ArF准分子激光烧蚀过程中角膜表面微秒时间常数热辐射节能烧蚀温度测量。

M. Ishihara, T. Arai, S. Sato, Y. Morimoto, M. Obara, M. Kikuchi
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引用次数: 19

摘要

由于光热过程被认为是ArF准分子激光消融的主要机制,因此在光屈光性角膜切除术(PRK)中测量角膜表面温度被认为对监测角膜消融过程是有用的。对于温度测量,我们使用时间常数为1微米的碲化汞镉探测器测量了ArF准分子激光烧蚀过程中角膜表面的热辐射。为了研究温度对消融深度的影响,我们用显微镜测量角膜的消融深度。当在65 mJ/cm2的影响下开始角膜消融时,角膜表面温度上升到60-70℃。单位深度消融所需的能量(摄氏度/微米)在120微℃时最低。PRK过程中瞬变温度的监测提供了节能消融的重要信息,可以实现快速和安全的角膜切口。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature measurement for energy-efficient ablation by thermal radiation with a microsecond time constant from the corneal surface during ArF excimer laser ablation.
Measurement of the temperature of the corneal surface during photorefractive keratectomy (PRK) is thought to be useful for monitoring the corneal ablation process, since the photothermal process has been proposed as the major mechanism of ArF excimer laser ablation. For temperature measurement, we measured thermal radiation from the corneal surface during ArF excimer laser ablation using a mercury-cadmium-telluride detector with a 1-micros time constant. To investigate the effects of temperature on ablation depth, the ablation depth of the cornea was measured by microscopy. When corneal ablation was initiated at the fluence of 65 mJ/cm2, the corneal surface temperature rose to 60-70 degrees C. The energy required for a unit-depth ablation (degrees C/microm) was lowest at 120 micro C. Monitoring of transient temperature during PRK provides important information on energy-efficient ablation, which may enable rapid and safe corneal incisions.
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