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Higher Risk of Light-Induced Retinal Damage Due to Increase of Intraocular Irradiance by Endoillumination

机译:由于内皮内的眼内辐照程序增加,光致视网膜损伤的风险较高

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摘要

Abstract Introduction All applied illumination systems are validated according to a standard that measures in an experimental setup the direct radiation intensity on a surface in an aqueous solution, not involving an eyeball. Due to various factors, multiple intraocular light-tissue interactions could occur and lead to retinal irradiation intensities that are higher than the irradiation caused by direct illumination. The aim of this work is to investigate the hypothesis that intraocular and technical reference irradiance is different. Methods Using an illumination system and a calibrated optical fiber, the irradiance in porcine eyes was measured at the posterior pole (macula) and compared with reference measurements. We compared two endoilluminators (spotlight and wide-angle) at a total of nine porcine eyes with a brown iris and five porcine eyes with a blue iris. Results The intraocular irradiance was always significantly higher compared to reference measurements (p < 0.001). Between eyes with a blue or brown iris, no significant difference was observed. Conclusion A significantly higher irradiance could be measured compared to a reference measurement with the same illumination setup. The intraocular illumination increased between 30 and 60%, dependent on the distance of the distal end of the light fiber (4–12-mm distance to the retina). This leads to the assumption that the so far allowed “safe” exposure times for illumination systems are overestimated and the potential hazard to the retina is higher.
机译:摘要引言所有应用的照明系统根据标准验证,该标准验证了在实验设置中的措施的直接辐射强度在水溶液中的表面上,不涉及眼球。由于各种因素,可能发生多种眼内光 - 组织相互作用并导致视网膜照射强度,高于直接照明引起的照射。这项工作的目的是研究人工内和技术参考辐照规定不同的假设。使用照明系统和校准光纤的方法,在后极(MACULA)上测量猪眼中的辐照度,并与参考测量进行比较。我们将两种内膜(聚光灯和广角)与棕色虹膜和蓝色虹膜的棕色虹膜和五只猪眼睛相比。结果与参考测量相比,眼内辐照度始终显着更高(P <0.001)。在蓝色或棕色虹膜的眼睛之间,没有观察到显着差异。结论与具有相同照明设置的参考测量相比,可以测量显着更高的辐照度。眼内照明增加了30至60%,取决于光纤远端的距离(4-12mm到视网膜的距离)。这导致假设到目前为止允许的照明系统的“安全”暴露时间高估,并且对视网膜的潜在危害更高。

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