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Uncovering the Neuroanatomy of Core Language Systems Using Lesion-Symptom Mapping

机译:使用病变症状映射揭开核心语言系统的神经肿瘤

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Recent studies have integrated noninvasive brain-imaging methods and advanced analysis techniques to study associations between the location of brain damage and cognitive deficits. By applying data-driven analysis methods to large sets of data on language deficits after stroke (aphasia), these studies have identified the cognitive systems that support language processing-phonology, semantics, fluency, and executive functioning-and their neural basis. Phonological processing is supported by dual pathways around the Sylvian fissure, a ventral speech-recognition component and a dorsal speech-production component; fluent sentence-level speech production relies on a more anterior frontal component, and the semantic system relies on a hub in the anterior temporal lobe and frontotemporal white-matter tracts. The executive function system was less consistently localized, possibly because of the kinds of brain damage tested in these studies. This review synthesizes the results of these studies, showing how they converge with contemporary models of primary systems that support perception, action, and conceptual knowledge across domains, and highlights some divergent findings and directions for future research.
机译:最近的研究具有集成的非血液脑成像方法和先进的分析技术,以研究脑损伤位置与认知缺陷之间的关联。通过将数据驱动的分析方法应用于大量数据缺陷数据赤字(失语症),这些研究已经确定了支持语言处理 - 语音学,语义,流畅性和执行功能的认知系统 - 及其神经基础。 Sylvian裂缝周围的双通道,腹侧语音识别组件和背部​​语音制作组件支持语音处理;流利的句子级语音制作依赖于更前的前部组件,语义系统依赖于前颞叶和额定仪的白物质束中的集线器。执行功能系统不太稳定地定位,可能是因为这些研究中测试的脑损伤种类。本综述综合了这些研究的结果,展示了它们如何汇聚在域名上的感知,行动和概念知识的主要系统的当代模型,并突出了一些消退的调查结果和未来研究的指示。

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