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Human Cadaver Retina Model for Retinal Heating During Corneal Surgery with a Femtosecond Laser

机译:飞秒激光角膜手术中视网膜加热的人类尸体视网膜模型

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Femtosecond lasers are widely used in everyday clinical procedures to perform minimally invasive corneal refractive surgery. The intralase femtosecond laser (AMO Corp. Santa Ana, CA) is a common example of such a laser. In the present study a numerical simulation was developed to quantify the temperature rise in the retina during femtosecond intracorneal surgery. Also, ex-vivo retinal heating due to laser irradiation was measured with an infrared thermal camera (Fluke Corp. Everett, WA) as a validation of the simulation. A computer simulation was developed using Comsol Multiphysics to calculate the temperature rise in the cadaver retina during femtosecond laser corneal surgery. The simulation showed a temperature rise of less than 0.3 degrees for realistic pulse energies for the various repetition rates. Human cadaver retinas were irradiated with a 150 kHz Intralase femtosecond laser and the temperature rise was measured withan infrared thermal camera. Thermal camera measurements are in agreement with the simulation. During routine femtosecond laser corneal surgery with normal clinical parameters, the temperature rise is well beneath the threshold for retina damage. The simulation predictions are in agreement with thermal measurements providing a level of experimental validation.
机译:飞秒激光广泛用于日常临床程序中,以执行微创角膜屈光手术。内切酶飞秒激光器(加利福尼亚州圣安娜的AMO公司)是这种激光器的常见示例。在本研究中,开发了数值模拟以量化飞秒角膜内手术期间视网膜中的温度升高。另外,用红外热像仪(Fluke Corp.Everett,WA)测量了由于激光照射引起的离体视网膜加热,作为模拟的验证。使用Comsol Multiphysics开发了计算机模拟,以计算飞秒激光角膜手术期间尸体视网膜的温度升高。对于不同的重复频率,仿真显示实际脉冲能量的温度升高小于0.3度。用150 kHz Intralase飞秒激光照射人的尸体视网膜,并用红外热像仪测量温度升高。热像仪的测量结果与仿真结果一致。在常规飞秒激光角膜手术中,临床参数正常,温度升高远低于视网膜损伤的阈值。模拟预测与提供一定水平的实验验证的热测量结果一致。

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