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Finite element model of thermal processes in retinal photocoagulation

机译:视网膜光凝热过程的有限元模型

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Short duration (< 20 ms) pulses are desirable in patterned scanning laser photocoagulation to confine thermal damage to the photoreceptor layer, decrease overall treatment time and reduce pain. However, short exposures have a smaller therapeutic window (defined as the ratio of rupture threshold power to that of light coagulation). We have constructed a finite-element computational model of retinal photocoagulation to predict spatial damage and improve the therapeutic window. Model parameters were inferred from experimentally measured absorption characteristics of ocular tissues, as well as the thresholds of vaporization, coagulation, and retinal pigment epithelial (RPE) damage. Calculated lesion diameters showed good agreement with histological measurements over a wide range of pulse durations and powers.
机译:在图案化扫描激光光凝中需要较短的持续时间(<20 ms)脉冲,以将热损伤限制在感光层上,减少总体治疗时间并减轻疼痛。但是,短时曝光具有较小的治疗窗口(定义为破裂阈值功率与光凝功率的比值)。我们已经建立了视网膜光凝的有限元计算模型,以预测空间损伤并改善治疗范围。根据实验测量的眼组织吸收特性以及汽化,凝血和视网膜色素上皮(RPE)损伤的阈值推断模型参数。计算出的病灶直径在很宽的脉冲持续时间和功率范围内与组织学测量结果显示出良好的一致性。

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