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用新型670纳米二极管红色激光以不同功率照射兔视网膜的超微结构分析。

Ultrastructural analysis of rabbit retina irradiated with a new 670-nm diode red laser at different powers.

作者信息

Lanzetta Paolo, Ortolani Fulvia, Petrelli Lucia, Cugini Ugo, Bandello Francesco, Marchini Maurizio

机构信息

Department of Ophthalmology, University of Udine, Udine, Italy.

出版信息

Retina. 2005 Dec;25(8):1039-45. doi: 10.1097/00006982-200512000-00013.

Abstract

PURPOSE

Diode lasers have compact dimensions, efficient electric-optical conversion, absence of major cooling requirements, long useful life, and minimal maintenance. We verified the structural and ultrastructural effects of diode red laser emissions at 670 nm on pigmented rabbit retina.

METHODS

Transpupillary laser pulses were applied to rabbit retinas at variable powers with a spot size of 500 microm ( approximately 1,000 microm at the retina level) and duration of 200 milliseconds. Light and electron microscopic analyses were performed.

RESULTS

Subthreshold non-visible lesions were produced using a power of 200 mW. Ophthalmoscopically visible lesions were produced using a power of 400 mW. More prominent lesions were obtained using a higher power (600 mW). Structural and peculiar ultrastructural changes correlated with the power used. In general, damage was incurred by the retinal pigment epithelium with extension into the superficial choroid posteriorly and into the outer retina anteriorly. The inner retina was involved at higher power levels.

CONCLUSIONS

Ultrastructural analysis of rabbit retina treated with the 670-nm diode laser adds newer insights on tissue changes after thermal irradiation. The effects observed are consistent with those reported for the krypton red laser. The 670-nm diode laser is an economic small-size photocoagulator that appears to be a promising modality for transpupillary laser photocoagulation of the retina.

摘要

目的

二极管激光器尺寸紧凑、电光转换效率高、无需大量冷却、使用寿命长且维护需求极少。我们验证了670nm二极管红色激光发射对色素沉着兔视网膜的结构和超微结构影响。

方法

以500微米的光斑尺寸(视网膜水平约为1000微米)和200毫秒的持续时间,对兔视网膜施加不同功率的经瞳孔激光脉冲。进行了光镜和电镜分析。

结果

使用200mW的功率产生了阈下不可见损伤。使用400mW的功率产生了检眼镜可见损伤。使用更高功率(600mW)获得了更明显的损伤。结构和特殊的超微结构变化与所用功率相关。一般来说,视网膜色素上皮受损,向后延伸至脉络膜浅层,向前延伸至视网膜外层。在更高功率水平下,视网膜内层也会受到影响。

结论

对用670nm二极管激光治疗的兔视网膜进行超微结构分析,为热辐射后组织变化提供了新的见解。观察到的效果与氪红激光报道的效果一致。670nm二极管激光是一种经济的小型光凝器,似乎是视网膜经瞳孔激光光凝的一种有前景的方式。

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