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动作规划调节人类额顶叶和枕叶皮层中物体特征的表示。

Action planning modulates the representation of object features in human fronto-parietal and occipital cortex.

机构信息

CIMeC-Center for Mind/Brain Sciences, University of Trento, Trento, Italy.

Center for Vision Research, York University, Toronto, Ontario, Canada.

出版信息

Eur J Neurosci. 2022 Sep;56(6):4803-4818. doi: 10.1111/ejn.15776. Epub 2022 Jul 25.

Abstract

The visual cortex has been extensively studied to investigate its role in object recognition but to a lesser degree to determine how action planning influences the representation of objects' features. We used functional MRI and pattern classification methods to determine if during action planning, object features (orientation and location) could be decoded in an action-dependent way. Sixteen human participants used their right dominant hand to perform movements (Align or Open reach) towards one of two 3D-real oriented objects that were simultaneously presented and placed on either side of a fixation cross. While both movements required aiming towards target location, Align but not Open reach movements required participants to precisely adjust hand orientation. Therefore, we hypothesized that if the representation of object features is modulated by the upcoming action, pre-movement activity pattern would allow more accurate dissociation between object features in Align than Open reach tasks. We found such dissociation in the anterior and posterior parietal cortex, as well as in the dorsal premotor cortex, suggesting that visuomotor processing is modulated by the upcoming task. The early visual cortex showed significant decoding accuracy for the dissociation between object features in the Align but not Open reach task. However, there was no significant difference between the decoding accuracy in the two tasks. These results demonstrate that movement-specific preparatory signals modulate object representation in the frontal and parietal cortex, and to a lesser extent in the early visual cortex, likely through feedback functional connections.

摘要

我们使用功能磁共振成像和模式分类方法来确定在动作规划期间,物体的特征(方向和位置)是否可以以动作依赖的方式进行解码。十六名人类参与者使用他们的右手主导手执行动作(对齐或打开伸手),以朝向同时呈现并放置在固定十字线两侧的两个 3D 真实定向物体之一。虽然这两个动作都需要指向目标位置,但只有对齐而不是打开伸手动作要求参与者精确调整手的方向。因此,我们假设如果物体特征的表示受到即将到来的动作的调制,那么运动前的活动模式将允许在对齐任务中比在打开伸手任务中更准确地分离物体特征。我们在前顶叶皮层以及背侧运动前皮层中发现了这种分离,这表明运动加工受到即将到来的任务的调制。早期视觉皮层在对齐任务中对物体特征的分离表现出显著的解码准确性,但在打开伸手任务中则没有显著差异。这些结果表明,运动特异性预备信号调节额叶和顶叶皮层中的物体表示,在早期视觉皮层中则调节程度较小,可能通过反馈功能连接。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cce/9545676/e9a3cd7fc7e2/EJN-56-4803-g004.jpg

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