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首页> 外文期刊>Cerebral cortex >Imagined and Executed Actions in the Human Motor System: Testing Neural Similarity Between Execution and Imagery of Actions with a Multivariate Approach
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Imagined and Executed Actions in the Human Motor System: Testing Neural Similarity Between Execution and Imagery of Actions with a Multivariate Approach

机译:在人机系统中的想象和执行的行动:以多变量方法在执行和图像的图像之间测试神经相似性

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摘要

Simulation theory proposes motor imagery (MI) to be a simulation based on representations also used for motor execution (ME). Nonetheless, it is unclear how far they use the same neural code. We use multivariate pattern analysis (MVPA) and representational similarity analysis (RSA) to describe the neural representations associated with MI and ME within the frontoparietal motor network. During functional magnetic resonance imaging scanning, 20 volunteers imagined or executed 3 different types of right-hand actions. Results of MVPA showed that these actions as well as their modality (MI or ME) could be decoded significantly above chance from the spatial patterns of BOLD signals in premotor and posterior parietal cortices. This was also true for cross-modal decoding. Furthermore, representational dissimilarity matrices of frontal and parietal areas showed that MI and ME representations formed separate clusters, but that the representational organization of action types within these clusters was identical. For most ROIs, this pattern of results best fits with a model that assumes a low-to-moderate degree of similarity between the neural patterns associated with MI and ME. Thus, neural representations of MI and ME are neither the same nor totally distinct but exhibit a similar structural geometry with respect to different types of action.
机译:仿真理论提出了基于用于电机执行(ME)的表示的仿真来提出电动机图像(MI)。尽管如此,目前尚不清楚他们使用相同的神经码。我们使用多变量模式分析(MVPA)和代表性相似性分析(RSA)来描述与MI和ME在前迁移电机网络中相关的神经表示。在功能磁共振成像扫描期间,20个志愿者想象或执行了3种不同类型的右手操作。 MVPA的结果表明,这些动作以及它们的模态(MI或ME)可以显着地从热球和后部皮质中的大胆信号的空间模式下显着解码。跨模型解码也是如此。此外,正面和俯仰区域的代表性异化矩阵表明,MI和ME表示形成了单独的集群,但是这些集群内的作用类型的代表组织是相同的。对于大多数ROI,这种结果模式最适合具有假冒与MI和ME相关的神经图案之间的低于中等程度的相似性的模型。因此,MI和ME的神经表示既不相同也不是不同的,而是表现出相对于不同类型的作用的类似结构几何形状。

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