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经颅磁刺激与皮质诱发电位:一项经颅磁刺激/脑电图联合记录研究

Transcranial magnetic stimulation and cortical evoked potentials: a TMS/EEG co-registration study.

作者信息

Bonato C, Miniussi C, Rossini P M

机构信息

Neurofisiologia IRCCS Centro S. Giovanni di Dio Fatebenefratelli, Via Pilastroni 4, 25125 Brescia, Italy.

出版信息

Clin Neurophysiol. 2006 Aug;117(8):1699-707. doi: 10.1016/j.clinph.2006.05.006. Epub 2006 Jun 22.

Abstract

OBJECTIVE

In recent years, a promising tool has been introduced which allows the co-registration of electroencephalographic (EEG) activity during brain transcranial magnetic stimulation (TMS). The aims of the present study are to identify eventual stimulus-related artefacts, and to confirm and extend previous EEG/TMS findings about the possible networks generating EEG responses evoked by TMS.

METHODS

Focal TMS was delivered to the left primary motor cortex (MI), with different coils (real and sham) and orientations (45 and 135 degrees in respect to the sagittal plane), in six healthy subjects. EEG and motor evoked potentials (MEPs) were simultaneously recorded from 19 scalp electrodes.

RESULTS

TMS, with coil oriented at 45 degrees , induced EEG responses characterized by a sequence of positive deflections peaking at approximately 14, 30, 60 and 190 ms and negative deflections peaking at approximately 10, 18, 40 and 100 ms post-TMS. The negative components were recorded at the recording electrode corresponding with the stimulation site (N10, N18), as well as at recording electrodes over the frontal region of the contralateral, unstimulated, hemisphere (N40) and bilaterally over the central hemispheres with its maximal representation at the stimulation site (N100). The positive components were instead detected at the frontal region of the right, unstimulated, hemisphere (P14), over the central electrodes Cz, Fz and the frontal region of the right hemisphere (P30), at the stimulation site (P60), and over the frontal regions of both hemispheres. When TMS was delivered with the coil oriented at 135 degrees , no MEPs were recorded from the right target muscle. Nonetheless, all the TMS-induced EEG components were still evoked apart from the N20-P30. Finally, TMS with the sham coil over left MI did not induce either significant EEG responses or MEPs.

CONCLUSIONS

In conclusion, the TMS evoked components we have obtained by recording in continuous mode strikingly fit with those already described by other authors for both their latencies and the spatio-temporal pattern of scalp distribution.

SIGNIFICANCE

This experiment is a farther validation of the combined EEG/TMS recording technique as a promising tool for experimental and clinical purposes.

摘要

目的

近年来,引入了一种很有前景的工具,它能够在脑经颅磁刺激(TMS)过程中对脑电图(EEG)活动进行共同配准。本研究的目的是识别最终与刺激相关的伪迹,并确认和扩展先前关于可能产生TMS诱发的EEG反应的网络的EEG/TMS研究结果。

方法

在6名健康受试者中,使用不同的线圈(真线圈和假线圈)和方向(相对于矢状面为45度和135度),对左侧初级运动皮层(MI)进行局灶性TMS。从19个头皮电极同时记录EEG和运动诱发电位(MEP)。

结果

当线圈方向为45度时,TMS诱发的EEG反应的特征是一系列正向偏转,分别在TMS后约14、30、60和190毫秒达到峰值,以及负向偏转,分别在TMS后约10、18、40和100毫秒达到峰值。负向成分在与刺激部位对应的记录电极(N10、N18)处记录到,也在对侧未受刺激半球的额叶区域的记录电极(N40)处以及双侧中央半球在刺激部位有最大表现的记录电极(N100)处记录到。相反,正向成分在右侧未受刺激半球的额叶区域(P14)、中央电极Cz、Fz和右侧半球的额叶区域(P30)、刺激部位(P60)以及双侧半球的额叶区域检测到。当线圈方向为135度进行TMS时,未从右侧目标肌肉记录到MEP。尽管如此,除了N20 - P30外,所有TMS诱发的EEG成分仍然被诱发。最后,在左侧MI上使用假线圈进行TMS既未诱发明显的EEG反应也未诱发MEP。

结论

总之,我们通过连续记录模式获得的TMS诱发成分在潜伏期和头皮分布的时空模式方面与其他作者已经描述的成分惊人地吻合。

意义

本实验进一步验证了EEG/TMS联合记录技术作为一种用于实验和临床目的的有前景的工具。

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