首页> 外文期刊>Acta ophthalmologica >The impact of spot size, spacing, pattern, duration and intensity of burns on the photocoagulation index in a geometric simulation of pan‐retinal laser photocoagulation
【24h】

The impact of spot size, spacing, pattern, duration and intensity of burns on the photocoagulation index in a geometric simulation of pan‐retinal laser photocoagulation

机译:燃烧点尺寸,间距,图案,持续时间和强度对PAN - 视网膜激光光凝的几何模拟中的光凝曲调指数的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Abstract Purpose To evaluate the impact of spot size, spacing, pattern, duration and intensity of burns on the photocoagulation index, using a geometric simulation of pan‐retinal laser photocoagulation. Methods Simulations of full‐scattered pan‐retinal laser photocoagulation were performed on a retinal map, using a geometry‐based method. Simulations consisted of 300‐, 400‐ or 500‐ μ m diameter equidistant spots on the retina with 1.0‐spot width spacing, as well as 400‐ μ m diameter spots on the retina in an equidistant pattern or grid pattern, with 1.0‐, 0.75‐, 0.50‐, 0.25‐ or 0‐spot width spacing. For each simulation, we calculated the ratio of the total photocoagulated retinal area to the whole retina, termed the photocoagulation index. We recalculated the photocoagulation indexes using the expansion ratios of photocoagulated lesions by different duration and intensity of burns from a previous study. Results The photocoagulation indexes of the simulated pan‐retinal laser photocoagulation with 300‐, 400‐ and 500‐ μ m diameter spots were 20.8%, 20.6% and 21.0%, respectively. The photocoagulation indexes of the 1.0‐, 0.75‐, 0.50‐, 0.25‐ and 0‐spot width spacing configurations of pan‐retinal laser photocoagulation burns for the equidistant pattern were 20.6%, 27.1%, 36.7%, 53.2% and 83.1%, respectively, and those for the grid pattern were 17.9%, 23.5%, 31.8%, 46.1% and 72.0%, respectively. The photocoagulation indexes obtained with the equidistant and grid patterns changed (range, 1.7–84.7% and 1.5–73.4%, respectively) when the duration or burn intensity of the pan‐retinal photocoagulation was changed. Conclusion This geometric simulation method could evaluate the impact of a range of conditions on the photocoagulation index.
机译:摘要目的,用于评估燃烧点尺寸,间距,图案,持续时间和强度对光电凝固指数的影响,采用泛视网膜激光光凝的几何模拟。方法使用基于几何的方法对视网膜图进行全散射泛视激光光凝的模拟。视网膜上的300-,400或500μm直径等距斑点组成,具有1.0-点宽度间距,以及等距图案或网格图案的视网膜上的400μm直径点,具有1.0-, 0.75-,0.50-,0.25-或0点宽度间距。对于每种模拟,我们计算了总光凝视网膜区域与整个视网膜的比率,称为光凝块指数。我们通过从先前研究的不同持续时间和强度使用光凝血病变的膨胀比来重新计算光凝曲调指标。结果分别具有300-,400-和500μm,直径为300-,400-和500μm,直径斑点的模拟泛视网膜激光光凝的光凝曲目分别为20.8%,20.6%和21.0%。泛骨激光光凝燃烧的1.0-,0.75-,0.50-,0.25-和0点宽度间距配置的光凝块指数为等距为间隔图案的燃烧为20.6%,27.1%,36.7%,53.2%和83.1%,分别为网格图案分别为17.9%,23.5%,31.8%,46.1%和72.0%。当泛视网膜光凝的持续时间或烧伤强度发生变化时,用等距和网格图案获得的光凝块指数分别变为(分别为1.7-84.7%和1.5-73.4%)。结论这种几何模拟方法可以评估一系列条件对光凝剂指数的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号