Jaskulski Mateusz, Martínez-Finkelshtein Andreí, López-Gil Norberto
Facultad de Óptica y Optometría, University of Murcia, Murcia, Spain.
Department of Mathematics, University of Almería, Almería, Spain.
J Ophthalmol. 2017;2017:1909348. doi: 10.1155/2017/1909348. Epub 2017 Sep 20.
To develop an objective refraction formula based on the ocular wavefront error (WFE) expressed in terms of Zernike coefficients and pupil radius, which would be an accurate predictor of subjective spherical equivalent (SE) for different pupil sizes.
A sphere is fitted to the ocular wavefront at the center and at a variable distance, . The optimal fitting distance, , is obtained empirically from a dataset of 308 eyes as a function of objective refraction pupil radius, , and used to define the formula of a new wavefront refraction metric (MTR). The metric is tested in another, independent dataset of 200 eyes.
For pupil radii ≤ 2 mm, the new metric predicts the equivalent sphere with similar accuracy (<0.1D), however, for > 2 mm, the mean error of traditional metrics can increase beyond 0.25D, and the MTR remains accurate. The proposed metric allows clinicians to obtain an accurate clinical spherical equivalent value without rescaling/refitting of the wavefront coefficients. It has the potential to be developed into a metric which will be able to predict full spherocylindrical refraction for the desired illumination conditions and corresponding pupil size.
基于以泽尼克系数和瞳孔半径表示的眼波前误差(WFE)开发一种客观验光公式,该公式将是不同瞳孔大小主观球镜当量(SE)的准确预测指标。
在中心和可变距离处将一个球面拟合到眼波前。从308只眼睛的数据集中根据客观验光瞳孔半径经验性地获得最佳拟合距离,并将其用于定义一种新的波前验光指标(MTR)的公式。该指标在另一个包含200只眼睛的独立数据集中进行测试。
对于瞳孔半径≤2毫米,新指标预测等效球镜的准确性相似(<0.1D),然而,对于>2毫米,传统指标的平均误差可能增加到超过0.25D,而MTR仍然准确。所提出的指标使临床医生无需重新缩放/重新拟合波前系数即可获得准确的临床球镜当量值。它有潜力发展成为一种能够预测所需照明条件和相应瞳孔大小下的全圆柱镜验光的指标。