Integration of Vergence, Cyclovergence, and Saccades through Active Efficient Coding

Qingpeng Zhu, J. Triesch, Bertram E. Shi
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引用次数: 3

Abstract

This paper describes a unified computational model for the joint development of early visual representations and the control of three types of eye movements, i.e., vergence, cyclovergence, and saccades. The model is based on the Active Efficient Coding (AEC) framework, an extension of Barlow's efficient coding hypothesis to active perception. AEC describes the joint learning of sensory encoding and behavioral control. The present work relaxes the assumptions made in our previous work by learning vergence, cyclovergence, and saccades all from random initialization. Our results also demonstrate the importance of the interaction between the learning of these eye movements in terms of learning speed and accuracy. Overall, we find that AEC provides a parsimonious framework to account for the simultaneous learning of active vision skills.
通过主动高效编码集成收敛、循环收敛和扫视
本文描述了一个统一的计算模型,用于早期视觉表征的联合发展和三种类型的眼球运动的控制,即收敛,回旋收敛和扫视。该模型基于主动有效编码(AEC)框架,将巴洛的有效编码假说扩展到主动感知。AEC描述了感觉编码和行为控制的联合学习。本工作通过学习随机初始化的收敛、循环收敛和跳变,放宽了我们以前工作中所做的假设。我们的研究结果也证明了学习这些眼动之间的相互作用在学习速度和准确性方面的重要性。总的来说,我们发现AEC提供了一个简约的框架来解释主动视觉技能的同时学习。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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