Desai Rutvik H, Herter Troy, Riccardi Nicholas, Rorden Chris, Fridriksson Julius
University of South Carolina, United States; Institute for Mind and Brain, United States.
University of South Carolina, United States; Institute for Mind and Brain, United States.
Neuropsychologia. 2015 May;71:217-24. doi: 10.1016/j.neuropsychologia.2015.04.006. Epub 2015 Apr 6.
The relationship between the brain's conceptual or semantic and sensory-motor systems remains controversial. Here, we tested manual and conceptual abilities of 41 chronic stroke patients in order to examine their relationship. Manual abilities were assed through a reaching task using an exoskeleton robot. Semantic abilities were assessed with implicit as well as explicit semantic tasks, for both verbs and nouns. The results show that that the degree of selective impairment for action word processing was predicted by the degree of impairment in reaching performance. Moreover, the implicit semantic measures showed a correlation with a global reaching parameter, while the explicit semantic similarity judgment task predicted performance in action initiation. These results suggest that action concepts are dynamically grounded through motoric simulations, and that more details are simulated for more explicit semantic tasks. This is evidence for a close and causal relationship between sensory-motor and conceptual systems of the brain.
大脑的概念或语义系统与感觉运动系统之间的关系仍存在争议。在此,我们测试了41名慢性中风患者的手动能力和概念能力,以检验它们之间的关系。通过使用外骨骼机器人的伸手任务来评估手动能力。通过针对动词和名词的隐式和显式语义任务来评估语义能力。结果表明,动作词处理的选择性损伤程度可由伸手表现的损伤程度预测。此外,隐式语义测量与整体伸手参数相关,而显式语义相似性判断任务则可预测动作启动的表现。这些结果表明,动作概念是通过运动模拟动态建立的,并且对于更明确的语义任务会模拟更多细节。这证明了大脑的感觉运动系统和概念系统之间存在密切的因果关系。