首页> 外文会议>Conference on Laser Interaction with Tissue and Cells XV; 20040126-20040128; San Jose,CA; US >Laser induced retinal damage thresholds for annular retinal beam profiles
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Laser induced retinal damage thresholds for annular retinal beam profiles

机译:环形视网膜光束轮廓的激光诱导视网膜损伤阈值

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The dependence of retinal damage thresholds on laser spot size, for annular retinal beam profiles, was measured in vivo for 3 μs, 590 nm pulses from a flashlamp-pumped dye laser. Minimum Visible Lesion (MVL) ED_(50) thresholds in rhesus were measured for annular retinal beam profiles covering 5, 10, and 20 mrad of visual field; which correspond to outer beam diameters of roughly 70, 160, and 300 μm, respectively, on the primate retina. Annular beam profiles at the retinal plane were achieved using a telescopic imaging system, with the focal properties of the eye represented as an equivalent thin lens, and all annular beam profiles had a 37 % central obscuration. As a check on experimental data, theoretical MVL-ED_(50) thresholds for annular beam exposures were calculated using the Thompson-Gerstman granular model of laser-induced thermal damage to the retina. Threshold calculations were performed for the three experimental beam diameters and for an intermediate case with an outer beam diameter of 230 μm. Results indicate that the threshold vs. spot size trends, for annular beams, are similar to the trends for top hat beams determined in a previous study; i.e., the threshold dose varies with the retinal image area for larger image sizes. The model correctly predicts the threshold vs. spot size trends seen in the biological data, for both annular and top hat retinal beam profiles.
机译:对于来自闪光灯的泵浦染料激光器的3μs,590 nm脉冲,在体内测量了视网膜损伤阈值对环形视网膜光束轮廓的激光光斑大小的依赖性。测量恒河猴的最小可见病变(MVL)ED_(50)阈值,以观察覆盖5、10和20毫拉德视场的环形视网膜光束轮廓。它们分别对应于灵长类动物视网膜上大约70、160和300μm的外光束直径。视网膜平面上的环形光束轮廓是使用望远镜成像系统获得的,眼睛的聚焦特性表示为等效的薄晶状体,并且所有环形光束轮廓都具有37%的中心遮盖力。作为实验数据的检验,使用Thompson-Gerstman颗粒模型对激光引起的视网膜热损伤进行了计算,得出了环形束曝光的理论MVL-ED_(50)阈值。对于三个实验光束直径以及对于外部光束直径为230μm的中间情况,进行了阈值计算。结果表明,环形光束的阈值与光点尺寸趋势相似,类似于先前研究中确定的高顶礼帽光束的趋势。即,对于较大的图像尺寸,阈值剂量随视网膜图像区域而变化。对于环形和高帽视网膜光束轮廓,该模型可以正确预测生物学数据中的阈值与斑点大小趋势。

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