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人类听觉皮层中的分层和不对称时间敏感性。

Hierarchical and asymmetric temporal sensitivity in human auditory cortices.

作者信息

Boemio Anthony, Fromm Stephen, Braun Allen, Poeppel David

机构信息

Laboratory of Brain and Cognition, National Institute of Mental Health, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Nat Neurosci. 2005 Mar;8(3):389-95. doi: 10.1038/nn1409. Epub 2005 Feb 20.

Abstract

Lateralization of function in auditory cortex has remained a persistent puzzle. Previous studies using signals with differing spectrotemporal characteristics support a model in which the left hemisphere is more sensitive to temporal and the right more sensitive to spectral stimulus attributes. Here we use single-trial sparse-acquisition fMRI and a stimulus with parametrically varying segmental structure affecting primarily temporal properties. We show that both left and right auditory cortices are remarkably sensitive to temporal structure. Crucially, beyond bilateral sensitivity to timing information, we uncover two functionally significant interactions. First, local spectrotemporal signal structure is differentially processed in the superior temporal gyrus. Second, lateralized responses emerge in the higher-order superior temporal sulcus, where more slowly modulated signals preferentially drive the right hemisphere. The data support a model in which sounds are analyzed on two distinct timescales, 25-50 ms and 200-300 ms.

摘要

听觉皮层功能的偏侧化一直是个长期存在的谜题。以往使用具有不同频谱时间特征信号的研究支持一种模型,即左半球对时间更敏感,而右半球对频谱刺激属性更敏感。在这里,我们使用单试次稀疏采集功能磁共振成像以及一种主要影响时间特性的具有参数变化节段结构的刺激。我们表明,左右听觉皮层对时间结构都非常敏感。至关重要的是,除了对时间信息的双侧敏感性之外,我们还发现了两种具有功能意义的相互作用。首先,颞上回对局部频谱时间信号结构进行差异处理。其次,在高阶颞上沟出现偏侧化反应,其中调制更慢的信号优先驱动右半球。这些数据支持一种模型,即声音在两个不同的时间尺度上进行分析,分别为25 - 50毫秒和200 - 300毫秒。

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