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利用高密度漫射光学断层成像技术对自然观看状态下的大脑功能进行映射。

Mapping brain function during naturalistic viewing using high-density diffuse optical tomography.

机构信息

Washington University School of Medicine, Division of Biology and Biomedical Sciences, St. Louis, USA.

Washington University School of Medicine, Mallinckrodt Institute of Radiology, St. Louis, USA.

出版信息

Sci Rep. 2019 Jul 31;9(1):11115. doi: 10.1038/s41598-019-45555-8.

Abstract

Naturalistic stimuli, such as movies, more closely recapitulate "real life" sensory processing and behavioral demands relative to paradigms that rely on highly distilled and repetitive stimulus presentations. The rich complexity inherent in naturalistic stimuli demands an imaging system capable of measuring spatially distributed brain responses, and analysis tools optimized for unmixing responses to concurrently presented features. In this work, the combination of passive movie viewing with high-density diffuse optical tomography (HD-DOT) is developed as a platform for naturalistic brain mapping. We imaged healthy young adults during free viewing of a feature film using HD-DOT and observed reproducible, synchronized cortical responses across a majority of the field-of-view, most prominently in hierarchical cortical areas related to visual and auditory processing, both within and between individuals. In order to more precisely interpret broad patterns of cortical synchronization, we extracted visual and auditory features from the movie stimulus and mapped the cortical responses to the features. The results demonstrate the sensitivity of HD-DOT to evoked responses during naturalistic viewing, and that feature-based decomposition strategies enable functional mapping of naturalistic stimulus processing, including human-generated speech.

摘要

自然刺激,如电影,更能重现“真实生活”的感官处理和行为需求,而不是依赖于高度提炼和重复呈现的刺激范式。自然刺激中固有的丰富复杂性需要一个能够测量空间分布脑反应的成像系统,以及针对同时呈现的特征进行解混反应的分析工具。在这项工作中,将被动观看电影与高密度漫射光学断层扫描(HD-DOT)相结合,作为自然式脑映射的平台。我们使用 HD-DOT 对健康的年轻成年人进行自由观看电影的成像,观察到大多数视野中可重复、同步的皮质反应,在个体内和个体间与视觉和听觉处理相关的分层皮质区域最为明显。为了更精确地解释皮质同步的广泛模式,我们从电影刺激中提取了视觉和听觉特征,并将皮质反应映射到特征上。结果表明,HD-DOT 对自然式观看过程中的诱发反应具有敏感性,并且基于特征的分解策略能够实现自然式刺激处理的功能映射,包括人类生成的语音。

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