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眼睑与泪液在角膜湿润中的相互作用以及正常人眨眼的动力学

Interactions of eyelids and tears in corneal wetting and the dynamics of the normal human eyeblink.

作者信息

Doane M G

出版信息

Am J Ophthalmol. 1980 Apr;89(4):507-16. doi: 10.1016/0002-9394(80)90058-6.

Abstract

We used a high-speed camera system to study in detail the eyelid motion dynamics of the human eyeblink. Films were made from a hidden location through a one-way mirror. In this manner, normal, unforced blinks were recorded. The descent of the upper eyelid reached its maximum speed at about the time that it crossed the visual axis, generally in the range of 17 to 20 cm/sec, but occasionally reaching a speed of over 40 cm/sec. The motion of the lower eyelid was mostly horizontal, in a nasally directed movement, with a total displacement in the range of 20 to 5 min. A distinction must be made between normal, unforced blinks, and voluntary, forced eyelid motion. In a normal blink, no appreciable upward rotation of the globe is observed. A forced blink or a restraint of motion of the upper eyelid results in a significant demonstration of Bell's movement. The globe moves posteriorly up to 1 to 6 mm as the upper eyelid descends, probably caused by eyelid pressure during the closing phase of the blink.

摘要

我们使用高速摄像系统详细研究了人类眨眼时眼睑的运动动力学。通过单向镜从隐蔽位置拍摄影片。通过这种方式,记录了正常的、自然的眨眼。上眼睑下降在越过视轴时达到最大速度,通常在17至20厘米/秒的范围内,但偶尔可达40厘米/秒以上。下眼睑的运动大多是水平的,朝鼻侧移动,总位移在20至5毫米范围内。必须区分正常的、自然的眨眼和有意识的、强制的眼睑运动。在正常眨眼时,未观察到眼球有明显的向上转动。强制眨眼或上眼睑运动受限会导致贝尔氏运动的显著表现。当上眼睑下降时,眼球向后移动达1至6毫米,这可能是眨眼闭合阶段眼睑压力所致。

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