Inoue Ken, Shirai Takushi, Harada Toshihide, Mimori Yasuyo, Matsumoto Masayasu
Department of Clinical Neuroscience and Therapeutics, Hiroshima University Graduate School of Biomedical Sciences, Hiroshima 732-8551.
Rinsho Byori. 2004 Jan;52(1):77-80.
We have summarized the history of electroencephalography(EEG) since 1875, when a paper by Richard Caton was published describing the first EEG recordings in animals. Somatosensory evoked potentials (SEPs) were recorded by George Dawson in 1951. Thereafter, SEPs were developed for clinical use with other evoked potentials such as auditory evoked potentials(VEPs). To understand evoked potentials, related mechanism of induction of far-fields-potentials(FFP) following stimulation of the median nerve has been discussed. SEPs consisted of P9, N9, N10, P11, N11, N13, P13, P14, N18, N20 and P20/P22. Scalp recorded P9 FFP arises from the distal portion of the branchial plexus as reflected by N9 stationary negative potential recorded over the stimulated arm. Cervical N11 and N13 arise from the root entry zone and dorsal horn, respectively. Scalp recorded P13, P14 and N18 FFP originate from the brainstem. In this communication, magnetoencephalography(MEG) and results of one of our recent studies on somatosensory evoked fields(SEFs) are also discussed. One of the important features of MEG is that magnetic signals detected outside the head arise mainly from cortical currents tangential to the skull. Since the net postsynaptic current follows the orientation of cortical pyramidal cells, the MEG signals mainly reflect activity of the fissural cortex, whereas radial current may remain undetected. In our study, we demonstrated SEFs elicited by compression and decompression of a subject's glabrous skin by a human operator. Their dipoles were tangentially oriented from the frontal lobe to parietal lobe.
我们总结了自1875年以来的脑电图(EEG)历史,当时理查德·卡顿发表了一篇论文,描述了动物中的首次脑电图记录。1951年,乔治·道森记录了体感诱发电位(SEP)。此后,SEP与听觉诱发电位(VEP)等其他诱发电位一起被开发用于临床。为了理解诱发电位,已经讨论了正中神经刺激后远场电位(FFP)的相关诱导机制。SEP由P9、N9、N10、P11、N11、N13、P13、P14、N18、N20和P20/P22组成。头皮记录的P9 FFP来自臂丛神经的远端部分,这由刺激手臂上记录到的N9静止负电位反映出来。颈部的N11和N13分别来自神经根进入区和背角。头皮记录的P13、P14和N18 FFP起源于脑干。在本通讯中,还讨论了脑磁图(MEG)以及我们最近关于体感诱发电场(SEF)的一项研究结果。MEG的一个重要特征是,在头部外部检测到的磁信号主要来自与颅骨相切的皮层电流。由于净突触后电流遵循皮层锥体细胞的方向,MEG信号主要反映裂隙皮层的活动,而径向电流可能未被检测到。在我们的研究中,我们展示了由操作人员对受试者无毛皮肤进行压迫和减压所诱发的SEF。它们的偶极从额叶到顶叶呈切向排列。