Centre for Ophthalmology, University Hospital, Tübingen, Germany.
J Cataract Refract Surg. 2009 Nov;35(11):1984-94. doi: 10.1016/j.jcrs.2009.05.053.
To calculate the exact geometry of custom intraocular lenses (IOLs) for pseudophakic eyes and theoretically predict the residual wavefront error by real ray tracing based on Snell's law.
Centre for Ophthalmology, University Hospital, Tübingen, Germany.
Individual computer models were constructed based on measurements, including corneal topography and axial length. The geometry of custom spherical, aspheric, toric, and toric aspheric IOLs was calculated in an optimization process with real ray tracing to provide the minimum root mean square wavefront error. The geometric optical properties in terms of residual wavefront error was simulated and approximated by Zernike polynomials.
Data from 45 pseudophakic eyes were used to construct the models. Defocus was almost completely corrected by the spherical IOL and astigmatism, by the toric IOL. The aspheric IOL strongly reduced spherical aberration but only slightly reduced total higher-order aberrations (HOAs); both theoretical predictions corresponded to clinical investigations of wavefront measurements in pseudophakic eyes with a spherical or aspheric IOL.
Real ray tracing calculated the exact geometry of custom IOLs to provide the minimum wavefront error, going beyond simple diopter information. Results show spherical aberration can be significantly reduced with aspheric IOLs. However, the limited possible reduction of total HOAs, even perfectly positioned custom aspheric IOLs, may be a reason for the unclear results in studies assessing the potential benefit to visual performance of currently used aspheric IOLs.
通过基于斯内尔定律的真实光线追踪,计算出人工晶状体(IOL)的精确几何形状,并从理论上预测残余波前像差。
德国图宾根大学医院眼科中心。
根据角膜地形图和眼轴长度等测量结果构建个体化的计算机模型。通过真实光线追踪的优化过程计算出定制的球面、非球面、散光和散光非球面 IOL 的几何形状,以提供最小均方根波前像差。用泽尼克多项式模拟和逼近几何光学的残余波前像差。
使用 45 只人工晶状体眼的数据构建了模型。球面 IOL 几乎完全矫正了离焦,散光 IOL 矫正了散光。非球面 IOL 大大降低了球差,但仅略微降低了总高阶像差(HOAs);理论预测与波前测量的临床研究结果相吻合,这些研究涉及到人工晶状体眼的球面或非球面 IOL。
真实光线追踪计算出了定制 IOL 的精确几何形状,以提供最小的波前像差,超越了简单的屈光度信息。结果表明,非球面 IOL 可显著降低球差。然而,即使是完美定位的定制非球面 IOL,总 HOAs 的降低也非常有限,这可能是目前使用的非球面 IOL 对视觉性能潜在益处的研究结果不明确的原因之一。