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首页> 外文期刊>Journal of Comparative Physiology A: Neuroethology, Sensory, Neural, and Behavioral Physiology >Discriminating among complex signals: the roles of inhibition for creating response selectivities
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Discriminating among complex signals: the roles of inhibition for creating response selectivities

机译:区分复杂信号:抑制作用在建立反应选择性中的作用

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The review deals largely with studies from my laboratory that were prompted by conversations I had with Gerhard Neuweiler more than 15 years ago. The studies were conducted on bats and dealt with mechanisms that enable the population of neurons in the inferior colliculus (IC) to respond selectively to the variety of signals bats emit for both communication and echolocation. The first section is concerned with how neurons in the dorsal nucleus of the lateral lemniscus (DNLL), the nucleus ventral to the IC, respond to species-specific signals and how they compare to responses of IC neurons evoked by the same signals. Those studies showed that DNLL neurons have no sideband inhibition and their responses are determined by excitation. In contrast, inhibition dominates in the IC where it carves out highly selective discharge properties. Those studies, in turn, raised questions about the quantitative features of inhibition that could only be answered with more sophisticated techniques. In the second section, results from analyses with spectrotemporal receptive fields (STRFs) are presented, and in the final section I show data derived from in vivo whole cell recordings that illustrate how features of inhibition interact with excitation to generate directionality selective responses in the IC.
机译:这篇评论主要涉及我实验室的研究,这些研究是15年前我与Gerhard Neuweiler进行的对话所促成的。这项研究是在蝙蝠上进行的,涉及的机制使下丘脑(IC)中的神经元群体能够选择性地响应蝙蝠为交流和回声定位发出的各种信号。第一部分关注的是外侧背侧双侧列神经(DNLL)背侧核(IC腹侧核)中的神经元如何响应物种特异性信号,以及它们如何与相同信号引起的IC神经元的响应进行比较。这些研究表明,DNLL神经元没有边带抑制作用,其反应是通过激发来确定的。相反,抑制在IC中占主导地位,在IC中它表现出高度选择性的放电特性。反过来,这些研究提出了有关抑制的定量特征的问题,而这些定量特征只能用更复杂的技术来回答。在第二部分中,介绍了使用光谱时域接受场(STRF)进行分析的结果,在最后部分中,我显示了来自体内全细胞记录的数据,这些数据说明了抑制功能如何与激发相互作用,从而在IC中产生方向性选择性反应。

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