水平眼运动模型,第二部分:三阶线性扫视模型

J. Enderle, Wei Zhou
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引用次数: 30

摘要

有五种不同类型的眼球运动:扫视、平滑追求、前庭眼动、光动眼动和收敛眼动。这本书的目的主要集中在水平跃进眼运动系统和平滑追踪系统的数学模型上,而不是视觉信息是如何处理的。扫视是一种快速的眼球运动,通过将目标的图像放置在中央凹上来获取目标。平滑追踪是一种缓慢的眼球运动,它通过保持目标在中央凹上移动来跟踪目标。前庭眼动用于在短暂的头部运动中保持眼睛盯着目标。眼动运动是眼动和慢速运动的结合,在持续的头部旋转过程中保持视网膜上的全视野图像稳定。这些运动中的每一个都是眼球共轭运动,也就是说,两只眼睛在一个共同的神经源的驱动下一起运动。收敛运动是一种非聚集的眼球运动,允许眼睛在目标靠近或远离时跟踪目标。在这本书中,2009年版本的最先进的模型是水平扫视,是三阶和线性的,并由基于生理的时间优化神经网络控制。动眼器和眼动发生器是眼动系统的基本组成部分。扫视的控制由上丘开始,小脑顶状核终止,涉及中脑复杂的神经回路。本书是关于水平眼动模型系列丛书的第二部分。2009线性同态扫视眼动模型和扫视后行为:动态和平滑超调/扫视控制器的神经网络
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Models of Horizontal Eye Movements, Part II: A 3rd Order Linear Saccade Model
There are five different types of eye movements: saccades, smooth pursuit, vestibular ocular eye movements, optokinetic eye movements, and vergence eye movements. The purpose of this book is focused primarily on mathematical models of the horizontal saccadic eye movement system and the smooth pursuit system, rather than on how visual information is processed. A saccade is a fast eye movement used to acquire a target by placing the image of the target on the fovea. Smooth pursuit is a slow eye movement used to track a target as it moves by keeping the target on the fovea. The vestibular ocular movement is used to keep the eyes on a target during brief head movements. The optokinetic eye movement is a combination of saccadic and slow eye movements that keeps a full-field image stable on the retina during sustained head rotation. Each of these movements is a conjugate eye movement, that is, movements of both eyes together driven by a common neural source. A vergence movement is a non-con ugate eye movement allowing the eyes to track targets as they come closer or farther away. In this book, a 2009 version of a state-of-the-art model is presented for horizontal saccades that is 3rd-order and linear, and controlled by a physiologically based time-optimal neural network. The oculomotor plant and saccade generator are the basic elements of the saccadic system. The control of saccades is initiated by the superior colliculus and terminated by the cerebellar fastigial nucleus, and involves a complex neural circuit in the mid brain. This book is the second part of a book series on models of horizontal eye movements. Table of Contents: 2009 Linear Homeomorphic Saccadic Eye Movement Model and Post-Saccade Behavior: Dynamic and Glissadic Overshoot / Neural Network for the Saccade Controller
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