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晚期人类听觉诱发电位的源分析。

A source analysis of the late human auditory evoked potentials.

机构信息

Max-Planck-Institut für Psychiatrie.

出版信息

J Cogn Neurosci. 1989 Fall;1(4):336-55. doi: 10.1162/jocn.1989.1.4.336.

Abstract

The intracerebral generators of the human auditory evoked potentials were estimated using dipole source analysis of 14-channel scalp recordings. The response to a 400-msec toneburst presented every 0.9 sec could be explained by three major dipole sources in each temporal lobe. The first was a vertically oriented dipole located on the supratemporal plane in or near the auditory koniocortex. This contributed to the scalp-recorded N1 wave at 100 msec. The second was a vertically oriented dipole source located on the supratemporal plane somewhat anterior to the first. This contributed to both the Nl and the sustained potential (SP). The third was a laterally oriented dipole source that perhaps originated in the magnopyramidal temporal field. This contributed a negative wave to the lateral scalp recordings at the latency of 145 msec. A change in the frequency of the toneburst elicited an additional negativity in the scalp-recording -the mismatch negativity (MMN). When the frequency change was large, the mismatch negativity was composed of two distinct sources with sequential but partially overlapping activities. The earlier corresponded to the Nl dipole sources and the later to a more anteriorly located dipole with an orientation more lateral than Nl. Only the later source was active when the frequency change was small. MMN source activities peaked about 15 msec earlier in the contralateral hemisphere, while this difference was only 4 msec for the sources of the Nl.

摘要

采用 14 通道头皮记录的偶极子源分析估计了人类听觉诱发电位的脑内发生器。对每 0.9 秒呈现一次的 400 毫秒声爆发的反应可以用每个颞叶中的三个主要偶极子源来解释。第一个是垂直方向的偶极子,位于听锥细胞的颞上平面内或附近。这有助于头皮记录的 100 毫秒时的 N1 波。第二个是垂直方向的偶极子源,位于第一个偶极子源的稍前方。这有助于 N1 和持续电位 (SP)。第三个是侧向偶极子源,可能起源于大锥体颞叶区。这在 145 毫秒的潜伏期时向外侧头皮记录贡献了一个负波。声爆发频率的变化在头皮记录中引起了额外的负性 - 失匹配负波 (MMN)。当频率变化较大时,失匹配负波由两个具有顺序但部分重叠活动的不同源组成。较早的对应于 N1 偶极子源,而较晚的对应于更靠前的偶极子源,其方向比 N1 更侧向。只有当频率变化较小时,后一个源才活跃。MMN 源活动在对侧半球中早约 15 毫秒达到峰值,而 N1 源的差异仅为 4 毫秒。

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