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Spot diameters for scanning photorefractive keratectomy: a comparative study

机译:扫描光折变性角膜切除术的光斑直径:一项比较研究

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Abstract: Purpose: The purpose of this study was to compare with computer simulations the duration, smoothness and accuracy of scanning photo-refractive keratectomy with spot diameters ranging from 0.2 to 1 mm. Methods: We calculated the number of pulses per diopter of flattening for spot sizes varying from 0.2 to 1 mm. We also computed the corneal shape after the correction of 4 diopters of myopia and 4 diopters of astigmatism with a 6 mm ablation zone and a spot size of 0.4 mm with 600 mJ/cm$+2$/ peak radiant exposure and 0.8 mm with 300 mJ/cm$+2$/ peak radiant exposure. The accuracy and smoothness of the ablations were compared. Results: The repetition rate required to produce corrections of myopia with a 6 mm ablation zone in a duration of 5 s per diopter is on the order of 1 kHz for spot sizes smaller than 0.5 mm, and of 100 Hz for spot sizes larger than 0.5 mm. The accuracy and smoothness after the correction of myopia and astigmatism with small and large spot sizes were not significantly different. Conclusions: This study seems to indicate that there is no theoretical advantage for using either smaller spots with higher radiant exposures or larger spots with lower radiant exposures. However, at fixed radiant exposure, treatments with smaller spots require a larger duration of surgery but provide a better accuracy for the correction of astigmatism. !12
机译:【摘要方法:我们计算出趋势屈光度的脉冲数,用于点尺寸从0.2〜1mm变化。我们还通过6mm消融区校正了近视近视的4级和4倍峰值的折射区后的角膜形状,带600 mJ / cm $ + 2 $ /峰值辐射曝光和300毫米的斑点尺寸。 MJ / cm $ + 2 $ /峰值辐射曝光。比较了消融的准确性和平滑度。结果:在每屈光度为5秒的持续时间内用6mm消融区产生近视的近视校正所需的重复率为1 kHz,光斑尺寸小于0.5 mm,尺寸大于0.5的斑点尺寸为100 Hz毫米。近视和大型斑点尺寸矫正近视和散光后的准确性和平滑并没有显着差异。结论:本研究似乎表明,使用具有更高辐射暴露或具有较低辐射曝光的较大斑点的较小斑点没有理论优势。然而,在固定的辐射辐射暴露中,具有较小斑点的处理需要更大的手术持续时间,但为散光的校正提供更好的准确性。 !12

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