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首页> 外文期刊>Investigative ophthalmology & visual science >Approach to Dry Eye in Video Display Terminal Workers (Basic Science)
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Approach to Dry Eye in Video Display Terminal Workers (Basic Science)

机译:视频显示终端工人的干眼症方法(基础科学)

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摘要

The use of video display terminals (VDT) and staring at screens of technologic devices, including desktops, laptops, tablets, and smartphones have become ubiquitous in a wide range of age groups because of the rapid advance of network culture-mediated communications. The incidence of dry eye is particularly high in workers that work with VDT. To facilitate an understanding of the mechanisms of VDT-associated dry eye, as well as to develop novel treatment approaches, a VDT worker dry eye model was created. The procedure involved placing rats on a swing in combination with exposure to an evaporative environment. This animal model reveals that the blink frequency was reduced to one-third of the nonswing riding levels, which is similar to the results that have been reported by VDT users. Pathologic analysis of the lacrimal gland in this dry eye model showed that the decrease in tear secretion was accompanied by a decrease in the acinar cell number, and an enlargement of acinar cells was accompanied by filling with an increased volume of secretory vesicles and a loss of intracellular cell structure, suggesting the involvement of lacrimal hypofunction. An interventional study using this dry eye model showed that oral supplementation of some natural ingredients is a possible therapy for relieving symptoms of VDT-associated dry eye. Further investigations for the establishment of VDT use–associated dry eye models that may be used to evaluate ocular discomfort that mimic the condition in humans are needed to understand and modify this type of dry eye.
机译:视频显示终端(VDT)的使用和凝视技术设备的屏幕(包括台式机,笔记本电脑,平板电脑和智能手机)已在许多年龄段无处不在,这是因为网络文化介导的通信迅速发展。在使用VDT的工人中,干眼症的发生率特别高。为了促进对VDT相关干眼机制的理解,并开发新颖的治疗方法,创建了VDT工人干眼模型。该程序包括将大鼠摆在秋千上并暴露于蒸发环境中。这种动物模型显示眨眼频率降低到了非摆动骑行水平的三分之一,这与VDT用户报告的结果相似。在这种干眼模型中,对泪腺的病理分析表明,泪液分泌的减少伴随着腺泡细胞数量的减少,而腺泡细胞的增大则伴随着分泌囊泡体积的增加和组织的损失。胞内细胞结构,提示泪功能低下的参与。使用该干眼模型的一项干预研究表明,口服补充某些天然成分是缓解VDT相关干眼症状的可能疗法。建立与VDT相关的干眼模型的进一步研究可用于评估模拟人类疾病的眼部不适,以了解和修改这种类型的干眼。

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