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关于颞平面在超音段言语感知中的偏侧化:一项调查行为、结构和功能的研究证据。

On the planum temporale lateralization in suprasegmental speech perception: evidence from a study investigating behavior, structure, and function.

作者信息

Liem Franziskus, Hurschler Martina A, Jäncke Lutz, Meyer Martin

机构信息

Division Neuropsychology, Institute of Psychology, University of Zurich, Switzerland; Research Unit for Neuroplasticity and Learning in the Healthy Aging Brain (HAB LAB), Institute of Psychology, University of Zurich, Switzerland.

出版信息

Hum Brain Mapp. 2014 Apr;35(4):1779-89. doi: 10.1002/hbm.22291. Epub 2013 Apr 30.

Abstract

This study combines functional and structural magnetic resonance imaging to test the "asymmetric sampling in time" (AST) hypothesis, which makes assertions about the symmetrical and asymmetrical representation of speech in the primary and nonprimary auditory cortex. Twenty-three volunteers participated in this parametric clustered-sparse fMRI study. The availability of slowly changing acoustic cues in spoken sentences was systematically reduced over continuous segments with varying lengths (100, 150, 200, 250 ms) by utilizing local time-reversion. As predicted by the hypothesis, functional lateralization in Heschl's gyrus could not be observed. Lateralization in the planum temporale and posterior superior temporal gyrus shifted towards the right hemisphere with decreasing suprasegmental temporal integrity. Cortical thickness of the planum temporale was automatically measured. Participants with an L > R cortical thickness performed better on the in-scanner auditory pattern-matching task. Taken together, these findings support the AST hypothesis and provide substantial novel insight into the division of labor between left and right nonprimary auditory cortex functions during comprehension of spoken utterances. In addition, the present data yield support for a structural-behavioral relationship in the nonprimary auditory cortex.

摘要

本研究结合功能磁共振成像和结构磁共振成像来检验“时间上的不对称采样”(AST)假说,该假说对初级和非初级听觉皮层中语音的对称和不对称表征提出了论断。23名志愿者参与了这项参数化聚类稀疏功能磁共振成像研究。通过利用局部时间反转,在连续的不同长度(100、150、200、250毫秒)的片段中,系统地减少了口语句子中缓慢变化的声学线索的可用性。正如该假说所预测的,未观察到海氏回的功能偏侧化。随着超音段时间完整性的降低,颞平面和颞上回后部的偏侧化向右半球转移。自动测量了颞平面的皮质厚度。皮质厚度L>R的参与者在扫描仪内听觉模式匹配任务上表现更好。综上所述,这些发现支持了AST假说,并为在理解口语时左右非初级听觉皮层功能之间的分工提供了大量新的见解。此外,目前的数据支持非初级听觉皮层中的结构-行为关系。

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