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Hierarchical Organization of Human Auditory Cortex: Evidence from Acoustic Invariance in the Response to Intelligible Speech

机译:人类听觉皮层的层次组织:对可理解语音的响应中的声音不变性的证据

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摘要

Hierarchical organization of human auditory cortex has been inferred from functional imaging observations that core regions respond to simple stimuli (tones) whereas downstream regions are selectively responsive to more complex stimuli (band-pass noise, speech). It is assumed that core regions code low-level features, which are combined at higher levels in the auditory system to yield more abstract neural codes. However, this hypothesis has not been critically evaluated in the auditory domain. We assessed sensitivity to acoustic variation within intelligible versus unintelligible speech using functional magnetic resonance imaging and a multivariate pattern analysis. Core auditory regions on the dorsal plane of the superior temporal gyrus exhibited high levels of sensitivity to acoustic features, whereas downstream auditory regions in both anterior superior temporal sulcus and posterior superior temporal sulcus (pSTS) bilaterally showed greater sensitivity to whether speech was intelligible or not and less sensitivity to acoustic variation (acoustic invariance). Acoustic invariance was most pronounced in more pSTS regions of both hemispheres, which we argue support phonological level representations. This finding provides direct evidence for a hierarchical organization of human auditory cortex and clarifies the cortical pathways supporting the processing of intelligible speech.
机译:从功能成像观察可以推断出人类听觉皮层的分层组织,即核心区域对简单的刺激(音调)做出反应,而下游区域对更复杂的刺激(带通噪声,言语)做出选择性反应。假设核心区域编码低级特征,这些特征在听觉系统中以较高的级别组合在一起,以产生更多的抽象神经代码。但是,该假设尚未在听觉领域进行严格评估。我们使用功能性磁共振成像和多元模式分析评估了可理解语音与难以理解语音对声音变化的敏感性。颞上回背平面上的核心听觉区对声学特征表现出高度的敏感性,而双侧前颞上沟和后颞上沟(pSTS)的下游听觉区对语音是否可理解的敏感性更高。并且对声学变化(声学不变性)的敏感性较低。声学不变性在两个半球的更多pSTS区域中最为明显,我们认为这支持语音水平的表示。这一发现为人类听觉皮层的分级组织提供了直接证据,并阐明了支持可理解语音处理的皮层通路。

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