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一种包含视网膜滑动神经元特性的海龟视动性眼动模型。

A model for optokinetic eye movements in turtles that incorporates properties of retinal-slip neurons.

作者信息

Rosenberg A F, Ariel M

机构信息

Department of Behavioral Neuroscience, University of Pittsburgh, PA 15213, USA.

出版信息

Vis Neurosci. 1996 Mar-Apr;13(2):375-83. doi: 10.1017/s0952523800007616.

Abstract

The turtle's optokinetic response is described by a simple model that incorporates visual-response properties of neurons in the pretectum and accessory optic system. Using data from neuronal and eye-movement recordings that have been previously published, the model was realized using algebraic-block simulation software. It was found that the optokinetic response, modelled as a simple negative feedback system, was similar to that measured from a behaving animal. Because the responses of retinal-slip detecting neurons corresponded to the nonlinear, closed-loop optokinetic response, it was concluded that the visual signals encoded in these neurons could provide sufficient sensory information to drive the optokinetic reflex. Furthermore, it appears that the low gain of optokinetic eye movements in turtles, which have a negligible velocity storage time constant, may allow stable oculomotor output in spite of neuronal delays in the reflex pathway. This model illustrates how visual neurons in the pretectum and accessory optic system can contribute to visually guided eye movements.

摘要

乌龟的视动反应由一个简单模型描述,该模型纳入了顶盖前区和副视系统中神经元的视觉反应特性。利用先前发表的神经元和眼球运动记录数据,通过代数块模拟软件实现了该模型。结果发现,作为一个简单负反馈系统建模的视动反应与从行为动物身上测得的反应相似。由于视网膜滑动检测神经元的反应与非线性闭环视动反应相对应,因此得出结论,这些神经元中编码的视觉信号可以提供足够的感觉信息来驱动视动反射。此外,尽管反射通路中存在神经元延迟,但速度存储时间常数可忽略不计的乌龟视动眼球运动增益较低,这似乎可能允许产生稳定的动眼输出。该模型说明了顶盖前区和副视系统中的视觉神经元如何有助于视觉引导的眼球运动。

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