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Transscleral infrared laser for retinal ablation without retinal visualization in an experimental model.

机译:在实验模型中,经巩膜红外激光无需视网膜可视化即可进行视网膜消融。

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PURPOSE: To investigate whether transscleral diode laser can create retinal photocoagulation reliably without creating retinal holes under conditions simulating opaque media. METHODS: In New Zealand pigmented rabbits, optimal infrared diode laser power settings were determined, and transscleral retinal photocoagulation was then applied 4 mm and 6 mm from the limbus without retinal visualization. Transscleral testing was done using retina and cyclophotocoagulation probes placed directly on the sclera, on conjunctiva, and on silicone scleral buckles. RESULTS: A retina probe placed on the sclera achieved moderate retinal photocoagulation intensity in 75% of spots 4 mm from the limbus and in 50% of spots 6 mm from the limbus. Retinal holes were only formed when using the transscleral cyclophotocoagulation (TSCPC) probe. An association between burn intensity and the presence of conjunctiva was seen for the TSCPC probe (P = 0.0001) but not for the retina probe (P = 0.125). Photocoagulation spots did not exceed moderate intensity through any of the silicone scleral buckles tested. CONCLUSIONS: Transscleral infrared photocoagulation applied without retinal visualization did not cause retinal hole formation with a retina probe placed directly on conjunctiva, sclera, or scleral buckle material. A TSCPC probe created retinal holes when placed directly on sclera. A decrease in power was required for all treatments closer to the limbus.
机译:目的:研究经巩膜二极管激光能否在模拟不透明介质的条件下可靠地产生视网膜光凝而不产生视网膜孔。方法:在新西兰有色兔子中,确定最佳的红外二极管激光功率设置,然后在距视网膜缘4 mm和6 mm处进行巩膜视网膜光凝,而无需视网膜可视化。使用直接放置在巩膜,结膜和硅胶巩膜扣上的视网膜和环光凝结探针进行跨巩膜测试。结果:放置在巩膜上的视网膜探针在距角膜缘4 mm的75%点和距角膜缘6 mm的50%斑点中实现了中等的视网膜光凝强度。仅当使用巩膜环光凝(TSCPC)探针时才形成视网膜孔。对于TSCPC探头,灼伤强度与结膜的存在之间存在关联(P = 0.0001),而对于视网膜探头则没有(P = 0.125)。通过任何测试的硅胶巩膜带扣,光凝点均未超过中等强度。结论:未经视网膜可视化的经巩膜红外光凝术未将视网膜探针直接放置在结膜,巩膜或巩膜扣材料上引起视网膜孔的形成。当直接放置在巩膜上时,TSCPC探针会产生视网膜孔。所有靠近角膜缘的治疗均需要降低功率。

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