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首页> 外文期刊>Lasers in surgery and medicine >Measurement and modeling of thermal transients during Er:YAG laser irradiation of vitreous.
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Measurement and modeling of thermal transients during Er:YAG laser irradiation of vitreous.

机译:热瞬态测量和建模在Er:掺钕钇铝石榴石激光辐照玻璃。

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BACKGROUND AND OBJECTIVE: We investigated the transient thermal behavior of vitreous in order to understand the local thermal effects of laser output, and to predict the potential for unintentional injury during Er:YAG laser vitreoretinal surgery. STUDY DESIGN/MATERIALS AND METHODS: The output of a free-running Er:YAG laser (2.94 microns, 300 microseconds FWHM) was delivered through a fiberoptic and applied to en bloc samples of bovine vitreous. Temperature was measured with ultrafine thermocouples. RESULTS: For 6 mJ pulse energy at 10 Hz, a temperature rise of 20 degrees C is measured 500 microns from the laser tip. The temperature rise is localized with a rapid fall-off greater than 1 mm from the energy source. At constant time-averaged laser power, the temperature profile is independent of repetition rate. Our finite-difference model generates results qualitatively consistent with measured data and allows for investigation of the influence of thermophysical parameters on heat transfer. CONCLUSION: Thermal injury to ocular structures should be limited during intravitreal application of Er:YAG laser energy.
机译:背景和目的:我们研究了瞬态热行为的玻璃了解当地的激光热的影响输出和预测的可能性Er期间意外伤害:掺钕钇铝石榴石激光器手术适应症。方法:不同步的Er的输出:掺钕钇铝石榴石激光(2.94微米,300微秒应用通过在纤维和应用集团牛玻璃样品。与超细热电偶测量。6 mJ在10赫兹脉冲能量,温度20摄氏度测量500微米的崛起激光小费。迅速下降大于1毫米的能量来源。权力,温度曲线是独立的重复率。生成结果定性符合测量数据和允许的调查热物理参数对热的影响转移。在intravitreal结构应该是有限的Er的应用:掺钕钇铝石榴石激光器能量。

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