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首页> 外文期刊>Journal of cataract and refractive surgery >Diode laser thermokeratoplasty: application strategy and dosimetry.
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Diode laser thermokeratoplasty: application strategy and dosimetry.

机译:二极管激光热角膜成形术:应用策略和剂量学。

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摘要

PURPOSE: To investigate suitable application parameters for efficient hyperopic correction by laser thermokeratoplasty (LTK) using mid-infrared laser diodes. SETTING: Medical Laser Center Lubeck, Lubeck, Germany. METHOD: A tunable continuous-wave laser diode in the spectral range between 1.845 and 1.871 microns was used. Transmitted by waveguides, the laser energy was used to induce coagulations on freshly enucleated porcine eyes to increase corneal curvature. The coagulations were equidistantly applied by a fiber-cornea contact and a noncontact focusing device that were adjusted on a ring concentric to the corneal apex. Different laser parameters and application geometries were evaluated. Refractive changes were measured by computer-assisted corneal topography before and after treatment. Polarization light microscopy and temperature calculations were used to analyze the coagulations. RESULTS: Because of the tunability of the laser diode, the influence of the corneal absorption coefficient (between 0.9 and 1.6 mm-1) on the refractive change could be measured. A laser power between 125 and 200 mW was adequate to achieve refractive changes up to 10.0 diopters. In the preferable focusing device, the refractive change increased almost logarithmically with the irradiation time up to 15 seconds. The number of coagulations on a fixed application ring showed no significant influence on refractive change; however, it showed an almost linear decrease with increasing ring diameter from 5.0 to 10.0 mm. Histological analysis revealed 3 stages of thermal damage. CONCLUSION: Diode LTK provided defined and uniform coagulations when using a well-adapted focusing device, resulting in sufficient refractive change. The results indicate that diode LTK is superior to pulsed holmium LTK.
机译:目的:研究合适的应用参数,通过使用中红外激光二极管的激光热角膜成形术(LTK)进行有效的远视矫正。地点:德国吕贝克医疗激光中心。方法:使用光谱范围在1.845和1.871微米之间的可调连续波激光二极管。通过波导传输,激光能量被用来诱导新鲜去核猪眼的凝结,从而增加角膜曲率。通过纤维角膜接触和非接触聚焦装置等距施加凝结,所述非接触聚焦装置在与角膜顶点同心的环上调节。评估了不同的激光参数和应用几何形状。在治疗之前和之后通过计算机辅助角膜地形图测量屈光变化。使用偏光显微镜和温度计算来分析凝结。结果:由于激光二极管的可调性,可以测量角膜吸收系数(介于0.9和1.6 mm-1之间)对屈光度变化的影响。 125至200 mW之间的激光功率足以实现高达10.0屈光度的屈光变化。在优选的聚焦装置中,随着照射时间长达15秒,折射变化几乎成对数增加。固定的应用环上的凝结次数对屈光度变化没有显着影响。但是,随着环直径从5.0毫米增加到10.0毫米,它几乎呈线性减小。组织学分析显示了热损伤的三个阶段。结论:使用合适的聚焦装置时,二极管LTK可提供清晰而均匀的凝结,从而产生足够的屈光度变化。结果表明,二极管LTK优于脉冲LTK。

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