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Testing Simulation Theory with Cross-Modal Multivariate Classification of fMRI Data

机译:用fMRI数据的跨模态多元分类测试仿真理论

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摘要

The discovery of mirror neurons has suggested a potential neural basis for simulation and common coding theories of action perception, theories which propose that we understand other people's actions because perceiving their actions activates some of our neurons in much the same way as when we perform the actions. We propose testing this model directly in humans with functional magnetic resonance imaging (fMRI) by means of cross-modal classification. Cross-modal classification evaluates whether a classifier that has learned to separate stimuli in the sensory domain can also separate the stimuli in the motor domain. Successful classification provides support for simulation theories because it means that the fMRI signal, and presumably brain activity, is similar when perceiving and performing actions. In this paper we demonstrate the feasibility of the technique by showing that classifiers which have learned to discriminate whether a participant heard a hand or a mouth action, based on the activity patterns in the premotor cortex, can also determine, without additional training, whether the participant executed a hand or mouth action. This provides direct evidence that, while perceiving others' actions, (1) the pattern of activity in premotor voxels with sensory properties is a significant source of information regarding the nature of these actions, and (2) that this information shares a common code with motor execution.
机译:镜像神经元的发现为模拟和动作知觉的通用编码理论提供了潜在的神经基础,这些理论建议我们理解其他人的行为,因为感知他人的行为会像执行动作时一样激活我们的某些神经元。 。我们建议通过交叉模式分类在功能磁共振成像(fMRI)的人体中直接测试该模型。跨模态分类评估已学会在感觉域中分离刺激的分类器是否也可以分离运动域中的刺激。成功的分类为仿真理论提供了支持,因为这意味着在感知和执行动作时,fMRI信号以及可能的大脑活动是相似的。在本文中,我们通过显示能够基于运动前皮层中的活动模式来区分参与者是否听到手或嘴巴动作的分类器,来证明该技术的可行性,而无需进行额外的培训即可确定参与者执行了手或嘴动作。这提供了直接的证据,即,在感知他人的动作时,(1)具有感觉特性的运动前体素的活动模式是有关这些动作的性质的重要信息来源,(2)该信息与运动执行。

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