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自我运动感知过程中的跨模态可塑性。

Cross-Modal Plasticity during Self-Motion Perception.

作者信息

Lin Rushi, Zeng Fu, Wang Qingjun, Chen Aihua

机构信息

Key Laboratory of Brain Functional Genomics (Ministry of Education), East China Normal University, 3663 Zhongshan Road N., Shanghai 200062, China.

NYU-ECNU Institute of Brain and Cognitive Science, New York University Shanghai, Shanghai 200122, China.

出版信息

Brain Sci. 2023 Oct 24;13(11):1504. doi: 10.3390/brainsci13111504.

Abstract

To maintain stable and coherent perception in an ever-changing environment, the brain needs to continuously and dynamically calibrate information from multiple sensory sources, using sensory and non-sensory information in a flexible manner. Here, we review how the vestibular and visual signals are recalibrated during self-motion perception. We illustrate two different types of recalibration: one long-term cross-modal (visual-vestibular) recalibration concerning how multisensory cues recalibrate over time in response to a constant cue discrepancy, and one rapid-term cross-modal (visual-vestibular) recalibration concerning how recent prior stimuli and choices differentially affect subsequent self-motion decisions. In addition, we highlight the neural substrates of long-term visual-vestibular recalibration, with profound differences observed in neuronal recalibration across multisensory cortical areas. We suggest that multisensory recalibration is a complex process in the brain, is modulated by many factors, and requires the coordination of many distinct cortical areas. We hope this review will shed some light on research into the neural circuits of visual-vestibular recalibration and help develop a more generalized theory for cross-modal plasticity.

摘要

为了在不断变化的环境中保持稳定和连贯的感知,大脑需要持续且动态地校准来自多个感官源的信息,以灵活的方式利用感官和非感官信息。在此,我们回顾了在自我运动感知过程中前庭和视觉信号是如何重新校准的。我们阐述了两种不同类型的重新校准:一种是长期跨模态(视觉 - 前庭)重新校准,涉及多感官线索如何随着时间的推移,针对恒定的线索差异进行重新校准;另一种是快速跨模态(视觉 - 前庭)重新校准,涉及近期先前的刺激和选择如何不同地影响后续的自我运动决策。此外,我们强调了长期视觉 - 前庭重新校准的神经基础,在多感官皮层区域的神经元重新校准中观察到了显著差异。我们认为多感官重新校准是大脑中的一个复杂过程,受到多种因素的调节,并且需要许多不同皮层区域的协调。我们希望这篇综述能够为视觉 - 前庭重新校准的神经回路研究提供一些启示,并有助于发展出一个更具普遍性的跨模态可塑性理论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4798/10669852/33ff150741ab/brainsci-13-01504-g001.jpg

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