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一种用于生成空间精确序列扫视的皮质-皮质下模型。

A cortico-subcortical model for generation of spatially accurate sequential saccades.

作者信息

Dominey P F, Arbib M A

机构信息

Department of Computer Science, University of Southern California, Los Angeles 90089-2520.

出版信息

Cereb Cortex. 1992 Mar-Apr;2(2):153-75. doi: 10.1093/cercor/2.2.153.

Abstract

This article provides a systems framework for the analysis of cortical and subcortical interactions in the control of saccadic eye movements, A major thesis of this model is that a topography of saccade direction and amplitude is preserved through multiple projections between brain regions until they are finally transformed into a temporal pattern of activity that drives the eyes to the target. The control of voluntary saccades to visual and remembered targets is modeled in terms of interactions between posterior parietal cortex, frontal eye fields, the basal ganglia (caudate and substantia nigra), superior colliculus, mediodorsal thalamus, and the saccade generator of the brainstem. Interactions include the modulation of eye movement motor error maps by topographic inhibitory projections, dynamic remapping of spatial target representations in saccade motor error maps, and sustained neural activity that embodies spatial memory. Models of these mechanisms implemented in our Neural Simulation Language simulate behavior and neural activity described in the literature, and suggest new experiments.

摘要

本文提供了一个用于分析眼跳运动控制中皮质与皮质下相互作用的系统框架。该模型的一个主要论点是,眼跳方向和幅度的拓扑结构通过脑区之间的多次投射得以保留,直到它们最终转化为驱动眼睛看向目标的时间活动模式。对视觉目标和记忆目标的自主眼跳控制是根据后顶叶皮质、额叶眼区、基底神经节(尾状核和黑质)、上丘、丘脑背内侧核以及脑干眼跳发生器之间的相互作用来建模的。相互作用包括通过拓扑抑制投射对眼动运动误差图的调制、眼跳运动误差图中空间目标表征的动态重映射以及体现空间记忆的持续神经活动。用我们的神经模拟语言实现的这些机制模型模拟了文献中描述的行为和神经活动,并提出了新的实验。

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