Shaw N A
Department of Physiology, School of Medicine, University of Auckland, New Zealand.
Electromyogr Clin Neurophysiol. 1992 Dec;32(12):579-90.
Auditory evoked potentials were recorded from the rat using skull screw electrodes inserted over the inferior colliculus and the cerebellum. In addition, brainstem auditory evoked potentials (BAEPs) were also recorded. The response recorded from over the inferior colliculus consisted of a slow positive potential with one of two possible peak latencies. The mean latency of the earlier potential was 5.6 ms and that of the later potential was 6.4 ms. A hypothetical generator for the first collicular potential is the termination of the lateral lemniscus in the ventrolateral inferior colliculus, while the later collicular potential could have its origins within the brachium of the inferior colliculus. None of the principal nor minor BAEP waves corresponded to either of the collicular responses. Nor did the trough of negativity between BAEP waves IV and V which is often thought to reflect activity generated within the midbrain. The potential recorded over the cerebellum also consisted of a slow positivity but with a slightly sharper contour than that of the collicular response. The mean latency of the cerebellar potential was 4.9 ms. As there was no temporal relationship between collicular and cerebellar potentials, the present study provided no support for the theory that cerebellar auditory potentials are artefactual and simply far field reflections of activity generated in the inferior colliculus. Judging by the timing of the BAEP waves, it is also concluded that the afferent volley most likely projects to the cerebellum via a collateral pathway branching off the caudal part of the lateral lemniscus.
使用插入大鼠下丘和小脑上方的颅骨螺钉电极记录听觉诱发电位。此外,还记录了脑干听觉诱发电位(BAEP)。在下丘上方记录到的反应包括一个缓慢的正电位,具有两种可能的峰值潜伏期之一。较早电位的平均潜伏期为5.6毫秒,较晚电位的平均潜伏期为6.4毫秒。第一个下丘电位的假设发生器是外侧丘系在腹外侧下丘的终止,而较晚的下丘电位可能起源于下丘臂。主要和次要的BAEP波均与任何一个下丘反应不对应。BAEP波IV和V之间的负性波谷也不对应,该波谷通常被认为反映中脑内产生的活动。在小脑上方记录到的电位也由一个缓慢的正电位组成,但轮廓比下丘反应略尖锐。小脑电位的平均潜伏期为4.9毫秒。由于下丘和小脑电位之间没有时间关系,本研究不支持小脑听觉电位是人为现象且只是下丘产生活动的远场反射这一理论。根据BAEP波的时间判断,还得出传入冲动很可能通过从外侧丘系尾部发出的侧支通路投射到小脑的结论。