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Sensory Processing: The visual encoding of purely proprioceptive intermanual tasks is due to the need of transforming joint signals not to their interhemispheric transfer

机译:感觉处理:纯本体感受性内部任务的视觉编码是由于需要转换关节信号而不是由于其半球间传递

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摘要

To perform goal-oriented hand movement, humans combine multiple sensory signals (e.g., vision and proprioception) that can be encoded in various reference frames (body centered and/or exo-centered). In a previous study (Tagliabue M, McIntyre J. PLoS One 8: e68438, 2013), we showed that, when aligning a hand to a remembered target orientation, the brain encodes both target and response in visual space when the target is sensed by one hand and the response is performed by the other, even though both are sensed only through proprioception. Here we ask whether such visual encoding is due 1) to the necessity of transferring sensory information across the brain hemispheres, or 2) to the necessity, due to the arms’ anatomical mirror symmetry, of transforming the joint signals of one limb into the reference frame of the other. To answer this question, we asked subjects to perform purely proprioceptive tasks in different conditions: Intra, the same arm sensing the target and performing the movement; Inter/Parallel, one arm sensing the target and the other reproducing its orientation; and Inter/Mirror, one arm sensing the target and the other mirroring its orientation. Performance was very similar between Intra and Inter/Mirror (conditions not requiring joint-signal transformations), while both differed from Inter/Parallel. Manipulation of the visual scene in a virtual reality paradigm showed visual encoding of proprioceptive information only in the latter condition. These results suggest that the visual encoding of purely proprioceptive tasks is not due to interhemispheric transfer of the proprioceptive information per se, but to the necessity of transforming joint signals between mirror-symmetric limbs.>NEW & NOTEWORTHY Why does the brain encode goal-oriented, intermanual tasks in a visual space, even in the absence of visual feedback about the target and the hand? We show that the visual encoding is not due to the transfer of proprioceptive signals between brain hemispheres per se, but to the need, due to the mirror symmetry of the two limbs, of transforming joint angle signals of one arm in different joint signals of the other.
机译:为了执行面向目标的手部运动,人类结合了可以在各种参考系(以身体为中心和/或以身体为中心)中编码的多个感觉信号(例如,视觉和本体感觉)。在先前的研究中(Tagliabue M,McIntyre J. PLoS One 8:e68438,2013),我们显示,当将手对准记住的目标方向时,当目标被感知时,大脑会在视觉空间中同时编码目标和响应一只手,另一只手则做出反应,即使两只手只能通过本体感受来感知。在这里,我们问这样的视觉编码是否是由于1)是否需要在大脑半球之间传递感官信息,或2)由于手臂的解剖镜对称性而需要将一个肢体的关节信号转换为参考信号?其他的框架。为了回答这个问题,我们要求受试者在不同条件下执行纯粹的本体感觉任务:内,同一只手臂感知目标并进行运动; Inter / Parallel,一条手臂感应目标,另一只手臂再现其方向; Inter / Mirror(内部/镜像),一只手臂感应目标,另一只手臂镜像其方向。帧内和帧间/镜像之间的性能非常相似(条件不需要联合信号转换),而两者都不同于帧间/并行。在虚拟现实范式中对视觉场景的操作仅在后一种情况下才显示本体感受信息的视觉编码。这些结果表明,纯粹的本体感觉任务的视觉编码不是由于本体感觉信息的半球间传递本身,而是由于在镜像对称的四肢之间转换关节信号的必要性。> NEW&NOTEWORTHY 即使在没有关于目标和手的视觉反馈的情况下,大脑也可以在视觉空间中编码目标导向的人际任务?我们显示视觉编码不是由于本体在大脑半球之间的本体感受信号的转移,而是由于两肢的镜像对称性,需要将一只手臂的关节角度信号转换成大脑的不同关节信号。其他。

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