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In vivo thickness dynamics measurement of tear film lipid and aqueous layers with optical coherence tomography and maximum-likelihood estimation

机译:在具有光学相干断层扫描和最大似然估计的泪膜脂质和水层的体内厚度动力学测量

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摘要

Dry eye disease (DED) is a common ophthalmic condition that is characterized by tear film instability and leads to ocular surface discomfort and visual disturbance. Advancements in the understanding and management of this condition have been limited by our ability to study the tear film secondary to its thin structure and dynamic nature. Here, we report a technique to simultaneously estimate the thickness of both the lipid and aqueous layers of the tear film in vivo using optical coherence tomography and maximum-likelihood estimation. After a blink, the lipid layer was rapidly thickened at an average rate of 10 nm/s over the first 2.5 s before stabilizing, whereas the aqueous layer continued thinning at an average rate of 0.29 mu m/s of the 10 s blink cycle. Further development of this tear film imaging technique may allow for the elucidation of events that trigger tear film instability in DED. (C) 2016 Optical Society of America
机译:干眼症(DED)是一种常见的眼科病症,其特征在于撕裂膜不稳定,导致眼表面不适和视觉扰动。 这种情况的理解和管理的进步受到我们研究中学的薄膜和动态性质的能力的限制。 这里,我们通过光学相干断层扫描和最大似然估计来报告一种技术以同时估计泪膜的脂质和含水层的脂质和含水层的厚度。 在闪烁之后,在稳定之前,在前2.5秒内以10nm / s的平均速率快速增稠,而水层以10 s闪烁循环的平均0.29μm/ s的平均速率延续稀薄。 该撕裂膜成像技术的进一步发展可以允许阐明触发抛光膜不稳定的事件。 (c)2016年光学学会

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