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视觉作为眼球运动奖励:认知对扫视眼动动态控制的贡献。

Vision as oculomotor reward: cognitive contributions to the dynamic control of saccadic eye movements.

作者信息

Wolf Christian, Lappe Markus

机构信息

Institute for Psychology, University of Muenster, Fliednerstrasse 21, 48149 Münster, Germany.

出版信息

Cogn Neurodyn. 2021 Aug;15(4):547-568. doi: 10.1007/s11571-020-09661-y. Epub 2021 Jan 25.

Abstract

Humans and other primates are equipped with a foveated visual system. As a consequence, we reorient our fovea to objects and targets in the visual field that are conspicuous or that we consider relevant or worth looking at. These reorientations are achieved by means of saccadic eye movements. Where we saccade to depends on various low-level factors such as a targets' luminance but also crucially on high-level factors like the expected reward or a targets' relevance for perception and subsequent behavior. Here, we review recent findings how the control of saccadic eye movements is influenced by higher-level cognitive processes. We first describe the pathways by which cognitive contributions can influence the neural oculomotor circuit. Second, we summarize what saccade parameters reveal about cognitive mechanisms, particularly saccade latencies, saccade kinematics and changes in saccade gain. Finally, we review findings on what renders a saccade target valuable, as reflected in oculomotor behavior. We emphasize that foveal vision of the target after the saccade can constitute an internal reward for the visual system and that this is reflected in oculomotor dynamics that serve to quickly and accurately provide detailed foveal vision of relevant targets in the visual field.

摘要

人类和其他灵长类动物都拥有中央凹视觉系统。因此,我们会将中央凹重新定向到视野中显眼的、我们认为相关或值得一看的物体和目标上。这些重新定向是通过眼球的快速跳动来实现的。我们眼球跳动的方向取决于各种低层次因素,如目标的亮度,但也至关重要地取决于高层次因素,如预期奖励或目标与感知及后续行为的相关性。在此,我们回顾了关于快速眼球运动控制如何受到高层次认知过程影响的最新研究结果。我们首先描述认知因素能够影响神经动眼回路的途径。其次,我们总结了眼球跳动参数揭示的认知机制,特别是眼球跳动潜伏期、眼球跳动运动学以及眼球跳动增益的变化。最后,我们回顾了关于使一个眼球跳动目标变得有价值的研究结果,这在动眼行为中有所体现。我们强调,扫视后对目标的中央凹视觉可以构成视觉系统的一种内在奖励,这反映在动眼动力学中,其作用是快速准确地提供视野中相关目标的详细中央凹视觉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f248/8286912/a534a9aeff57/11571_2020_9661_Fig1_HTML.jpg

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