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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Bio-heat transfer simulation of retinal laser irradiation
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Bio-heat transfer simulation of retinal laser irradiation

机译:视网膜激光辐照的生物传热模拟

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Retinopathy is a surgical process in which maladies of the human eye are treated by laser irradiation. A two-dimensional numerical model of the human eye geometry has been developed to investigate transient thermal effects due to laser radiation. In particular, the influence of choroidal pigmentation and that of choroidal blood convection-parameterized as a function of choroidal blood perfusion-are investigated in detail. The Pennes bio-heat transfer equation is invoked as the governing equation, and finite volume formulation is employed in the numerical method. For a 500μm diameter spot size, laser power of 0.2 W, and 100% absorption of laser radiation in the retinal pigmented epithelium (RPE) region, the peak RPE temperature is observed to be 103 ℃ at 100 ms of the transient simulation of the laser surgical period. Because of the participation of pigmented layer of choroid in laser absorption, peak temperature is reduced to 94 ℃ after 100 ms of the laser surgery period. The effect of choroidal blood perfusion on retinal cooling is found to be negligible during transient simulation of retinopathy. A truncated three-dimensional model incorporating multiple laser irradiation of spots is also developed to observe the spatial effect of choroidal blood perfusion and choroidal pigmentation. For a circular array of seven uniformly distributed spots of identical diameter and laser power of 0.2 W, transient temperature evolution using simultaneous and sequential mode of laser surgical process is presented with analysis.
机译:视网膜病变是外科手术过程,其中通过激光照射来治疗人眼的疾病。已经开发了人眼几何形状的二维数值模型来研究由于激光辐射引起的瞬态热效应。尤其是,详细研究了脉络膜色素沉着的影响以及根据脉络膜血液灌注而参数化的脉络膜对流的影响。将Pennes生物传热方程式作为控制方程式,在数值方法中采用有限体积公式。对于直径为500μm的光斑尺寸,0.2 W的激光功率以及在视网膜色素上皮(RPE)区域吸收100%的激光辐射,在瞬态模拟100 ms时,观察到的RPE峰值温度为103℃手术期间。由于脉络膜色素层参与激光吸收,因此在激光手术100 ms后,峰值温度降低到94℃。在短暂性视网膜病变模拟过程中,脉络膜血液灌注对视网膜冷却的影响可忽略不计。还开发了一种结合了多个激光照射斑点的截断三维模型,以观察脉络膜血液灌注和脉络膜色素沉着的空间效应。对于具有相同直径和0.2 W激光功率的七个均匀分布光斑的圆形阵列,分析并给出了使用激光手术过程的同时和顺序模式进行瞬时温度演化的过程。

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