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人类运动皮层中对伸臂运动视觉和运动方面的表现。

The representation of visual and motor aspects of reaching movements in the human motor cortex.

机构信息

Neurobiology Department, Life Sciences Institute, Hebrew University, Jerusalem 91904, Israel.

出版信息

J Neurosci. 2011 Aug 24;31(34):12377-84. doi: 10.1523/JNEUROSCI.0824-11.2011.

Abstract

The human primary motor cortex (M1) is robustly activated during visually guided hand movements. M1 multivoxel patterns of functional MRI activation are more correlated during repeated hand movements to the same targets than to greatly differing ones, and therefore potentially contain information about movement direction. It is unclear, however, whether direction specificity is due to the motor command, as implicitly assumed, or to the visual aspects of the task, such as the target location and the direction of the cursor's trajectory. To disambiguate the visual and motor components, different visual-to-motor transformations were applied during an fMRI scan, in which participants made visually guided hand movements in various directions. The first run was the "baseline" (i.e., visual and motor mappings were matched); in the second run ("rotation"), the cursor movement was rotated by 45° with respect to the joystick movement. As expected, positive correlations were seen between the M1 multivoxel patterns evoked by the baseline run and by the rotation run, when the two movements were matched in their movement direction but the visual aspects differed. Importantly, similar correlations were observed when the visual elements were matched but the direction of hand movement differed. This indicates that M1 is sensitive to both motor and visual components of the task. However, repeated observation of the cursor movement without concurrent joystick control did not elicit significant activation in M1 or any correlated patterns of activation. Thus, visual aspects of movement are encoded in M1 only when they are coupled with motor consequences.

摘要

人类初级运动皮层(M1)在视觉引导的手部运动中会被强烈激活。功能磁共振成像(fMRI)激活的 M1 多体素模式在重复进行相同目标的手部运动时比进行差异极大的目标运动时相关性更高,因此可能包含有关运动方向的信息。然而,方向特异性是由于运动指令(如隐含假设)还是由于任务的视觉方面,如目标位置和光标轨迹的方向,尚不清楚。为了区分视觉和运动成分,在 fMRI 扫描期间应用了不同的视觉到运动转换,参与者在各种方向上进行视觉引导的手部运动。第一组为“基线”(即视觉和运动映射匹配);在第二组(“旋转”)中,光标运动相对于操纵杆运动旋转 45°。正如预期的那样,当基线运行和旋转运行的运动方向相匹配但视觉方面不同时,M1 多体素模式的激活之间会出现正相关。重要的是,当视觉元素匹配但手的运动方向不同时,也观察到了相似的相关性。这表明 M1 对任务的运动和视觉成分都很敏感。然而,在没有操纵杆控制的情况下重复观察光标运动不会引起 M1 的显著激活或任何相关的激活模式。因此,只有当运动的视觉方面与运动后果相结合时,M1 才会对其进行编码。

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