Bonney C H, Gaasterland D E, Rodrigues M M, Raymond J J, Donohoo P
Invest Ophthalmol Vis Sci. 1982 Mar;22(3):310-8.
Three Q-switched ruby laser pulses were applied to the trabecular meshwork of 10 monkey eyes. Pulse energies ranging from 20 to 110 mJ were studied. The spot size ranged from 100 to 200 micrometer (in air), and the pulse durations was 28 sec. Gonioscopic examinations showed a graded response from no appreciable change at 20 mJ per pulse to marked disruption of anterior chamber angle structures at 100 mJ or more per pulse. Perfusions done within an hour of treatment showed no consistent alteration of the outflow facility. Scanning electron microscopy demonstrated the graded anterior chamber angle response. No disruption of the angle structures was seen after the 20 mJ treatment, but discrete trabecular damage occurred after treatments with 25 mJ. After pulses equal to or greater than 45 mJ the anterior chamber angle structures were markedly altered. The power density causing extensive tissue disruption was equal to or greater than 150 X 10(8) watts/cm2. In each specimen with an identifiable trabecular lesion, tissue debris and endothelial edema were found on the adjacent inner surface of the cornea. Tearing of Descemet's membrane next to the trabecular meshwork occurred with the 100 mJ pulses.
对10只猴眼的小梁网施加三个调Q红宝石激光脉冲。研究了脉冲能量范围为20至110 mJ的情况。光斑大小在100至200微米(空气中)之间,脉冲持续时间为28纳秒。前房角镜检查显示出分级反应,从每脉冲20 mJ时无明显变化到每脉冲100 mJ或更高时前房角结构明显破坏。治疗后一小时内进行的灌注显示流出设施没有一致的改变。扫描电子显微镜显示了前房角的分级反应。20 mJ治疗后未见角结构破坏,但25 mJ治疗后出现离散的小梁损伤。在等于或大于45 mJ的脉冲后,前房角结构明显改变。导致广泛组织破坏的功率密度等于或大于150×10⁸瓦/平方厘米。在每个有可识别小梁病变的标本中,在相邻的角膜内表面发现了组织碎片和内皮水肿。在100 mJ脉冲时,小梁网旁边的Descemet膜发生撕裂。