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What's a cerebellar circuit doing in the auditory system?

机译:小脑回路在听觉系统中做什么?

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摘要

The shapes of the head and ears of mammals are asymmetrical top-to-bottom and front-to-back. Reflections of sounds from these structures differ with the angle of incidence, producing cues for monaural sound localization in the spectra of the stimuli at the eardrum. Neurons in the dorsal cochlear nucleus (DCN) respond specifically to spectral cues and integrate them with somatosensory, vestibular and higher-level auditory information through parallel fiber inputs in a cerebellum-like circuit. Synapses between parallel fibers and their targets show long-term potentiation (LTP) and long-term depression (LTD), whereas those between auditory nerve fibers and their targets do not. This paper discusses the integration of acoustic and the proprioceptive information in terms of possible computational roles for the DCN.
机译:哺乳动物的头和耳朵的形状从上到下和从前到后是不对称的。来自这些结构的声音的反射随入射角的不同而不同,从而在耳膜的刺激频谱中产生单声道声音定位的提示。背侧耳蜗核(DCN)中的神经元对光谱线索有特殊反应,并通过小脑样回路中的平行纤维输入将它们与体感,前庭和更高级别的听觉信息整合在一起。平行纤维与其靶标之间的突触显示长期增强(LTP)和长期抑制(LTD),而听神经纤维与其靶标之间的突触则没有。本文从DCN的可能计算角色的角度讨论了声学和本体感受信息的集成。

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