Motwani Manoj
Motwani LASIK Institute, San Diego, CA, USA.
Clin Ophthalmol. 2017 May 16;11:915-921. doi: 10.2147/OPTH.S133841. eCollection 2017.
To demonstrate how using the Wavelight Contoura measured astigmatism and axis eliminates corneal astigmatism and creates uniformly shaped corneas.
A retrospective analysis was conducted of the first 50 eyes to have bilateral full WaveLight Contoura LASIK correction of measured astigmatism and axis (vs conventional manifest refraction), using the Layer Yolked Reduction of Astigmatism Protocol in all cases. All patients had astigmatism corrected, and had at least 1 week of follow-up. Accuracy to desired refractive goal was assessed by postoperative refraction, aberration reduction via calculation of polynomials, and postoperative visions were analyzed as a secondary goal.
The average difference of astigmatic power from manifest to measured was 0.5462D (with a range of 0-1.69D), and the average difference of axis was 14.94° (with a range of 0°-89°). Forty-seven of 50 eyes had a goal of plano, 3 had a monovision goal. Astigmatism was fully eliminated from all but 2 eyes, and 1 eye had regression with astigmatism. Of the eyes with plano as the goal, 80.85% were 20/15 or better, and 100% were 20/20 or better. Polynomial analysis postoperatively showed that at 6.5 mm, the average C3 was reduced by 86.5% and the average C5 by 85.14%.
Using WaveLight Contoura measured astigmatism and axis removes higher order aberrations and allows for the creation of a more uniform cornea with accurate removal of astigmatism, and reduction of aberration polynomials. WaveLight Contoura successfully links the refractive correction layer and aberration repair layer using the Layer Yolked Reduction of Astigmatism Protocol to demonstrate how aberration removal can affect refractive correction.
证明使用威视康(Wavelight)Contoura测量的散光和轴位如何消除角膜散光并塑造出形状均匀的角膜。
对首批50只接受双侧威视康Contoura LASIK测量散光和轴位(对比传统显验光)全矫正的眼睛进行回顾性分析,所有病例均采用散光分层联合减少方案。所有患者的散光均得到矫正,且至少随访1周。通过术后验光评估达到预期屈光目标的准确性,通过计算多项式评估像差减少情况,并将术后视力作为次要目标进行分析。
从显验光到测量的散光度数平均差异为0.5462D(范围为0 - 1.69D),轴位平均差异为14.94°(范围为0° - 89°)。50只眼中有47只目标为零散光,3只目标为单眼视力。除2只眼外,所有眼睛的散光均被完全消除,1只眼出现散光回退。以零散光为目标的眼睛中,80.85%的视力达到20/15或更好,100%的视力达到20/20或更好。术后多项式分析显示,在6.5毫米处,平均C3降低了86.5% , 平均C5降低了85.14%。
使用威视康Contoura测量的散光和轴位可消除高阶像差,并能塑造出更均匀的角膜,精确消除散光,降低像差多项式。威视康Contoura使用散光分层联合减少方案成功地将屈光矫正层和像差修复层联系起来,证明了像差消除如何影响屈光矫正。