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头部倾斜如何干扰眼手协调:重力在视觉本体感觉、跨模态感觉转换中的作用。

How Tilting the Head Interferes With Eye-Hand Coordination: The Role of Gravity in Visuo-Proprioceptive, Cross-Modal Sensory Transformations.

作者信息

Bernard-Espina Jules, Dal Canto Daniele, Beraneck Mathieu, McIntyre Joseph, Tagliabue Michele

机构信息

Université de Paris, CNRS, Integrative Neuroscience and Cognition Center, Paris, France.

Ikerbasque Science Foundation, Bilbao, Spain.

出版信息

Front Integr Neurosci. 2022 Mar 10;16:788905. doi: 10.3389/fnint.2022.788905. eCollection 2022.

Abstract

To correctly position the hand with respect to the spatial location and orientation of an object to be reached/grasped, visual information about the target and proprioceptive information from the hand must be compared. Since visual and proprioceptive sensory modalities are inherently encoded in a retinal and musculo-skeletal reference frame, respectively, this comparison requires cross-modal sensory transformations. Previous studies have shown that lateral tilts of the head interfere with the visuo-proprioceptive transformations. It is unclear, however, whether this phenomenon is related to the neck flexion or to the head-gravity misalignment. To answer to this question, we performed three virtual reality experiments in which we compared a grasping-like movement with lateral neck flexions executed in an upright seated position and while lying supine. In the main experiment, the task requires cross-modal transformations, because the target information is visually acquired, and the hand is sensed through proprioception only. In the other two control experiments, the task is unimodal, because both target and hand are sensed through one, and the same, sensory channel (vision and proprioception, respectively), and, hence, cross-modal processing is unnecessary. The results show that lateral neck flexions have considerably different effects in the seated and supine posture, but only for the cross-modal task. More precisely, the subjects' response variability and the importance associated to the visual encoding of the information significantly increased when supine. We show that these findings are consistent with the idea that head-gravity misalignment interferes with the visuo-proprioceptive cross-modal processing. Indeed, the principle of statistical optimality in multisensory integration predicts the observed results if the noise associated to the visuo-proprioceptive transformations is assumed to be affected by gravitational signals, and not by neck proprioceptive signals . This finding is also consistent with the observation of otolithic projections in the posterior parietal cortex, which is involved in the visuo-proprioceptive processing. Altogether these findings represent a clear evidence of the theorized central role of gravity in spatial perception. More precisely, otolithic signals would contribute to reciprocally align the reference frames in which the available sensory information can be encoded.

摘要

为了将手相对于要触及/抓握物体的空间位置和方向正确定位,必须比较关于目标的视觉信息和来自手部的本体感觉信息。由于视觉和本体感觉模态分别固有地编码在视网膜和肌肉骨骼参考系中,这种比较需要跨模态感觉转换。先前的研究表明,头部的侧向倾斜会干扰视觉-本体感觉转换。然而,尚不清楚这种现象是与颈部弯曲还是与头部-重力失调有关。为了回答这个问题,我们进行了三项虚拟现实实验,在实验中我们比较了在直立坐姿和仰卧时执行侧向颈部弯曲的类似抓握动作。在主要实验中,任务需要跨模态转换,因为目标信息是通过视觉获取的,而手部仅通过本体感觉来感知。在另外两项对照实验中,任务是单模态的,因为目标和手部都是通过单一且相同的感觉通道(分别是视觉和本体感觉)来感知的,因此不需要跨模态处理。结果表明,侧向颈部弯曲在坐姿和仰卧姿势下有相当不同的影响,但仅针对跨模态任务。更确切地说,当仰卧时,受试者的反应变异性以及与信息视觉编码相关的重要性显著增加。我们表明,这些发现与头部-重力失调会干扰视觉-本体感觉跨模态处理的观点一致。事实上,如果假设与视觉-本体感觉转换相关的噪声受重力信号而非颈部本体感觉信号影响,那么多感官整合中的统计最优性原理就能预测观察到的结果。这一发现也与后顶叶皮层中涉及视觉-本体感觉处理的耳石投射的观察结果一致。总之,这些发现清楚地证明了重力在空间感知中理论化的核心作用。更确切地说,耳石信号将有助于相互对齐可对可用感觉信息进行编码的参考系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b07e/8961421/810704d0e4dd/fnint-16-788905-g001.jpg

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