Hashimoto I
Electroencephalogr Clin Neurophysiol. 1984 Mar;57(3):221-7. doi: 10.1016/0013-4694(84)90123-8.
Short latency somatosensory evoked potentials (SEPs) were recorded in man from an array of electrodes within the IVth (the pons) and IIIrd ventricles (the thalamus) and the aqueduct of Sylvius (the midbrain). The slow negative (N15 and N20) and positive (P22) waves were preceded by 4 small positive (P9, P11, P13, and P14) waves by approximately 1 msec duration in scalp recordings. The sources of these waves have been differentiated on the basis of their timing and spatial gradients of corresponding intracranial potentials. While P11 is identified as volume conducted from below the brain-stem, P13 and P14 reflect synchronized volleys of the medial lemniscus and its branches to the various pontine and mesencephalic nuclei. In contrast to these earlier positive wavelets arising from fiber tracts, N15 may represent postsynaptic activities within these pontine and midbrain nuclei. N20 and P22 are the initial responses of the juxtarolandic cortex.
在人体中,从第四脑室(脑桥)、第三脑室(丘脑)以及中脑导水管周围的一系列电极记录到了短潜伏期体感诱发电位(SEP)。在头皮记录中,缓慢的负波(N15和N20)以及正波(P22)之前约1毫秒有4个小正波(P9、P11、P13和P14)。这些波的来源已根据其时间以及相应颅内电位的空间梯度进行了区分。虽然P11被确定为由脑干下方的容积传导产生,但P13和P14反映了内侧丘系及其分支向各个脑桥和中脑核的同步放电。与这些由纤维束产生的早期正小波不同,N15可能代表这些脑桥和中脑核内的突触后活动。N20和P22是中央旁小叶皮质的初始反应。