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眼球运动:病理生理学、检查及临床意义

Eye movements: pathophysiology, examination and clinical importance.

作者信息

Downey D L, Leigh R J

机构信息

Department of Neurology, Cleveland VA Medical Center, Ohio 44106, USA.

出版信息

J Neurosci Nurs. 1998 Feb;30(1):15-22; quiz 23-4. doi: 10.1097/01376517-199802000-00003.

Abstract

The ocular motor system finds, focuses, fixates and follows objects to ensure optimal vision as we move through our environment. To see clearly, images must be held steady on the retina. If images move across the retina at more than a few degrees per second they appear blurred. Thus, one function of eye movements is to hold images of the world steady on the retina, and this is accomplished by the gaze-holding mechanisms--fixation, vestibular and optokinetic. Visual acuity is best at the fovea, and so a second function of eye movements is to change the line of sight so that the image of an object of interest is brought to and held close to this part of the retina. This second group of eye movements, the gaze-shifting mechanisms, comprise saccades, smooth pursuit and vergence. The net result of gaze-holding and gaze-shifting mechanisms working properly together is clear, binocular vision. Conversely, if these movements are not working together, our view of the world becomes compromised by double-vision, blurred vision or oscillopsia, the sensation that the seen environment is jumping. The anatomic substrate for each functional class of eye movements is now well defined. This means that specific abnormalities on the eye movement examination may provide clues to the underlying pathology, and suggest strategies for treatment of a variety of neurological disorders.

摘要

眼动系统寻找、聚焦、注视并追踪物体,以确保我们在周围环境中移动时能获得最佳视觉。为了看得清楚,图像必须稳定地落在视网膜上。如果图像在视网膜上移动的速度超过每秒几度,它们就会变得模糊。因此,眼球运动的一个功能是将世界的图像稳定在视网膜上,这是通过注视保持机制——注视、前庭和视动来实现的。中央凹处的视力最佳,因此眼球运动的第二个功能是改变视线,以便将感兴趣物体的图像带到视网膜的这一部分并使其靠近该部位。这第二类眼球运动,即视线转移机制,包括扫视、平稳跟踪和辐辏。注视保持和视线转移机制协同正常工作的最终结果是清晰的双眼视觉。相反,如果这些运动不能协同工作,我们对世界的看法就会受到重影、视力模糊或视振荡(即感觉所见环境在跳动)的影响。现在,每一类功能性眼球运动的解剖学基础都已明确。这意味着眼球运动检查中的特定异常可能为潜在病理提供线索,并为各种神经系统疾病的治疗提供策略。

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