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平衡还是失衡:听觉系统中方向选择性的抑制性回路。

Balance or imbalance: inhibitory circuits for direction selectivity in the auditory system.

作者信息

Rabang Cal F, Lin Jeff, Wu Guangying K

机构信息

Department of Psychology, The George Washington University, 2300 Eye St NW, Washington, DC, 20037, USA.

出版信息

Cell Mol Life Sci. 2015 May;72(10):1893-906. doi: 10.1007/s00018-015-1841-2. Epub 2015 Feb 1.

Abstract

The auditory system detects and processes dynamic sound information transmitted in the environment. Other than the basic acoustic parameters, such as frequency, amplitude and phase, the time-varying changes of these parameters must also be encoded in our brain. Frequency-modulated (FM) sound is socially and environmentally significant, and the direction of FM sweeps is essential for animal communication and human speech. Many auditory neurons selectively respond to the directional change of such FM signals. In the past half century, our knowledge of auditory representation and processing has been updated frequently, due to technological advancement. Recently, in vivo whole-cell voltage clamp recordings have been applied to different brain regions in sensory systems. These recordings illustrate the synaptic mechanisms underlying basic sensory information processing and provide profound insights toward our understanding of neural circuits for complex signal analysis. In this review, we summarize the major findings of direction selectivity at several key auditory regions and emphasize on the recent discoveries on the synaptic mechanisms for direction selectivity in the auditory system. We conclude this review by describing promising technical developments in dissecting neural circuits and future directions in the study of complex sound analysis.

摘要

听觉系统检测并处理在环境中传输的动态声音信息。除了诸如频率、振幅和相位等基本声学参数外,这些参数随时间的变化也必须在我们的大脑中进行编码。调频(FM)声音在社交和环境方面具有重要意义,并且调频扫描的方向对于动物交流和人类语言至关重要。许多听觉神经元对这种调频信号的方向变化有选择性反应。在过去的半个世纪里,由于技术进步,我们对听觉表征和处理的认识不断更新。最近,体内全细胞电压钳记录已应用于感觉系统的不同脑区。这些记录阐明了基本感觉信息处理背后的突触机制,并为我们理解用于复杂信号分析的神经回路提供了深刻见解。在这篇综述中,我们总结了几个关键听觉区域方向选择性的主要发现,并强调了听觉系统中方向选择性突触机制的最新发现。我们通过描述剖析神经回路方面有前景的技术发展以及复杂声音分析研究的未来方向来结束这篇综述。

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本文引用的文献

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From elementary synaptic circuits to information processing in primary auditory cortex.从基本的突触回路到初级听觉皮层的信息处理。
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