动作过程中视觉与本体感觉的注意调节

Jakub Limanowski, Karl J. Friston
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引用次数: 37

摘要

为了有效地控制我们的行为,我们的大脑基于视觉和本体感觉线索的组合来代表我们的身体,并根据每种形态在给定环境中的可靠性(不可靠性)和精确度进行加权。然而,在其他模式下的知觉实验表明,分配给感觉线索的权重也由注意力“自上而下”调节。在这里,我们询问在动作过程中,注意力是否同样可以调节关于身体位置的视觉和本体感觉信息的权重(即精度)。参与者通过数据手套控制虚拟手(VH),将虚拟手(VH)或他们(看不见的)真手(RH)的运动与目标相匹配,从而采用“视觉”或“本体感受”注意力集,在不同水平的视觉-本体感受一致性和可见性下。功能性磁共振成像(fMRI)显示,在VH任务期间,多感觉上顶叶(SPL)的激活增加,而在RH任务期间,第二体感皮层(S2)的激活增加。动态因果模型(DCM)表明,这些活动变化是初级视觉皮层(V1)和S2的选择性直径增益调制的结果。这些结果表明,内源性注意可以平衡视觉和本体感觉大脑区域的增益,从而将它们对代表身体的多感觉区域的影响置于环境中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Attentional Modulation of Vision Versus Proprioception During Action
Abstract To control our actions efficiently, our brain represents our body based on a combination of visual and proprioceptive cues, weighted according to how (un)reliable—how precise—each respective modality is in a given context. However, perceptual experiments in other modalities suggest that the weights assigned to sensory cues are also modulated “top-down” by attention. Here, we asked whether during action, attention can likewise modulate the weights (i.e., precision) assigned to visual versus proprioceptive information about body position. Participants controlled a virtual hand (VH) via a data glove, matching either the VH or their (unseen) real hand (RH) movements to a target, and thus adopting a ``visual'' or ``proprioceptive'' attentional set, under varying levels of visuo-proprioceptive congruence and visibility. Functional magnetic resonance imaging (fMRI) revealed increased activation of the multisensory superior parietal lobe (SPL) during the VH task and increased activation of the secondary somatosensory cortex (S2) during the RH task. Dynamic causal modeling (DCM) showed that these activity changes were the result of selective, diametrical gain modulations in the primary visual cortex (V1) and the S2. These results suggest that endogenous attention can balance the gain of visual versus proprioceptive brain areas, thus contextualizing their influence on multisensory areas representing the body for action.
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