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Is the Motor System Necessary for Processing Action and Abstract Emotion Words? Evidence from Focal Brain Lesions

机译:处理动作和抽象情感词是否需要电机系统?局灶性脑病变的证据

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Neuroimaging and neuropsychological experiments suggest that modality-preferential cortices, including motor- and somatosensory areas, contribute to the semantic processing of action related concrete words. Still, a possible role of sensorimotor areas in processing abstract meaning remains under debate. Recent fMRI studies indicate an involvement of the left sensorimotor cortex in the processing of abstract-emotional words (e.g., “love”) which resembles activation patterns seen for action words. But are the activated areas indeed necessary for processing action-related and abstract words? The current study now investigates word processing in two patients suffering from focal brain lesion in the left frontocentral motor system. A speeded Lexical Decision Task on meticulously matched word groups showed that the recognition of nouns from different semantic categories – related to food, animals, tools, and abstract-emotional concepts – was differentially affected. Whereas patient HS with a lesion in dorsolateral central sensorimotor systems next to the hand area showed a category-specific deficit in recognizing tool words, patient CA suffering from lesion centered in the left supplementary motor area was primarily impaired in abstract-emotional word processing. These results point to a causal role of the motor cortex in the semantic processing of both action-related object concepts and abstract-emotional concepts and therefore suggest that the motor areas previously found active in action-related and abstract word processing can serve a meaning-specific necessary role in word recognition. The category-specific nature of the observed dissociations is difficult to reconcile with the idea that sensorimotor systems are somehow peripheral or ‘epiphenomenal’ to meaning and concept processing. Rather, our results are consistent with the claim that cognition is grounded in action and perception and based on distributed action perception circuits reaching into modality-preferential cortex.
机译:神经影像学和神经心理学实验表明,包括运动和体感区域在内的模态优先皮质有助于动作相关具体词的语义处理。尽管如此,感觉运动区在处理抽象意义中的可能作用仍在争论中。最近的功能磁共振成像研究表明,左感觉运动皮层参与了抽象情感词(例如“爱”)的处理,这种抽象情感词类似于动作词的激活模式。但是,激活区域对于处理与动作相关的抽象单词是否确实必要?现在的当前研究调查了两名患有左额中央运动系统局灶性脑部病变的患者的单词处理过程。对精心匹配的单词组进行的快速词法决策任务表明,与食物,动物,工具和抽象情感概念有关的不同语义类别中名词的识别受到了不同的影响。靠近手部区域的背外侧中央感觉运动系统中有病变的患者HS在识别工具单词时表现出特定类别的缺陷,而以情感中心的左辅助运动区域为中心的病变患者CA主要受到损害。这些结果表明运动皮层在与动作有关的对象概念和抽象情感概念的语义处理中起因果作用,因此表明先前发现在与动作有关的抽象词处理中活跃的运动区域可以起到以下作用:在单词识别中的特定必要作用。所观察到的解离的特定类别性质很难与感觉运动系统在意义和概念处理上处于某种外围或“表观”的观点相吻合。相反,我们的结果与以下观点相一致:认知基于动作和感知,并基于到达模态偏好皮层的分布式动作感知电路。

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