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本文引用的文献

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Origin of the pyramidal tract in the cat.猫锥体束的起源
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2
Single and multiple-unit analysis of cortical stage of pyramidal tract activation.锥体束激活皮层阶段的单单位和多单位分析。
J Neurophysiol. 1954 Jul;17(4):345-63. doi: 10.1152/jn.1954.17.4.345.
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Responses of the pyramidal tract to stimulation of the baboon's motor cortex.锥体束对狒狒运动皮层刺激的反应。
J Physiol. 1967 Aug;191(3):653-72. doi: 10.1113/jphysiol.1967.sp008273.
4
Motor cortex stimulation in intact man. 2. Multiple descending volleys.完整人体中的运动皮层刺激。2. 多个下行冲动群
Brain. 1987 Oct;110 ( Pt 5):1191-209. doi: 10.1093/brain/110.5.1191.
5
Responses in small hand muscles from magnetic stimulation of the human brain.人脑磁刺激引起的手部小肌肉反应。
J Physiol. 1987 Jul;388:397-419. doi: 10.1113/jphysiol.1987.sp016621.
6
Electric and magnetic stimulation of human motor cortex: surface EMG and single motor unit responses.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
J Physiol. 1989 May;412:449-73. doi: 10.1113/jphysiol.1989.sp017626.
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Descending volley after electrical and magnetic transcranial stimulation in man.人类经电和磁经颅刺激后的下行性冲动发放
Neurosci Lett. 1990 Apr 20;112(1):54-8. doi: 10.1016/0304-3940(90)90321-y.
8
Excitation of the corticospinal tract by electromagnetic and electrical stimulation of the scalp in the macaque monkey.通过对猕猴头皮进行电磁和电刺激来激发皮质脊髓束。
J Physiol. 1990 Jun;425:301-20. doi: 10.1113/jphysiol.1990.sp018104.
9
Corticospinal volleys evoked by anodal and cathodal stimulation of the human motor cortex.阳极和阴极刺激人类运动皮层所诱发的皮质脊髓冲动
J Physiol. 1990 Jun;425:283-99. doi: 10.1113/jphysiol.1990.sp018103.
10
Stimulation of the human motor cortex through the scalp.通过头皮刺激人类运动皮层。
Exp Physiol. 1991 Mar;76(2):159-200. doi: 10.1113/expphysiol.1991.sp003485.

人体受试者中皮质脊髓冲动与经颅磁刺激和电刺激的直接比较。

Direct comparison of corticospinal volleys in human subjects to transcranial magnetic and electrical stimulation.

作者信息

Burke D, Hicks R, Gandevia S C, Stephen J, Woodforth I, Crawford M

机构信息

Prince of Wales Medical Research Institute, University of New South Wales, Sydney, Australia.

出版信息

J Physiol. 1993 Oct;470:383-93. doi: 10.1113/jphysiol.1993.sp019864.

DOI:10.1113/jphysiol.1993.sp019864
PMID:8068071
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1143923/
Abstract
  1. The effects of graded transcranial magnetic and anodal electrical stimulation of the human motor cortex were compared in human subjects undergoing orthopaedic operations on the spine, before and after withdrawal of volatile anaesthesia. Corticospinal volleys were recorded from the spinal cord in the low-cervical and low-thoracic regions (six subjects) or the mid-thoracic region (two subjects) using bipolar electrodes inserted into the epidural space. 2. Electrical stimuli were delivered using anode at the vertex and cathode 7 cm laterally. The corticospinal volley at threshold consisted of a single deflection with a mean latency to peak of 4.17 ms at the rostral recording site. With further increases in stimulus strength the latency of this D wave shortened in two steps, first by 0.89 ms (seven subjects) and then by a further 0.8 ms (two subjects), indicating that the site of activation of some corticospinal neurones had shifted to deep subcortical sites. 3. When volatile anaesthetics were given, a corticospinal volley could not be defined in three subjects with magnetic stimuli of 70, 80 and 100% maximal stimulator output with the coil at the vertex (Novametrix Magstim 200, round coil, external diameter 14 cm). In the remaining five subjects, the component of lowest threshold was a D wave recorded at the rostral site at 4.0 ms when stimulus intensity was, on average, 70%. With stimuli of 90-100% a total of five small I waves could be defined in the five subjects (i.e. on average one I wave per subject). 4. After cessation of volatile anaesthetics in seven subjects, the thresholds for D and I waves were lower and their amplitudes were greater. The D wave remained the component of lowest threshold in all subjects, appearing at the low-cervical level with magnetic stimuli of 50%. However, in three subjects I waves also appeared at D wave threshold, and the D wave was smaller than with electrical stimulation at I wave threshold. There was no consistent change in latency of the magnetic D wave as stimulus intensity was increased to 100%. 5. These findings suggest that the previously reported difference in latency of the EMG potentials produced in upper-limb muscles by anodal stimulation and magnetic stimulation of the human motor cortex is not because the corticospinal volley induced by magnetic stimulation lacks a D wave.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在接受脊柱骨科手术的人类受试者中,比较了分级经颅磁刺激和阳极电刺激对人类运动皮层的影响,分别在撤离挥发性麻醉剂前后进行。使用插入硬膜外间隙的双极电极,在低位颈椎和低位胸椎区域(6名受试者)或胸中段区域(2名受试者)记录脊髓的皮质脊髓冲动。2. 使用顶点处的阳极和外侧7 cm处的阴极施加电刺激。阈值处的皮质脊髓冲动由单个偏转组成,在头端记录部位,峰值平均潜伏期为4.17 ms。随着刺激强度进一步增加,该D波的潜伏期分两步缩短,首先缩短0.89 ms(7名受试者),然后再缩短0.8 ms(2名受试者),这表明一些皮质脊髓神经元的激活部位已转移至皮质下深部部位。3. 给予挥发性麻醉剂时,在3名受试者中,当线圈置于顶点(Novametrix Magstim 200,圆形线圈,外径14 cm),磁刺激强度为最大刺激器输出的70%、80%和100%时,无法定义皮质脊髓冲动。在其余5名受试者中,最低阈值成分是头端部位在4.0 ms记录到的D波,此时平均刺激强度为70%。当刺激强度为90% - 100%时,在这5名受试者中总共可定义5个小I波(即平均每名受试者1个I波)。4. 在7名受试者停止使用挥发性麻醉剂后,D波和I波的阈值降低,幅度增大。D波在所有受试者中仍然是最低阈值成分,在磁刺激强度为50%时出现在低位颈椎水平。然而,在3名受试者中,I波也在D波阈值时出现,并且D波比在I波阈值时电刺激产生的D波小。当刺激强度增加到100%时,磁D波的潜伏期没有一致的变化。5. 这些发现表明,先前报道的人类运动皮层阳极刺激和磁刺激在上肢肌肉中产生的肌电图电位潜伏期差异,并非因为磁刺激诱发的皮质脊髓冲动缺乏D波。(摘要截短至400字)