Di S, Barth D S
Department of Psychology, University of Colorado at Boulder 80309-0345.
Brain Res. 1993 Dec 10;630(1-2):303-14. doi: 10.1016/0006-8993(93)90670-i.
High spatial resolution epicortical recording techniques and numerical modeling were used to investigate laterality effects on the middle latency auditory evoked potential (MAEP) complex. Our data confirm previous reports that auditory stimulus laterality has a consistent effect on the amplitude, timing, and spatial distribution of the MAEP complex. The earliest temporal components (P1a, P1b and N1) show the greatest sensitivity, and are absent during ipsilateral stimulation. The later positive slow wave (P2) is present at the same amplitude during all stimulation conditions. Generation of the P2 appears to be independent of prior activation of areas 36 and 41 reflected in the early components, suggesting its generation by a more diffuse thalamocortical pathway, possibly from the medial division of the medial geniculate. Serial vs. parallel activation of rodent auditory cortex is discussed in the context of laterality-sensitive MAEP components.
采用高空间分辨率的大脑皮质表面记录技术和数值建模来研究中潜伏期听觉诱发电位(MAEP)复合体的偏侧性效应。我们的数据证实了先前的报道,即听觉刺激的偏侧性对MAEP复合体的幅度、时间和空间分布具有一致的影响。最早的时间成分(P1a、P1b和N1)表现出最大的敏感性,并且在同侧刺激期间不存在。较晚出现的正慢波(P2)在所有刺激条件下以相同的幅度出现。P2的产生似乎独立于早期成分中反映的36区和41区的先前激活,这表明它是由更弥散的丘脑皮质通路产生的,可能来自内侧膝状体的内侧部分。在对偏侧性敏感的MAEP成分的背景下讨论了啮齿动物听觉皮层的串行与并行激活。