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小脑信号在进行反应性扫视的前进和后退适应过程中驱动运动调整和视觉感知变化。

Cerebellar signals drive motor adjustments and visual perceptual changes during forward and backward adaptation of reactive saccades.

机构信息

IMPACT Team, Lyon Neuroscience Research Center, INSERM U1028, CNRS UMR 5292, University Claude Bernard Lyon 1, Bron cedex 69676, France.

Institute for Psychology and Otto Creutzfeldt Center for Cognitive and Behavioral Neuroscience, University of Muenster, Münster 48149, Germany.

出版信息

Cereb Cortex. 2022 Sep 4;32(18):3896-3916. doi: 10.1093/cercor/bhab455.

DOI:10.1093/cercor/bhab455
PMID:34979550
Abstract

Saccadic adaptation ($SA$) is a cerebellar-dependent learning of motor commands ($MC$), which aims at preserving saccade accuracy. Since $SA$ alters visual localization during fixation and even more so across saccades, it could also involve changes of target and/or saccade visuospatial representations, the latter ($CDv$) resulting from a motor-to-visual transformation (forward dynamics model) of the corollary discharge of the $MC$. In the present study, we investigated if, in addition to its established role in adaptive adjustment of $MC$, the cerebellum could contribute to the adaptation-associated perceptual changes. Transfer of backward and forward adaptation to spatial perceptual performance (during ocular fixation and trans-saccadically) was assessed in eight cerebellar patients and eight healthy volunteers. In healthy participants, both types of $SA$ altered $MC$ as well as internal representations of the saccade target and of the saccadic eye displacement. In patients, adaptation-related adjustments of $MC$ and adaptation transfer to localization were strongly reduced relative to healthy participants, unraveling abnormal adaptation-related changes of target and $CDv$. Importantly, the estimated changes of $CDv$ were totally abolished following forward session but mainly preserved in backward session, suggesting that an internal model ensuring trans-saccadic localization could be located in the adaptation-related cerebellar networks or in downstream networks, respectively.

摘要

扫视适应(SA)是一种小脑依赖的运动指令(MC)学习,旨在保持扫视的准确性。由于 SA 在注视时甚至在扫视过程中改变了视觉定位,因此它也可能涉及目标和/或扫视视空间表示的变化,后者(CDv)是由 MC 的副放电的运动到视觉的转换(前向动力学模型)产生的。在本研究中,我们研究了小脑是否除了在 MC 的自适应调整中具有既定作用外,还可以有助于适应相关的感知变化。在 8 名小脑患者和 8 名健康志愿者中评估了向后和向前适应对空间感知性能(在眼固视和扫视期间)的转移。在健康参与者中,这两种类型的 SA 都改变了 MC 以及扫视目标和扫视眼位移的内部表示。在患者中,与健康参与者相比,MC 的适应相关调整和适应转移到定位明显减少,揭示了目标和 CDv 的异常适应相关变化。重要的是,在前向会话中,估计的 CDv 变化完全被消除,但在后向会话中主要被保留,这表明确保跨扫视定位的内部模型可以分别位于适应相关的小脑网络或下游网络中。

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