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Functional brain mapping during free viewing of natural scenes

机译:自由观看自然场景期间的功能性大脑映射

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摘要

Previous imaging studies have used mostly perceptually abstracted, idealized, or static stimuli to show segregation of function in the cerebral cortex. We wanted to learn whether functional segregation is maintained during more natural, complex, and dynamic conditions when many features have to be processed simultaneously, and identify regions whose activity correlates with the perception of specific features. To achieve this, we used functional magnetic resonance imaging (fMRI) to measure brain activity when human observers viewed freely dynamic natural scenes (a movie). The intensity with which they perceived different features (color, faces, language, and human bodies) was assessed psychometrically in separate sessions. In all subjects different features were perceived with a high degree of independence over time. We found that the perception of each feature correlated with activity in separate, specialized areas whose activity also varied independently. We conclude that even in natural conditions, when many features have to be processed simultaneously, functional specialization is preserved. Our method thus opens a new way of brain mapping, which allows the localization of a multitude of brain areas based on a single experiment using uncontrolled, natural stimuli. Furthermore, our results show that the intensity of activity in a specialized area is linearly correlated with the intensity of its perceptual experience. This leads us to suggest that each specialized area is directly responsible for the creation of a feature‐specific conscious percept (a microconsciousness). Hum. Brain Mapp. 21:75–83, 2004. © 2003 Wiley‐Liss, Inc.
机译:以前的影像学研究大多使用可感知的抽象,理想化或静态刺激来显示大脑皮质的功能分离。我们想了解在必须同时处理许多特征的情况下,是否在更自然,复杂和动态的条件下保持功能隔离,并确定其活动与特定特征的感知有关的区域。为此,我们使用功能磁共振成像(fMRI)来测量人类观察者自由观看动态自然场景(电影)时的大脑活动。他们在单独的会议上通过心理学方法评估了他们感知不同特征(颜色,面部,语言和人体)的强度。在所有受试者中,不同的特征随着时间的流逝具有高度的独立性。我们发现,每个特征的感知都与活动在各自独立的不同专业领域中的活动相关。我们得出的结论是,即使在自然条件下,当必须同时处理许多功能时,仍保留了功能专业化。因此,我们的方法开辟了一种新的大脑映射方式,该方法允许基于单个实验使用不受控制的自然刺激来定位多个大脑区域。此外,我们的结果表明,在一个专门区域内的活动强度与其感知体验的强度呈线性关系。这导致我们建议每个专业领域直接负责创建特定于功能的意识感知(微观意识)。哼。脑图21:75–83,2004。©2003 Wiley-Liss,Inc.

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