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正中神经和手指刺激体感诱发电位的源分析:电场和磁场的多通道同步记录结合三维磁共振断层扫描

Source analysis of median nerve and finger stimulated somatosensory evoked potentials: multichannel simultaneous recording of electric and magnetic fields combined with 3D-MR tomography.

作者信息

Buchner H, Fuchs M, Wischmann H A, Dössel O, Ludwig I, Knepper A, Berg P

机构信息

Department of Neurology, RWTH Aachen, FRG.

出版信息

Brain Topogr. 1994 Summer;6(4):299-310. doi: 10.1007/BF01211175.

Abstract

At the current state of technology, multichannel simultaneous recording of combined electric potentials and magnetic fields should constitute the most powerful tool for separation and localization of focal brain activity. We performed an explorative study of multichannel simultaneous electric SEPs and magnetically recorded SEFs. MEG only sees tangentially oriented sources, while EEG signals include the entire activity of the brain. These characteristics were found to be very useful in separating multiple sources with overlap of activity in time. The electrically recorded SEPs were adequately modelled by three equivalent dipoles located: (1) in the region of the brainstem, modelling the P14 peak at the scalp, (2) a tangentially oriented dipole, modelling the N20-P20 and N30-P30 peaks, and part of the P45, and (3) a radially oriented dipole, modelling the P22 peak and part of the P45, both located in the region of the somatosensory cortex. Magnetically recorded SEFs were adequately modelled by a single equivalent dipole, modelling the N20-P20 and N30-P30 peaks, located close to the posterior bank of the central sulcus, in area 3b (mean deviation: 3 mm). The tangential sources in the electrical data were located 6 mm on average from the area 3b. MEG and EEG was able to locate the sources of finger stimulated SEFs in accordance with the somatotopic arrangement along the central fissure. A combined analysis demonstrated that MEG can provide constraints to the orientation and location of sources and helps to stabilize the inverse solution in a multiple-source model of the EEG.

摘要

在当前技术水平下,多通道同时记录组合电位和磁场应是分离和定位局灶性脑活动的最有力工具。我们对多通道同时记录的电刺激体感诱发电位(SEPs)和磁记录的体感诱发电场(SEFs)进行了探索性研究。脑磁图(MEG)只能检测到切向取向的源,而脑电图(EEG)信号包含大脑的全部活动。发现这些特性在分离活动时间上有重叠的多个源时非常有用。电记录的SEPs可通过三个等效偶极子进行充分建模:(1)位于脑干区域,模拟头皮上的P14峰;(2)一个切向取向的偶极子,模拟N20 - P20和N30 - P30峰以及部分P45峰;(3)一个径向取向的偶极子,模拟P22峰和部分P45峰,二者均位于体感皮层区域。磁记录的SEFs可通过一个等效偶极子进行充分建模,模拟N20 - P20和N30 - P30峰,位于中央沟后缘附近的3b区(平均偏差:3毫米)。电数据中的切向源平均距离3b区6毫米。MEG和EEG能够根据沿中央沟的躯体定位排列来定位手指刺激SEFs的源。联合分析表明,MEG可以为源的方向和位置提供约束,并有助于在EEG的多源模型中稳定逆解。

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