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首页> 外文期刊>Journal of Neurophysiology >Control of the strength of visual-motor transmission as the mechanism of rapid adaptation of priors for Bayesian inference in smooth pursuit eye movements
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Control of the strength of visual-motor transmission as the mechanism of rapid adaptation of priors for Bayesian inference in smooth pursuit eye movements

机译:控制视觉电动机变速器的强度作为贝叶斯推理的快速适应在平稳追踪眼球运动中的力量

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摘要

Bayesian inference provides a cogent account of how the brain combines sensory information with "priors" based on past experience to guide many behaviors, including smooth pursuit eye movements. We now demonstrate very rapid adaptation of the pursuit system's priors for target direction and speed. We go on to leverage that adaptation to outline possible neural mechanisms that could cause pursuit to show features consistent with Bayesian inference. Adaptation of the prior causes changes in the eye speed and direction at the initiation of pursuit. The adaptation appears after a single trial and accumulates over repeated exposure to a given history of target speeds and directions. The influence of the priors depends on the reliability of visual motion signals: priors are more effective against the visual motion signals provided by low-contrast vs. high-contrast targets. Adaptation of the direction prior generalizes to eye speed and vice versa, suggesting that both priors could be controlled by a single neural mechanism. We conclude that the pursuit system can learn the statistics of visual motion rapidly and use those statistics to guide future behavior. Furthermore, a model that adjusts the gain of visual-motor transmission predicts the effects of recent experience on pursuit direction and speed, as well as the specifics of the generalization between the priors for speed and direction. We suggest that Bayesian inference in pursuit behavior is implemented by distinctly non-Bayesian internal mechanisms that use the smooth eye movement region of the frontal eye fields to control of the gain of visual-motor transmission.
机译:贝叶斯推理提供了一种基于过去的经验来指导许多行为的“女巫”如何将大脑与“前锋”结合的“女巫”的令人信服的叙述。我们现在表现出对追踪系统的前锋的目标方向和速度非常快速。我们继续利用这种适应概述可能导致追求与贝叶斯推理一致的功能的可能性的神经机制。对先前的改编导致追求启动时眼速和方向的变化。自适应出现在单一试验后,并积累在给定的目标速度和方向的给定历史上。前沿的影响取决于视觉运动信号的可靠性:前提者对由低对比度与高对比度目标提供的视觉运动信号更有效。改变先前推广到眼睛速度的方向,反之亦然,表明两个前沿可以通过单一的神经机制来控制。我们得出结论,追求系统可以快速地学习视觉运动的统计数据,并使用这些统计数据来引导未来的行为。此外,调整视觉电动机变速器增益的模型预测了最近追求方向和速度的体验的影响,以及提高到速度和方向的前沿之间的概括的细节。我们建议追求行为的贝叶斯推断是由非贝叶斯内部机制实现的,该内部机制使用额头视野的光滑眼球运动区域来控制视觉电动机变速器的增益。

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