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时相干结构快速塑造神经元间的相互作用。

Temporal coherence structure rapidly shapes neuronal interactions.

机构信息

Department of Electrical and Computer Engineering, Institute for Systems Research, University of Maryland, College Park, Maryland 20742, USA.

Department of Psychology, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

Nat Commun. 2017 Jan 5;8:13900. doi: 10.1038/ncomms13900.

Abstract

Perception of segregated sources is essential in navigating cluttered acoustic environments. A basic mechanism to implement this process is the temporal coherence principle. It postulates that a signal is perceived as emitted from a single source only when all of its features are temporally modulated coherently, causing them to bind perceptually. Here we report on neural correlates of this process as rapidly reshaped interactions in primary auditory cortex, measured in three different ways: as changes in response rates, as adaptations of spectrotemporal receptive fields following stimulation by temporally coherent and incoherent tone sequences, and as changes in spiking correlations during the tone sequences. Responses, sensitivity and presumed connectivity were rapidly enhanced by synchronous stimuli, and suppressed by alternating (asynchronous) sounds, but only when the animals engaged in task performance and were attentive to the stimuli. Temporal coherence and attention are therefore both important factors in auditory scene analysis.

摘要

感知分离的声源对于在嘈杂的声学环境中导航至关重要。实现这一过程的一个基本机制是时间相干性原理。该原理假定,只有当信号的所有特征都以时间相干的方式调制时,信号才会被感知为来自单个源,从而在感知上产生关联。在这里,我们报告了在初级听觉皮层中这种过程的神经相关性,这是通过三种不同的方式测量的:响应率的变化,对时间相干和非相干音调序列刺激后的频谱时间感受野的适应,以及在音调序列期间的尖峰相关性的变化。当动物进行任务并关注刺激时,同步刺激会迅速增强响应、灵敏度和假定的连接性,而交替(异步)声音则会抑制响应、灵敏度和假定的连接性。因此,时间相干性和注意力都是听觉场景分析的重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65ca/5228385/f0449bb78ba4/ncomms13900-f1.jpg

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