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涉及两种不同视觉运动处理途径的光刺激反应模型。

Model of optokinetic responses involving two different visual motion processing pathways.

机构信息

Department of Integrative Brain Science, Graduate School of Medicine, Kyoto University, Kyoto, Japan; Department of Pathology of Mental Diseases, National Institute of Mental Health, National Center of Neurology and Psychiatry, Kodaira, Japan.

Human Informatics Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan.

出版信息

Prog Brain Res. 2019;248:329-340. doi: 10.1016/bs.pbr.2019.02.005. Epub 2019 Jun 11.

Abstract

To understand visual motion processing underlying the optokinetic response (OKR), we developed a biomimetic model that reproduces the findings from behavioral experiments. We recorded OKRs induced by drifting gratings with different spatiotemporal frequencies from humans and non-human primates. The characteristics of the initial open-loop responses and the closed-loop eye velocity gains were analyzed using a model developed in this study. The model consists of two pathways with different dynamics. One mediates the transient response (transient pathway) and the other the sustained response (sustained pathway). Each pathway has a different spatiotemporal frequency dependence. Assuming there are different visual sensitivities for these pathways, one tuned to lower spatial and higher temporal frequencies on the retina and the other tuned to stimulus velocity, we successfully reproduced the course of OKRs. Our results suggest that two different neural circuitries/populations contribute to visual processing in the different stages of OKRs.

摘要

为了理解光刺激运动反应(OKR)背后的视觉运动处理,我们开发了一个仿生模型,该模型再现了行为实验的结果。我们记录了来自人类和非人类灵长类动物的不同时空频率漂移光栅诱导的 OKR。使用本研究中开发的模型分析了初始开环响应和闭环眼速增益的特征。该模型由两条具有不同动力学的通路组成。一条通路介导瞬态响应(瞬态通路),另一条通路介导持续响应(持续通路)。每条通路都有不同的时空频率依赖性。假设这些通路具有不同的视觉敏感度,一种在视网膜上对较低的空间和较高的时间频率敏感,另一种对刺激速度敏感,我们成功地再现了 OKR 的过程。我们的结果表明,两种不同的神经回路/群体对 OKR 的不同阶段的视觉处理有贡献。

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