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腹内侧前额叶皮层损伤对模式和语义类别知识神经表征的差异影响。

Differential Influence of Ventromedial Prefrontal Cortex Lesions on Neural Representations of Schema and Semantic Category Knowledge.

机构信息

Rotman Research Institute, Baycrest Health Sciences, Toronto, Ontario, Canada.

University of Toronto, Ontario, Canada.

出版信息

J Cogn Neurosci. 2021 Aug 1;33(9):1928-1955. doi: 10.1162/jocn_a_01746.

Abstract

Prior knowledge, such as schemas or semantic categories, influences our interpretation of stimulus information. For this to transpire, prior knowledge must first be reinstated and then instantiated by being applied to incoming stimuli. Previous neuropsychological models implicate the ventromedial prefrontal cortex (vmPFC) in mediating these functions for schemas and the anterior/lateral temporal lobes and related structures for categories. vmPFC, however, may also affect processing of semantic category information. Here, the putative differential role of the vmPFC in the reinstatement and instantiation of schemas and semantic categories was examined by probing network-level oscillatory dynamics. Patients with vmPFC damage (n = 11) and healthy controls (n = 13) were instructed to classify words according to a given schema or category, while electroencephalography was recorded. As reinstatement is a preparatory process, we focused on oscillations occurring 500 msec prior to stimulus presentation. As instantiation occurs at stimulus presentation, we focused on oscillations occurring between stimulus presentation and 1000 msec poststimulus. We found that reinstatement was associated with prestimulus, theta and alpha desynchrony between vmPFC and the posterior parietal cortex for schemas, and between lateral temporal lobe and inferotemporal cortex for categories. Damage to the vmPFC influenced both schemas and categories, but patients with damage to the subcallosal vmPFC showed schema-specific deficits. Instantiation showed similar oscillatory patterns in the poststimulus time frame, but in the alpha and beta frequency bands. Taken together, these findings highlight distinct but partially overlapping neural mechanisms implicated in schema- and category-mediated processing.

摘要

先前的知识,如模式或语义类别,会影响我们对刺激信息的解释。为了实现这一点,必须首先恢复先前的知识,然后通过将其应用于传入的刺激来实例化。先前的神经心理学模型表明,腹内侧前额叶皮层(vmPFC)在介导模式的这些功能方面,以及前/外侧颞叶和相关结构在类别方面具有重要作用。然而,vmPFC 也可能影响语义类别信息的处理。在这里,通过探测网络级别的振荡动力学,研究了 vmPFC 在模式和语义类别的恢复和实例化中的假定差异作用。vmPFC 损伤患者(n = 11)和健康对照者(n = 13)被要求根据给定的模式或类别对单词进行分类,同时记录脑电图。由于恢复是一个预备过程,我们专注于在刺激呈现前 500 毫秒发生的振荡。由于实例化发生在刺激呈现时,我们专注于在刺激呈现和刺激后 1000 毫秒之间发生的振荡。我们发现,对于模式,vmPFC 与后顶叶皮层之间的θ和α去同步与恢复有关,而对于类别,外侧颞叶与下颞叶皮层之间的θ和α去同步与恢复有关。vmPFC 的损伤会影响模式和类别,但 subcallosal vmPFC 损伤的患者表现出特定于模式的缺陷。实例化在刺激后时间框架中显示出相似的振荡模式,但在α和β频带中。总之,这些发现突出了在模式和类别介导的处理中涉及的不同但部分重叠的神经机制。

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