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颞上沟的功能和结构不对称性。

The functional and structural asymmetries of the superior temporal sulcus.

作者信息

Specht Karsten, Wigglesworth Philip

机构信息

Department of Biological and Medical Psychology, University of Bergen, Norway.

Department of Education, UiT/The Arctic University of Norway, Tromsø, Norway.

出版信息

Scand J Psychol. 2018 Feb;59(1):74-82. doi: 10.1111/sjop.12410.

Abstract

The superior temporal sulcus (STS) is an anatomical structure that increasingly interests researchers. This structure appears to receive multisensory input and is involved in several perceptual and cognitive core functions, such as speech perception, audiovisual integration, (biological) motion processing and theory of mind capacities. In addition, the superior temporal sulcus is not only one of the longest sulci of the brain, but it also shows marked functional and structural asymmetries, some of which have only been found in humans. To explore the functional-structural relationships of these asymmetries in more detail, this study combines functional and structural magnetic resonance imaging. Using a speech perception task, an audiovisual integration task, and a theory of mind task, this study again demonstrated an involvement of the STS in these processes, with an expected strong leftward asymmetry for the speech perception task. Furthermore, this study confirmed the earlier described, human-specific asymmetries, namely that the left STS is longer than the right STS and that the right STS is deeper than the left STS. However, this study did not find any relationship between these structural asymmetries and the detected brain activations or their functional asymmetries. This can, on the other hand, give further support to the notion that the structural asymmetry of the STS is not directly related to the functional asymmetry of the speech perception and the language system as a whole, but that it may have other causes and functions.

摘要

颞上沟(STS)是一个越来越引起研究人员兴趣的解剖结构。该结构似乎接收多感官输入,并参与多种感知和认知核心功能,如语音感知、视听整合、(生物)运动处理和心理理论能力。此外,颞上沟不仅是大脑中最长的脑沟之一,而且还表现出明显的功能和结构不对称性,其中一些仅在人类中发现。为了更详细地探索这些不对称性的功能-结构关系,本研究结合了功能磁共振成像和结构磁共振成像。通过语音感知任务、视听整合任务和心理理论任务,本研究再次证明了颞上沟参与了这些过程,语音感知任务预期存在强烈的左向不对称性。此外,本研究证实了先前描述的人类特有的不对称性,即左侧颞上沟比右侧颞上沟长,右侧颞上沟比左侧颞上沟深。然而,本研究未发现这些结构不对称性与检测到的脑激活或其功能不对称性之间存在任何关系。另一方面,这可以进一步支持以下观点:颞上沟的结构不对称性与语音感知以及整个语言系统的功能不对称性没有直接关系,但它可能有其他原因和功能。

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