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完全前庭丧失后视觉垂直定向感知中重力感觉的感觉替代的时程。

Time Course of Sensory Substitution for Gravity Sensing in Visual Vertical Orientation Perception following Complete Vestibular Loss.

机构信息

Center for Neural Science and Tandon School of Engineering, New York University, NY 10003,

Department of Neuroscience, Baylor College of Medicine, Houston, TX 77030.

出版信息

eNeuro. 2020 Jul 13;7(4). doi: 10.1523/ENEURO.0021-20.2020. Print 2020 Jul/Aug.

Abstract

Loss of vestibular function causes severe acute symptoms of dizziness and disorientation, yet the brain can adapt and regain near to normal locomotor and orientation function through sensory substitution. Animal studies quantifying functional recovery have yet been limited to reflexive eye movements. Here, we studied the interplay between vestibular and proprioceptive graviception in macaque monkeys trained in an earth-vertical visual orientation (subjective visual vertical; SVV) task and measured the time course of sensory substitution for gravity perception following complete bilateral vestibular loss (BVL). Graviceptive gain, defined as the ratio of perceived versus actual tilt angle, decreased to 20% immediately following labyrinthectomy, and recovered to nearly prelesion levels with a time constant of approximately three weeks of postsurgery testing. We conclude that proprioception accounts for up to 20% of gravity sensing in normal animals, and is re-weighted to substitute completely perceptual graviception after vestibular loss. We show that these results can be accounted for by an optimal sensory fusion model.

摘要

前庭功能丧失会导致严重的急性头晕和定向障碍,但大脑可以通过感觉替代来适应并恢复近乎正常的运动和定向功能。动物研究中,对功能恢复的量化仅限于反射性眼球运动。在这里,我们研究了在接受过地球垂直视觉定向(主观视觉垂直;SVV)任务训练的猕猴中前庭和本体感受重觉之间的相互作用,并测量了完全双侧前庭丧失(BVL)后重力感知的感觉替代的时间过程。重觉增益定义为感知到的与实际倾斜角度的比值,在迷路切除后立即降至 20%,并在术后测试的大约三周时间常数内恢复到接近术前水平。我们得出结论,本体感觉在正常动物中占重力感知的 20%左右,并且在失去前庭后被重新加权以完全替代感知重觉。我们表明,这些结果可以通过最优感觉融合模型来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d12/7358335/7a1fc787937e/SN-ENUJ200163F007.jpg

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