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眼头协调的生理学与病理学

Physiology and pathology of eye-head coordination.

作者信息

Proudlock Frank Antony, Gottlob Irene

机构信息

Ophthalmology Group, RKCSB, Leicester Royal Infirmary, University Hospitals of Leicester, University of Leicester, Leicester, UK.

出版信息

Prog Retin Eye Res. 2007 Sep;26(5):486-515. doi: 10.1016/j.preteyeres.2007.03.004. Epub 2007 Apr 14.

Abstract

Human head movement control can be considered as part of the oculomotor system since the control of gaze involves coordination of the eyes and head. Humans show a remarkable degree of flexibility in eye-head coordination strategies, nonetheless an individual will often demonstrate stereotypical patterns of eye-head behaviour for a given visual task. This review examines eye-head coordination in laboratory-based visual tasks, such as saccadic gaze shifts and combined eye-head pursuit, and in common tasks in daily life, such as reading. The effect of the aging process on eye-head coordination is then reviewed from infancy through to senescence. Consideration is also given to how pathology can affect eye-head coordination from the lowest through to the highest levels of oculomotor control, comparing conditions as diverse as eye movement restrictions and schizophrenia. Given the adaptability of the eye-head system we postulate that this flexible system is under the control of the frontal cortical regions, which assist in planning, coordinating and executing behaviour. We provide evidence for this based on changes in eye-head coordination dependant on the context and expectation of presented visual stimuli, as well as from changes in eye-head coordination caused by frontal lobe dysfunction.

摘要

由于注视控制涉及眼睛和头部的协调,因此人类头部运动控制可被视为动眼系统的一部分。人类在眼-头协调策略方面表现出显著的灵活性,尽管如此,个体在给定的视觉任务中通常会表现出刻板的眼-头行为模式。本综述考察了基于实验室的视觉任务中的眼-头协调,如扫视注视转移和联合眼-头追踪,以及日常生活中的常见任务,如阅读。然后回顾了从婴儿期到衰老期衰老过程对眼-头协调的影响。还考虑了病理学如何从动眼控制的最低水平到最高水平影响眼-头协调,比较了眼动限制和精神分裂症等不同情况。鉴于眼-头系统的适应性,我们推测这个灵活的系统受额叶皮质区域的控制,额叶皮质区域有助于规划、协调和执行行为。我们基于依赖于所呈现视觉刺激的背景和预期的眼-头协调变化,以及额叶功能障碍引起的眼-头协调变化,为此提供了证据。

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