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分离性眼球运动的神经基础。

Neural basis of disjunctive eye movements.

作者信息

King W M, Zhou Wu

机构信息

Department of Neurology, University of Mississippi Medical Center, Jackson, Mississippi 39216-4505, USA.

出版信息

Ann N Y Acad Sci. 2002 Apr;956:273-83. doi: 10.1111/j.1749-6632.2002.tb02826.x.

Abstract

New evidence has challenged a widely accepted interpretation of Hering's law of equal innervation, which states that disjunctive saccades are produced by the linear addition of conjugate and vergence innervation commands produced by independent oculomotor subsystems. We hypothesize, instead, that saccades are produced by a monocular premotor control network. A model, based on this hypothesis and consistent with known brain-stem anatomy, simulates realistic disjunctive saccades including initial and late slow vergence movements.

摘要

新证据对赫林等神经支配定律的一种被广泛接受的解释提出了挑战,该定律指出,分离性扫视是由独立眼球运动子系统产生的共轭和聚散神经支配指令的线性相加产生的。相反,我们假设扫视是由单眼运动前控制网络产生的。基于这一假设并与已知脑干解剖结构一致的一个模型,模拟了包括初始和晚期缓慢聚散运动在内的逼真的分离性扫视。

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