal stimulation). Magnetic stimulation used a 9 cm diameter coil centred at the vertex; current in the coil flowed either clockwise or anticlockwise when viewed from above. 2. Supramotor threshold stimuli produced one or more narrow (less than 2 ms) peaks of increased firing in the PSTH of all thirty-two units studied. Anodal stimulation always produced an early peak. The latencies of the peaks produced by other forms of stimulation, or by high intensities of anodal stimulation, were grouped into four time bands relative to this early peak, at intervals of -0.5 to 0.5, 1-2, 2.5-3.5 and 4-5.5 ms later. Peaks occurring within these intervals are referred to as P0 (the earliest anodal), P1, P2 and P3 respectively. 3. At threshold, anodal stimulation evoked only the P0 peak; at higher intensities, the P2 or more commonly the P3 peak also was recruited. The size of the P0 peak appeared to saturate at high intensities. 4. In five of six subjects, cathodal stimulation behaved like anodal stimulation, except that there was a lower threshold for recruitment of the P2 or P3 peak relative to that of the P0 peak. In the other subject, the P3 peak was recruited before the P0 peak. 5. Anticlockwise magnetic [corrected] stimulation, at threshold, often produced several peaks. These always included a P1 peak, and usually a P3 peak. A P0 peak in the PSTH was never produced by an anticlockwise stimulation [corrected] at intensities which we could explore with the technique. 6. Clockwise magnetic [corrected] stimulation never recruited a P1 peak; in most subjects a P3 peak was recruited first and at higher intensities was accompanied by P0 or P2 peaks. 7. On most occasions when more than one peak was observed in a PSTH, the unit fired in only one of the preferred intervals after each shock. However, double firing was seen in five units when high intensities of stimulation were used.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用刺激后时间直方图(PSTH)技术,并通过记录第一背侧骨间肌(FDI)的复合表面肌电图(EMG)反应,研究了不同形式的脑刺激对单个运动单位放电模式的影响。使用电刺激和磁刺激方法,通过七名正常受试者完整的头皮刺激大脑。电刺激时,阳极置于头皮中央外侧,阴极置于头顶(阳极刺激),或者阳极置于头顶,阴极置于外侧(阴极刺激)。磁刺激使用一个直径9厘米、以头顶为中心的线圈;从上方看,线圈中的电流可顺时针或逆时针流动。2. 运动阈上刺激在所有研究的32个运动单位的PSTH中产生了一个或多个狭窄(小于2毫秒)的放电增加峰值。阳极刺激总是产生一个早期峰值。相对于这个早期峰值,其他形式的刺激或高强度阳极刺激产生的峰值潜伏期被分为四个时间段,分别在其之后 -0.5至0.5、1 - 2、2.5 - 3.5和4 - 5.5毫秒的间隔。在这些间隔内出现的峰值分别称为P0(最早的阳极峰值)、P1、P2和P3。3. 在阈值时,阳极刺激仅诱发P0峰值;在更高强度时,P2或更常见的P3峰值也会出现。P0峰值的大小在高强度时似乎趋于饱和。4. 在六名受试者中的五名中,阴极刺激的表现与阳极刺激相似,只是相对于P0峰值,P2或P3峰值的出现阈值较低。在另一名受试者中,P3峰值在P0峰值之前出现。5. 逆时针磁刺激在阈值时通常会产生几个峰值。这些峰值总是包括一个P1峰值,通常还有一个P3峰值。在我们使用该技术所能探索的强度下,逆时针磁刺激从未在PSTH中产生P0峰值。6. 顺时针磁刺激从未出现P1峰值;在大多数受试者中,首先出现P3峰值,在更高强度时伴有P0或P2峰值。7. 在大多数情况下,当在PSTH中观察到多个峰值时,每个刺激后运动单位仅在一个优选间隔内放电。然而,在使用高强度刺激时,有五个运动单位出现了双重放电。(摘要截选至400字)

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