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使用八字形线圈经颅磁刺激对不同I波的优先激活。

Preferential activation of different I waves by transcranial magnetic stimulation with a figure-of-eight-shaped coil.

作者信息

Sakai K, Ugawa Y, Terao Y, Hanajima R, Furubayashi T, Kanazawa I

机构信息

Department of Neurology, School of Medicine, University of Tokyo, Japan.

出版信息

Exp Brain Res. 1997 Jan;113(1):24-32. doi: 10.1007/BF02454139.

Abstract

Transcranial magnetic stimulation (TMS) over the human primary motor cortex (MI) evokes motor responses in the contralateral limb muscles. The latencies and amplitudes of those responses depend on the direction of induced current in the brain by the stimuli (Mills et al. 1992, Werhahn et al. 1994). This observation suggests that different neural elements might be activated by the differently directed induced currents. Using a figure-of-eight-shaped coil, which induces current with a certain direction, we analyzed the effect of direction of stimulating current on the latencies of responses to TMS in normal subjects. The latencies were measured from surface electromyographic responses of the first dorsal interosseous muscles and the peaks in the peristimulus time histograms (PSTHs) of single motor units from the same muscles. The coil was placed over the MI, with eight different directions each separated by 45 degrees. Stimulus intensity was adjusted just above the motor threshold while subjects made a weak tonic voluntary contraction, so that we can analyse the most readily elicited descending volley in the pyramidal tracts. In most subjects, TMS with medially and anteriorly directed current in the brain produced responses or a peak that occurred some 1.5 ms later than those to anodal electrical stimulation. In contrast, TMS with laterally and posteriorly directed current produced responses or a peak that occurred about 4.5 ms later. There was a single peak in most of PSTHs under the above stimulation condition, whereas there were occasionally two peaks under the transitional current directions between the above two groups. These results suggest that TMS with medially and anteriorly directed current in the brain readily elicits I1 waves, whereas that with laterally and posteriorly directed current preferentially elicits I3 waves. Functional magnetic resonance imaging studies indicated that this direction was related to the course of the central sulcus. TMS with induced current flowing forward relative to the central sulcus preferentially elicited I1 waves and that flowing backward elicited I3 waves. Our finding of the dependence of preferentially activated I waves on the current direction in the brain suggests that different sets of cortical neurons are responsible for different I waves, and are contrarily oriented. The present method using a figure-of-eight-shaped coil must enable us to study physiological characteristics of each I wave separately and, possibly, analyse different neural elements in MI, since it activates a certain I wave selectively without D waves or other I waves.

摘要

经颅磁刺激(TMS)作用于人类初级运动皮层(MI)时,会在对侧肢体肌肉中诱发运动反应。这些反应的潜伏期和幅度取决于刺激在大脑中感应电流的方向(Mills等人,1992年;Werhahn等人,1994年)。这一观察结果表明,不同方向的感应电流可能会激活不同的神经元件。我们使用一种能感应特定方向电流的8字形线圈,分析了刺激电流方向对正常受试者TMS反应潜伏期的影响。潜伏期通过第一背侧骨间肌的表面肌电图反应以及同一肌肉单个运动单位的刺激时间直方图(PSTHs)中的峰值来测量。将线圈置于MI上方,有八个不同方向,每个方向间隔45度。在受试者进行微弱的强直性自主收缩时,将刺激强度调整至略高于运动阈值,以便我们能够分析锥体束中最容易引发的下行冲动。在大多数受试者中,大脑中电流向内侧和前方的TMS产生的反应或峰值比阳极电刺激产生的反应或峰值晚约1.5毫秒出现。相比之下,电流向外侧和后方的TMS产生的反应或峰值约晚4.5毫秒出现。在上述刺激条件下,大多数PSTHs中只有一个峰值,而在上述两组之间的过渡电流方向下偶尔会出现两个峰值。这些结果表明,大脑中电流向内侧和前方的TMS容易引发I1波,而电流向外侧和后方的TMS则优先引发I3波。功能磁共振成像研究表明,这个方向与中央沟的走向有关。相对于中央沟,感应电流向前流动的TMS优先引发I1波,向后流动则引发I3波。我们发现优先激活的I波对大脑中电流方向的依赖性表明,不同组的皮层神经元负责不同的I波,且方向相反。由于使用8字形线圈的本方法能够选择性地激活某一I波而不产生D波或其他I波,所以它必定能使我们分别研究每个I波的生理特性,并有可能分析MI中的不同神经元件。

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