Nayagam David A X, Clarey Janine C, Paolini Antonio G
The Bionic Ear Institute, East Melbourne, Victoria, Australia.
J Neurophysiol. 2005 Aug;94(2):1651-4. doi: 10.1152/jn.00167.2005. Epub 2005 Apr 7.
The function of the ventral nucleus of the lateral lemniscus (VNLL), a secondary processing site within the auditory brain stem, is unclear. It is known to be a major source of inhibition to the inferior colliculus (IC). It is also thought to play a role in coding the temporal aspects of sound, such as onsets and the periodic components of complex stimuli. In vivo intracellular recordings from VNLL neurons (n = 56) in urethane anesthetized rats revealed the presence of large-amplitude, short-duration, onset inhibition in a subset of neurons (14.3%). This inhibition occurred before the first action potential (AP) elicited by noise or tone bursts, was broadly tuned to tonal frequency and was shown to delay the first AP. Our data suggest it is a result of an intrinsic circuit activated by the octopus cell pathway originating in the contralateral cochlear nucleus; this pathway is known to convey exquisitely timed and broadly tuned onset information. This powerful inhibition within the VNLL appears to control the timing of this structure's inhibitory output to higher centers, which has important auditory processing outcomes. The circuit also provides a pathway for fast, broadly tuned, onset inhibition to the IC.
外侧丘系腹侧核(VNLL)是听觉脑干内的一个二级处理部位,其功能尚不清楚。已知它是下丘(IC)的主要抑制源。它也被认为在编码声音的时间特征方面发挥作用,比如声音的起始和复杂刺激的周期性成分。在对经乌拉坦麻醉的大鼠的VNLL神经元(n = 56)进行的体内细胞内记录显示,一部分神经元(14.3%)存在大幅度、短持续时间的起始抑制。这种抑制发生在由噪声或短纯音诱发的第一个动作电位(AP)之前,对音调频率具有广泛的调谐,并被证明会延迟第一个AP。我们的数据表明,这是由起源于对侧耳蜗核的章鱼细胞通路激活的一个内在回路的结果;已知该通路传递精确计时且广泛调谐的起始信息。VNLL内这种强大的抑制似乎控制着该结构向更高中枢的抑制性输出的时间,这具有重要的听觉处理结果。该回路还为向IC提供快速、广泛调谐的起始抑制提供了一条途径。