Department of Vision Sciences, Glasgow Caledonian University, Glasgow, United Kingdom. ali.abusharha.gcu.ac.uk
Cornea. 2013 Apr;32(4):429-34. doi: 10.1097/ICO.0b013e31826671ab.
To investigate the effect of exposure to a low relative humidity (RH) environment on tear film physiology.
A controlled environment chamber was used to create 2 different environmental conditions. Ambient temperature was constant in both conditions (21°C) while the RH was set at 40% at the normal condition and at 5% in the desiccating environment. Tear evaporation, noninvasive tear break-up time, lipid layer thickness (LLT), osmolarity, ocular comfort, tear production, and ocular surface temperature were assessed in normal humidity and over a period of 60 minutes in the dry environment.
There was significant change in tear evaporation rate (P = 0.00), noninvasive tear break-up time (P = 0.00), LLT (P = 0.00), ocular comfort (P = 0.00), and tear production (P = 0.01) after exposure to the desiccating environment. No significant differences were observed between normal and dry environmental conditions in tear osmolarity (P = 0.09) and ocular surface temperature (P = 0.20).
Evaporation rate, tear LLT, ocular comfort, tear stability, and production were adversely affected by low RH. The tear film parameters observed after exposure to a desiccating environment for 1 hour were similar to those of the dry eye patient. Therefore, to avoid tear film disruption and possible ocular surface damage, the environmental conditions of dry locations need to be improved or the tear film should be protected against adverse environmental conditions.
研究暴露于低相对湿度(RH)环境对泪膜生理的影响。
使用控制环境室来创建 2 种不同的环境条件。在两种条件下,环境温度保持恒定(21°C),而 RH 在正常条件下设定为 40%,在干燥环境下设定为 5%。在正常湿度和干燥环境下的 60 分钟期间,评估泪液蒸发、非侵入性泪膜破裂时间、脂质层厚度(LLT)、渗透压、眼部舒适度、泪液分泌和眼表面温度。
暴露于干燥环境后,泪液蒸发率(P = 0.00)、非侵入性泪膜破裂时间(P = 0.00)、LLT(P = 0.00)、眼部舒适度(P = 0.00)和泪液分泌(P = 0.01)均有显著变化。在正常和干燥环境条件下,泪液渗透压(P = 0.09)和眼表面温度(P = 0.20)无显著差异。
低 RH 会使蒸发率、泪膜 LLT、眼部舒适度、泪液稳定性和分泌受到不利影响。暴露于干燥环境 1 小时后观察到的泪膜参数与干眼症患者相似。因此,为避免泪膜破裂和可能的眼表面损伤,需要改善干燥环境的条件或保护泪膜免受不利环境条件的影响。