首页> 外文期刊>Journal of refractive surgery >From wavefront device to laser: an alignment method for complete registration of the ablation to the cornea.
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From wavefront device to laser: an alignment method for complete registration of the ablation to the cornea.

机译:从波前设备到激光:一种将消融完全记录到角膜的对准方法。

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PURPOSE: When customized laser refractive surgery is based on a wavefront measurement, correct registration of the laser ablation to the prescribed treatment area is vital. If the treatment is not ablated exactly where it was measured, the error could negate some benefits of the procedure. Currently, treatments are aligned to the pupil center, which has been shown to shift between measurement and treatment. This article describes an alignment method that uses an image-based coordinate system to compensate for shifts of the pupil center as well as cyclorotation. METHODS: Images of patients' eyes were taken during wavefront measurements and again when patients were in position for surgery. An image-processing method, which matches multiple ocular landmarks in both image sets, was used to align the laser beam to the ablation target. RESULTS: Analyses of the data collected from both instruments suggest that alignment errors caused by movement of the pupil center and cyclorotation could be significantly reduced by using the proposed alignment method. CONCLUSIONS: Because the pupil center undergoes significant movement with changes in lighting conditions, it is unsuitable as the sole alignment point for custom ablations. Several reference points are necessary to compensate for changing pupil size as well as the cyclotorsional eye position changes that occur between wavefront measurement and laser procedure. By providing multiple points for alignment, the registration method described herein increases safety and effectiveness of wavefront-based laser vision correction.
机译:目的:当定制的激光屈光手术基于波前测量时,将激光消融正确对准指定治疗区域至关重要。如果治疗没有精确地在测量位置消融,则错误可能会抵消该程序的某些好处。目前,治疗与瞳孔中心对齐,这已显示在测量和治疗之间会发生变化。本文介绍了一种对齐方法,该方法使用基于图像的坐标系来补偿瞳孔中心的偏移和旋转。方法:在波阵面测量期间以及在患者手术位置时再次获取患者眼睛的图像。匹配两个图像集中多个眼界的图像处理方法用于将激光束对准消融目标。结果:从这两种仪器收集的数据的分析表明,通过使用所提出的对准方法,可以显着减少由瞳孔中心运动和旋转引起的对准误差。结论:由于瞳孔中心会随着光照条件的变化而发生明显的运动,因此不适合作为定制消融的唯一对准点。需要几个参考点来补偿瞳孔大小的变化以及在波阵面测量和激光手术之间发生的眼眶扭转位置的变化。通过提供多个对准点,本文所述的配准方法提高了基于波前的激光视力矫正的安全性和有效性。

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