Achor L J, Starr A
Electroencephalogr Clin Neurophysiol. 1980 Feb;48(2):154-73. doi: 10.1016/0013-4694(80)90301-6.
A spatial and temporal analysis of auditory evoked potentials within the brain stem were performed in cats to determine the areas of the brain stem having large amplitude voltage fields, corresponding in latency to each of the components of the scalp-recorded auditory brain stem response (ABR). On the basis of this criterion, the first few components (occurring within 2 msec post-stimulus) were attributed to activity in a single structure, the eighth nerve. In contrast, each of the other components was correlated with large amplitude fields in at least two sites within the brain stem auditory pathways. The findings demonstrate a complex spatial and temporal distribution of electrical events within the auditory brain stem pathways, which preclude any simple one-to-one relationship between a given anatomical site and a particular component of the ABR. The possibility that the determination of the generators might be influenced by filtering of the evoked potentials was also examined. High-pass filtering of the evoked potentials resulted in a modification of the defined generators for only one of the components studied (P4). Filtering had little effect on the components of the scalp-recorded ABR.
在猫身上对脑干内的听觉诱发电位进行了时空分析,以确定脑干中具有大幅度电压场的区域,这些区域在潜伏期上与头皮记录的听觉脑干反应(ABR)的每个成分相对应。基于这一标准,最初的几个成分(在刺激后2毫秒内出现)被归因于单一结构——第八神经的活动。相比之下,其他每个成分都与脑干听觉通路内至少两个部位的大幅度场相关。这些发现表明听觉脑干通路内电活动存在复杂的时空分布,这排除了给定解剖部位与ABR特定成分之间任何简单的一一对应关系。还研究了诱发电位滤波可能影响发生器确定的可能性。诱发电位的高通滤波仅对所研究的一个成分(P4)的定义发生器产生了改变。滤波对头皮记录的ABR成分影响很小。