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首页> 外文期刊>Journal of Ophthalmology >Assessment of Full-Eye Response to Osmotic Stress in Mouse Model In Vivo Using Optical Coherence Tomography
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Assessment of Full-Eye Response to Osmotic Stress in Mouse Model In Vivo Using Optical Coherence Tomography

机译:使用光学相干层析成像技术评估小鼠全眼对渗透压的反应

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NaCl based solutions were applied as osmotic stress agents to alter the hydration state of the mouse eye. Full-eye responses to these osmotic challenges were monitored in vivo using a custom-built optical coherence tomography (OCT) with an extended imaging range of 12.38 mm. Dynamic changes in the mouse eye were quantified based on the OCT images using several parameters, including the central corneal thickness (CCT), the anterior chamber depth (ACD), the crystalline lens thickness (LT), the cornea-retina distance (CRD), the iris curvature (IC), and the lens scattering intensity (LSI). Apparent but reversible changes in the morphology of almost all the ocular components and the light transparency of the lens are exhibited. Particularly, the ocular dehydration induced by the hypertonic challenges resulted in a closing of the iridocorneal angle and an opacification of the lens. Our results indicated that the ocular hydration is an important physiological process which might be correlated with various ocular disorders, such as dry eye, cataract, and angle-closure glaucoma, and would affect the biometry and imaging of the eye. OCT uniquely enables the comprehensive study of the dynamic full-eye responses to the ocular hydration in vivo.
机译:基于NaCl的溶液用作渗透压剂,以改变小鼠眼睛的水合状态。使用定制的光学相干断层扫描(OCT),在扩展的成像范围为12.38 mm的情况下,可以在体内监测对这些渗透挑战的全眼响应。基于OCT图像,使用几个参数(包括中央角膜厚度(CCT),前房深度(ACD),晶状体厚度(LT),角膜-视网膜距离(CRD))基于OCT图像对小鼠眼中的动态变化进行了量化。 ,虹膜曲率(IC)和镜头散射强度(LSI)。几乎所有的眼组件的形态和晶状体的透光性都表现出明显但可逆的变化。特别是,由高渗刺激引起的眼部脱水导致虹膜角膜角的闭合和晶状体的混浊。我们的结果表明,眼部水合作用是重要的生理过程,可能与各种眼部疾病(如干眼症,白内障和闭角型青光眼)相关,并且会影响眼睛的生物特征和成像。 OCT独特地能够全面研究体内全眼对水合作用的动态全眼反应。

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