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通过时间相干性绑定听觉源的声学特征。

Binding the Acoustic Features of an Auditory Source through Temporal Coherence.

作者信息

Rezaeizadeh Mohsen, Shamma Shihab

机构信息

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

出版信息

Cereb Cortex Commun. 2021 Oct 6;2(4):tgab060. doi: 10.1093/texcom/tgab060. eCollection 2021.

Abstract

Numerous studies have suggested that the perception of a target sound stream (or source) can only be segregated from a complex acoustic background mixture if the acoustic features underlying its perceptual attributes (e.g., pitch, location, and timbre) induce temporally modulated responses that are mutually correlated (or coherent), and that are uncorrelated (incoherent) from those of other sources in the mixture. This "temporal coherence" hypothesis asserts that attentive listening to one acoustic feature of a target enhances brain responses to that feature but would also concomitantly (1) induce mutually excitatory influences with other coherently responding neurons, thus enhancing (or binding) them all as they respond to the attended source; by contrast, (2) suppressive interactions are hypothesized to build up among neurons driven by temporally incoherent sound features, thus relatively reducing their activity. In this study, we report on EEG measurements in human subjects engaged in various sound segregation tasks that demonstrate rapid binding among the temporally coherent features of the attended source regardless of their identity (pure tone components, tone complexes, or noise), harmonic relationship, or frequency separation, thus confirming the key role temporal coherence plays in the analysis and organization of auditory scenes.

摘要

众多研究表明,只有当目标声流(或声源)的感知属性所基于的声学特征(例如音高、位置和音色)引发相互关联(或相干)的时间调制响应,且与混合声中其他声源的响应不相关(非相干)时,才能从复杂的声学背景混合中分离出对目标声流(或声源)的感知。这种“时间相干性”假说认为,专注聆听目标的一种声学特征会增强大脑对该特征的反应,但同时也会(1)与其他相干响应的神经元产生相互兴奋性影响,从而在它们对被关注声源做出反应时增强(或绑定)所有这些神经元;相比之下,(2)据推测,由时间上非相干的声音特征驱动的神经元之间会形成抑制性相互作用,从而相对降低它们的活动。在本研究中,我们报告了参与各种声音分离任务的人类受试者的脑电图测量结果,这些结果表明,无论被关注声源的特性(纯音成分、复音或噪声)、谐波关系或频率间隔如何,其时间相干特征之间都会迅速绑定,从而证实了时间相干性在听觉场景分析和组织中所起的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4128/8567849/2e8bc2e6fc64/tgab060f1.jpg

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