Threshold Determinations for Selective Retinal Pigment Epithelium Damage With Repetitive Pulsed Microsecond Laser Systems in Rabbits

激光器 光学 材料科学 辐照 脉冲持续时间 脉冲重复频率 视网膜色素上皮 视网膜 物理 计算机科学 电信 核物理学 雷达
作者
Carsten Framme,Georg Schuele,Johann Roider,Dietmar Kracht,Reginald Birngruber,Ralf Brinkmann
出处
期刊:Ophthalmic surgery, lasers & imaging retina 卷期号:33 (5): 400-409 被引量:41
标识
DOI:10.3928/1542-8877-20020901-10
摘要

* BACKGROUND AND OBJECTIVE: In both clinical and animal studies, it has been shown that repetitive short laser pulses can cause selective retinal pigment epithelium damage (RPE) with sparing of photoreceptors. Our purpose was to determine the ophthalmoscopic and angiographic damage thresholds as a function of pulse durations by using different pulsed laser systems to optimize treatment modalities. * MATERIALS AND METHODS: Chinchilla breed rabbits were narcotized and placed in a special holding system. Laser lesions were applied using a commercial laser slit lamp, contact lens, and irradiation with a frequency-doubled Nd: YLF laser (wavelength: 527 nm; repetition rate: 500 Hz; number of pulses: 100; pulse duration: 5 µß, 1.7 µß, 200 ns) and an argon-ion laser (514 nm, 500 Hz, 100 pulses, 5 µß and 200 ms). In all eyes, spots with different energies were placed into the regio macularis with a diameter of 102 µp? (tophat profile). After treatment, fundus photography and fluorescein angiography were performed and radiant exposure for ED50 damage determined. Speckle measurements at the fiber tips were performed to determine intensity peaks in the beam profile. * RESULTS: Using the Nd:YLF laser system, the ophthalmoscopic ED50 threshold energies were 25.4 µ] (5 µß), 32 µ] (1.7 µß), and 30 µ] (200 ns). The angiographic ED50 thresholds were 13.4 µ] (5 µ8), 9.2 µ] (1.7 µß), and 6.7 µ] (200 ns). With the argon laser, the angiographic threshold for 5 µß pulses was 5.5 µ). The ophthalmoscopic threshold could not he determined because of a lack of power; however, it was >12 µ}. For 200 ms, the ED50 radiant exposures were 20.4 mW ophthalmoscopically and 19.2 mW angiographically. Speckle factors were found to be 1.225 for the Nd: YLF and 3.180 for the argon laser. Thus, the maximal ED50-threshold radiant exposures for the Nd:YLF were calculated to be 362 mj/cm2 (5 µß), 478 mj/cm2 (1.7 µ-s), and 438 mj/cm2 (200 ns) ophthalmoscopically. Angiographically, the thresholds were 189 mj/cm2 (5 µß), 143 mj/cm2 (1.7 µ-s), and 97 mj/cm2 (200 ns). For the argon laser, the maximal ED50 radiant exposure threshold was 170 mj/cm2 angiographically. * CONCLUSION: The gap between the angiographic and the ophthalmoscopic thresholds for the 200 ns regime (4.5 times above angiographic ED50) was wider than for the 1.7 µ$ regime (3.3 times above the angiographic ED50). This would suggest the appropriate treatment would be 200 ns pulses. However, histologies have yet to prove that nonvisible mechanical effects increase with shorter pulse durations and could reduce the "therapeutic window." When comparing the thresholds with 5 µß pulses from the argon and Nd:YLF laser, it demonstrates that intensity modulations in the beam profile must be considered. [Ophthalmic Surg Lasers 200233:400-409]

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