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Neuronal control of fixation and fixational eye movements

机译:神经元控制注视和注视眼球运动

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摘要

Ocular fixation is a dynamic process that is actively controlled by many of the same brain structures involved in the control of eye movements, including the superior colliculus, cerebellum and reticular formation. In this article, we review several aspects of this active control. First, the decision to move the eyes not only depends on target-related signals from the peripheral visual field, but also on signals from the currently fixated target at the fovea, and involves mechanisms that are shared between saccades and smooth pursuit. Second, eye position during fixation is actively controlled and depends on bilateral activity in the superior colliculi and medio-posterior cerebellum; disruption of activity in these circuits causes systematic deviations in eye position during both fixation and smooth pursuit eye movements. Third, the eyes are not completely still during fixation but make continuous miniature movements, including ocular drift and microsaccades, which are controlled by the same neuronal mechanisms that generate larger saccades. Finally, fixational eye movements have large effects on visual perception. Ocular drift transforms the visual input in ways that increase spatial acuity; microsaccades not only improve vision by relocating the fovea but also cause momentary changes in vision analogous to those caused by larger saccades.This article is part of the themed issue ‘Movement suppression: brain mechanisms for stopping and stillness’.
机译:眼内固定是一个动态过程,受控制眼球运动的许多相同大脑结构(包括上丘,小脑和网状结构)主动控制。在本文中,我们回顾了此主动控件的几个方面。首先,移动眼睛的决定不仅取决于周围视野中与目标相关的信号,而且还取决于来自当前固定在中央凹处的目标的信号,并且涉及扫视和平滑追击之间共享的机制。其次,固定期间的眼位受到主动控制,并取决于上丘和中后小脑的双侧活动。这些回路中的活动中断会导致在注视和平稳追逐眼球运动过程中眼球位置发生系统性偏离。第三,眼睛在注视过程中并不会完全静止,而是会进行连续的微型运动,包括眼球漂移和微扫视,这些运动由产生较大扫视的相同神经元机制控制。最后,注视眼的运动对视觉知觉有很大影响。眼漂移以增加空间敏锐度的方式改变视觉输入;微扫视不仅可以通过移开中央凹来改善视力,而且还可以引起类似于大扫视引起的视觉瞬变。本文是主题“运动抑制:大脑停止和静止的机制”的一部分。

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