运动系统的体位语义启动和预测

Luigi Grisoni, F. Dreyer, F. Pulvermüller
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引用次数: 57

摘要

识别与动作相关的声音和单词激活运动区域,反映了这些符号在动作信息中的语义基础;此外,运动皮层对声音感知和语言理解也有因果影响。然而,经典符号理论的支持者仍然对模态优先系统(如运动皮层)在有意义刺激的语义加工中的作用存在争议。为了弄清运动系统是否携带语义过程,我们研究了动作相关语音和单词之间语义关系的神经生理指标。事件相关电位显示,当出现在身体部位不一致的声音语境中(如脚步声语境中的“吻”),动作相关词产生了显著更大的刺激诱发(类错配负性)和预测性脑反应(准备电位);“踢”在哨子语境中)比在身体部分一致语境中要多,这种模式让人联想到语义启动的神经生理学相关。语义关联效应的皮层产生器定位于传统上与语义记忆相关的区域,包括左额叶下皮层和颞极,而且,至关重要的是,在运动区域,动作的身体部分的一致性音-词关系是由体位激活模式索引的。由于我们的研究结果显示了动作语义启动在运动皮层中的神经生理学表现,它们证明了语义处理在运动系统中,因此在人脑的模式偏好系统中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Somatotopic Semantic Priming and Prediction in the Motor System
The recognition of action-related sounds and words activates motor regions, reflecting the semantic grounding of these symbols in action information; in addition, motor cortex exerts causal influences on sound perception and language comprehension. However, proponents of classic symbolic theories still dispute the role of modality-preferential systems such as the motor cortex in the semantic processing of meaningful stimuli. To clarify whether the motor system carries semantic processes, we investigated neurophysiological indexes of semantic relationships between action-related sounds and words. Event-related potentials revealed that action-related words produced significantly larger stimulus-evoked (Mismatch Negativity-like) and predictive brain responses (Readiness Potentials) when presented in body-part-incongruent sound contexts (e.g., “kiss” in footstep sound context; “kick” in whistle context) than in body-part-congruent contexts, a pattern reminiscent of neurophysiological correlates of semantic priming. Cortical generators of the semantic relatedness effect were localized in areas traditionally associated with semantic memory, including left inferior frontal cortex and temporal pole, and, crucially, in motor areas, where body-part congruency of action sound–word relationships was indexed by a somatotopic pattern of activation. As our results show neurophysiological manifestations of action-semantic priming in the motor cortex, they prove semantic processing in the motor system and thus in a modality-preferential system of the human brain.
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