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与泪膜特征和最大眨眼间隔相关的眼表面冷却速率。

Ocular surface cooling rate associated with tear film characteristics and the maximum interblink period.

机构信息

Clinical Research Center, School of Optometry, University of California, Berkeley, 360 Minor Hall, Berkeley, CA, 94720-2020, USA.

Vision Science Graduate Group, University of California, Berkeley, CA, 94720, USA.

出版信息

Sci Rep. 2021 Jul 22;11(1):15030. doi: 10.1038/s41598-021-94568-9.

Abstract

The surface of the human eye is covered with a protective tear film that refreshes with each blink. Natural blinking occurs involuntarily, but one can also voluntarily blink or refrain from blinking. The maximum time one can refrain from blinking until the onset of discomfort is the maximum interblink period (MIBP). During the interblink period the tear film evaporates and thins from the ocular surface. Infrared thermography provides a non-invasive measure of the ocular surface temperature (OST). Due to evaporation, ocular surface cooling (OSC) generally occurs when the eyes are open and exposed to the environment. The purpose of our study was to investigate the effect of OSC rate on the MIBP, and to investigate the association of the MIBP with tear film characteristics in subjects who do and do not exhibit OSC. The MIBP was measured simultaneously with OST over time. Non-invasive tear breakup time, tear meniscus height, tear lipid layer thickness, and Schirmer I test strip wetted lengths were measured on a day prior to the thermography visit. Subjects were divided into cooling and non-cooling groups based on OSC rate, and demographic and tear film characteristics were tested for inter-group differences. A faster OSC rate was associated with an exponentially shorter duration of the MIBP overall and within the cooling group alone. Faster non-invasive tear breakup time was significantly associated with a shorter MIBP in both groups. These results suggest that tear film evaporation initiates a pathway that results in the onset of ocular discomfort and the stimulus to blinking. The presence of a subset of subjects with no or minimal OSC who nevertheless have a short MIBP indicates that evaporative cooling is not the only mechanism responsible for the onset of ocular discomfort.

摘要

人的眼睛表面覆盖着一层保护性的泪膜,每次眨眼都会更新。自然眨眼是无意识的,但人也可以主动眨眼或忍住不眨眼。人可以忍住不眨眼直到感到不适的最长时间即为最长闭眼间隔期(MIBP)。在闭眼间隔期,泪膜会从眼表面蒸发变薄。红外热成像提供了一种非侵入性的眼表面温度(OST)测量方法。由于蒸发,当眼睛睁开并暴露在环境中时,通常会发生眼表面冷却(OSC)。我们的研究目的是调查 OSC 率对 MIBP 的影响,并调查在表现出 OSC 和未表现出 OSC 的受试者中,泪膜特征与 MIBP 的相关性。MIBP 与 OST 同时随时间进行测量。在进行热成像检查的前一天测量非侵入性泪膜破裂时间、泪膜弯月面高度、泪膜脂质层厚度和 Schirmer I 测试条湿长。根据 OSC 率将受试者分为冷却组和非冷却组,并测试组间的人口统计学和泪膜特征差异。更快的 OSC 率与 MIBP 的总持续时间和仅在冷却组中的持续时间呈指数级缩短相关。在两组中,更快的非侵入性泪膜破裂时间与更短的 MIBP 显著相关。这些结果表明,泪膜蒸发引发了一条通路,导致眼不适和眨眼刺激的发生。尽管存在一部分没有或几乎没有 OSC 的受试者,但他们的 MIBP 很短,这表明蒸发冷却不是引起眼不适的唯一机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a82f/8298610/9005bf73254d/41598_2021_94568_Fig1_HTML.jpg

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