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An in vivo model of femtosecond laser intrastromal refractive surgery.

机译:飞秒激光基质内屈光手术的体内模型。

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BACKGROUND AND OBJECTIVE: To develop an animal model for evaluation of femtosecond laser intrastromal refractive surgery. METHODS: Intrastromal photodisruption was performed in New Zealand Albino rabbits using a femtosecond laser system. This surgical pattern consisted of a 100 microm-tick pyramid of laser pulses starting 180 microm below the corneal surface. Animals underwent serial slit lamp examinations and corneal thickness measurements at 1,3,7,14, and 28 days, then monthly up to 1 year. RESULTS: Approximately 70 microm of central corneal thinning were seen at 1 week, remaining stable up to 7 months. CONCLUSIONS: Intrastromal photodisruption with femtosecond lasers produced consistent changes in corneal thickness without loss of corneal transparency. These changes were more stable than those produced with excimer laser procedures in a similar animal model.
机译:背景与目的:建立评价飞秒激光基质内屈光手术的动物模型。方法:使用飞秒激光系统在新西兰白变种兔中进行基质内光破坏。这种手术模式由在角膜表面以下180微米处开始的100微米刻度的激光脉冲金字塔组成。在1、3、7、14和28天对动物进行连续裂隙灯检查和角膜厚度测量,然后每月一次直至一年。结果:在第1周观察到约70微米的中央角膜变薄,直到7个月都保持稳定。结论:用飞秒激光进行的基质内光致破裂在不损失角膜透明度的情况下产生了一致的角膜厚度变化。这些变化比在类似动物模型中准分子激光手术产生的变化更稳定。

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