Vega Fidel, Faria-Ribeiro Miguel, Armengol Jesús, Millán María S
Departament d'Òptica i Optometria, Universitat Politècnica de Catalunya, Barcelonatech, ViolinistaVellsolà 37, 08222 Terrassa, Spain.
Physics Center of Minho and Porto Universities (CF-UM-UP), University of Minho, 4710-057 Braga, Portugal.
Diagnostics (Basel). 2023 Mar 27;13(7):1259. doi: 10.3390/diagnostics13071259.
The strong wavelength dependency of diffractive elements casts reasonable doubts on the reliability of near-infrared- (NIR)-based clinical instruments, such as aberrometers and double-pass systems, for assessing, post-surgery, the visual quality of eyes implanted with diffractive multifocal intraocular lenses (DMIOLs). The results obtained for such patients when using NIR light can be misleading. Ordinary compensation for the refractive error bound to chromatic aberration is not enough because it only considers the best focus shift but does not take into account the distribution of light energy among the foci which strongly depends on the wavelength-dependent energy efficiency of the diffractive orders used in the DMIOL design. In this paper, we consider three commercial DMIOL designs with the far focus falling within the range of (-1, 0, +1)-diffractive orders. We prove theoretically the differences existing in the physical performance of the studied lenses when using either the design wavelength in the visible spectrum or a NIR wavelength (780 to 850 nm). Based on numerical simulation and on-bench experimental results, we show that such differences cannot be neglected and may affect all the foci of a DMIOL, including the far focus.
衍射元件强烈的波长依赖性使得基于近红外(NIR)的临床仪器(如像差仪和双程系统)在评估植入衍射多焦点人工晶状体(DMIOL)的眼睛术后视觉质量时的可靠性受到合理质疑。使用近红外光为这类患者获得的结果可能会产生误导。仅对与色差相关的屈光不正进行常规补偿是不够的,因为它只考虑了最佳焦点偏移,而没有考虑焦点之间光能的分布,而光能分布强烈依赖于DMIOL设计中所用衍射级次的波长相关能量效率。在本文中,我们考虑了三种远焦点落在(-1, 0, +1)衍射级次范围内的商用DMIOL设计。我们从理论上证明了在所研究的晶状体使用可见光谱中的设计波长或近红外波长(780至850nm)时,其物理性能存在差异。基于数值模拟和实验台上的实验结果,我们表明这些差异不可忽视,并且可能会影响DMIOL的所有焦点,包括远焦点。