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Action and object words are differentially anchored in the sensory motor system - A perspective on cognitive embodiment

机译:动作和宾语差异地锚定在感觉运动系统中-认知体现的观点

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Embodied and grounded cognition theories have assumed that the sensorimotor system is causally involved in processing motor-related language content. Although a causal proof on a single-cell basis is ethically not possible today, the present fMRI study provides confirmation of this longstanding speculation, as far as it is possible with recent methods, employing a new computational approach. More specifically, we were looking for common activation of nouns and objects, and actions and verbs, representing the canonical and mirror neuron system, respectively. Using multivariate pattern analysis, a resulting linear classifier indeed successfully generalized from distinguishing actions from objects in pictures to distinguishing the respective verbs from nouns in written words. Further, these action-related pattern responses were detailed by recently introduced predictive pattern decomposition into the constituent activity atoms and their relative contributions. The findings support the concept of canonical neurons and mirror neurons implementing embodied processes with separate roles in distinguishing objects from actions, and nouns from verbs, respectively. This example of neuronal recycling processing algorithms is consistent with a multimodal brain signature of human action and object concepts. Embodied language theory is thus merged with actual neurobiological implementation.
机译:具体的和扎实的认知理论假设感觉运动系统因果关系参与处理运动相关的语言内容。尽管从伦理上讲,目前不可能在单细胞基础上提供因果关系证明,但目前的fMRI研究证实了这种长期存在的推测,并尽可能采用新方法,采用最新方法。更具体地说,我们正在寻找名词和宾语以及动作和动词的共同激活,分别代表规范和镜像神经元系统。使用多元模式分析,所得的线性分类器确实成功地概括了从将图片中的对象与动作区别开来,将文字中的各个动词与名词区别开来。此外,这些作用相关的模式响应通过最近将预测模式分解引入组成活动原子及其相对贡献中得到了详细说明。这些发现支持了规范神经元和镜像神经元的概念,这些神经元实现了体现过程,它们在区分物体和动作以及名词和动词时分别具有不同的作用。这个神经元回收处理算法的示例与人类动作和物体概念的多模式大脑特征一致。因此,将体现语言理论与实际的神经生物学实现融合在一起。

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