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An active-efficient-coding model of optokinetic nystagmus

机译:视动性眼球震颤的主动有效编码模型

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Optokinetic nystagmus (OKN) is an involuntary eye movement responsible for stabilizing retinal images in the presence of relative motion between an observer and the environment. Fully understanding the development of OKN requires a neurally plausible computational model that accounts for the neural development and the behavior. To date, work in this area has been limited. We propose a neurally plausible framework for the joint development of disparity and motion tuning in the visual cortex and of optokinetic and vergence eye-movement behavior. To our knowledge, this framework is the first developmental model to describe the emergence of OKN in a behaving organism. Unlike past models, which were based on scalar models of overall activity in different neural areas, our framework models the development of the detailed connectivity both from the retinal input to the visual cortex and from the visual cortex to the motor neurons. This framework accounts for the importance of the development of normal vergence control and binocular vision in achieving normal monocular OKN behaviors. Because the model includes behavior, we can simulate the same perturbations as past experiments, such as artificially induced strabismus. The proposed model agrees both qualitatively and quantitatively with a number of findings from the literature on both binocular vision and the optokinetic reflex. Finally, our model makes quantitative predictions about OKN behavior using the same methods used to characterize OKN in the experimental literature.
机译:光动力性眼球震颤(OKN)是一种非自愿的眼球运动,负责在观察者与环境之间存在相对运动的情况下稳定视网膜图像。充分了解OKN的发展需要一个在神经上合理的计算模型,该模型应考虑神经的发育和行为。迄今为止,该领域的工作受到限制。我们为视皮层视差和运动调整以及视动和发散眼动行为的联合发展提出了一个在神经上看似合理的框架。据我们所知,该框架是描述行为生物中OKN出现的第一个开发模型。与过去的模型基于不同神经区域的整体活动的标量模型不同,我们的框架对从视网膜输入到视觉皮层以及从视觉皮层到运动神经元的详细连通性的发展进行建模。该框架说明了在实现正常的单眼OKN行为中正常的散瞳控制和双眼视觉发展的重要性。由于模型包含行为,因此我们可以模拟与过去的实验相同的扰动,例如人工诱发的斜视。所提出的模型在质量和数量上都与文献中有关双眼视觉和视动反射的大量发现相吻合。最后,我们的模型使用与实验文献中表征OKN相同的方法对OKN行为进行了定量预测。

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