Department of Psychology, University of Washington, Seattle, Box 351525, WA 98195, USA.
Hear Res. 2011 May;275(1-2):53-65. doi: 10.1016/j.heares.2010.12.001. Epub 2010 Dec 8.
The inferior colliculus has been well studied for its role of transmitting information from the brainstem to the thalamocortical system. However, it is also the source of a major pathway to the cerebellum, via the pontine gray (PG). We compared auditory responses from single neurons in the medial geniculate body (MGB) and PG of the awake big brown bat. MGB neurons were selective for a variety of stimulus types whereas PG neurons only responded to pure tones or simple FM sweeps. Best frequencies (BF) in MGB ranged from 8 kHz to > 80 kHz. BFs of PG neurons were all above 20 kHz with a high proportion above 60 kHz. The mean response latency was 19 ms for MGB neurons and 11 ms for PG neurons. MGB and PG contained neurons with a variety of discharge patterns but the most striking difference was the proportion of neurons with responses that lasted longer than the stimulus duration (MGB 13%, PG 58%). Both nuclei contained duration-sensitive neurons; the majority of those in MGB were band pass whereas in the PG they were long pass. Over half of the neurons in both nuclei were binaural. Differences between these nuclei are consistent with the idea that the thalamocortical pathway performs integration over time for cognitive analysis, thereby increasing selectivity and lengthening latency, while the colliculo-pontine pathway, which is more concerned with sensory-motor control, provides rapid input and a lasting trace of an auditory event.
下丘在将信息从脑干传递到丘脑皮质系统方面的作用已得到充分研究。然而,它也是小脑的主要通路的来源,通过桥脑灰(PG)。我们比较了清醒大褐蝙蝠中内侧膝状体(MGB)和 PG 中单神经元的听觉反应。MGB 神经元对各种刺激类型具有选择性,而 PG 神经元仅对纯音或简单 FM 扫频有反应。MGB 中的最佳频率(BF)范围从 8 kHz 到> 80 kHz。PG 神经元的 BF 均高于 20 kHz,其中很大一部分高于 60 kHz。MGB 神经元的平均反应潜伏期为 19 ms,PG 神经元为 11 ms。MGB 和 PG 包含具有各种放电模式的神经元,但最显著的区别是具有比刺激持续时间更长的反应的神经元的比例(MGB 为 13%,PG 为 58%)。两个核都包含对持续时间敏感的神经元;大多数 MGB 中的神经元是带通的,而 PG 中的神经元是长通的。两个核中的一半以上的神经元都是双耳的。这些核之间的差异与这样一种观点一致,即丘脑皮质通路在时间上进行整合以进行认知分析,从而提高选择性并延长潜伏期,而更关注感觉运动控制的丘脑桥脑通路则提供快速输入和听觉事件的持久痕迹。