Park T J, Grothe B, Pollak G D, Schuller G, Koch U
Department of Biological Sciences, University of Illinois at Chicago 60607, USA.
J Neurosci. 1996 Oct 15;16(20):6554-66. doi: 10.1523/JNEUROSCI.16-20-06554.1996.
Neurons in the lateral superior olive (LSO) respond selectively to interaural intensity differences (IIDs), one of the chief cues used to localize sounds in space. LSO cells are innervated in a characteristic pattern: they receive an excitatory input from the ipsilateral ear and an inhibitory input from the contralateral ear. Consistent with this pattern, LSO cells generally are excited by sounds that are more intense at the ipsilateral ear and inhibited by sounds that are more intense at the contralateral ear. Despite their relatively homogeneous pattern of innervation, IID selectivity varies substantially from cell to cell, such that selectivities are distributed over the range of IIDs that would be encountered in nature. For some time, researchers have speculated that the relative timing of the excitatory and inhibitory inputs to an LSO cell might shape IID selectivity. To test this hypothesis, we recorded from 50 LSO cells in the free-tailed bat while presenting stimuli that varied in interaural intensity and in interaural time of arrival. The results suggest that, for more than half of the cells, the latency of inhibition was several hundred microseconds longer than the latency of excitation. Increasing the intensity to the inhibitory ear shortened the latency of inhibition and brought the timing of the inputs from the two ears into register. Thus, a neural delay of the inhibition helped to define the IID selectivity of these cells, accounting for a significant part of the variation in selectivity among LSO cells.
外侧上橄榄核(LSO)中的神经元对双耳强度差(IID)有选择性反应,IID是用于在空间中定位声音的主要线索之一。LSO细胞以一种特征性模式接受神经支配:它们从同侧耳接收兴奋性输入,从对侧耳接收抑制性输入。与这种模式一致,LSO细胞通常被同侧耳声音强度更高的声音所兴奋,而被对侧耳声音强度更高的声音所抑制。尽管它们的神经支配模式相对均匀,但IID选择性在细胞之间差异很大,以至于选择性分布在自然界中会遇到的IID范围内。一段时间以来,研究人员推测,LSO细胞兴奋性和抑制性输入的相对时间可能会影响IID选择性。为了验证这一假设,我们在自由尾蝠中记录了50个LSO细胞的活动,同时呈现了双耳强度和双耳到达时间不同的刺激。结果表明,对于超过一半的细胞,抑制的潜伏期比兴奋的潜伏期长几百微秒。增加抑制性耳的强度会缩短抑制的潜伏期,并使来自双耳的输入时间同步。因此,抑制的神经延迟有助于确定这些细胞的IID选择性,这解释了LSO细胞之间选择性变化的很大一部分。