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首页> 外文期刊>Journal of refractive surgery >Wavefront measurements of diffractive and refractive multifocal intraocular lenses in an artificial eye.
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Wavefront measurements of diffractive and refractive multifocal intraocular lenses in an artificial eye.

机译:人造眼中衍射和折射多焦点人工晶状体的波前测量。

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PURPOSE: To investigate whether wavefront measurements taken in eyes that have implanted multifocal intraocular lenses (IOLs) are reliable when creating laser refractive surgical treatments to remove residual refractive error from these eyes. METHODS: A specially designed fluid-filled model eye holding a multifocal IOL was refracted using a commercial wavefront eye refractor. The wavefront findings were then compared to the expected refractive error. The fluid-filled model was designed to match the optical characteristics of a human eye and to hold the IOL at the same distance from the cornea as in a human eye. Lenses tested were AMO Tecnis ZM900 series (diffractive design, +25.00 D, +4.00 D add), AMO ReZoom NXG1 series (refractive design, 25.00 D, +4.00 D add), and AMO 811E (diffractive with aspheric design 25.00 D, +4.00 add). The visible pupil diameter was 5.75 mm. RESULTS: Diffractive bifocal IOLs were found to create spot doubling in the Shack-Hartmann sensor image as expected from theoretical considerations. However, the residual sphere power and cylinder power reported were those expected. In addition, the higher order aberrations reported were reasonable in light of expected results. Refractive multifocal IOLs were found to create distorted Shack-Hartmann images as expected. The residual sphere power and cylinder power reported were not those expected nor were the higher order aberrations. In addition, the higher order values were sensitive to the position of the eye with respect to the refractor. CONCLUSIONS: Wavefront measurements from eyes with diffractive IOLs can be used, with caution, to plan laser refractive treatments. Wavefront measurements from eyes with refractive multifocal IOLs should not be used to plan post-implant laser refractive correction.
机译:目的:调查在创建激光屈光手术治疗以消除这些眼睛的残余屈光不正时,在植入多焦点人工晶状体(IOL)的眼睛中进行的波前测量是否可靠。方法:使用商业化的波前眼屈光镜对装有多焦点IOL的特殊设计的充液模型眼进行屈光。然后将波前的发现与预期的折射误差进行比较。充液模型的设计旨在匹配人眼的光学特性,并将IOL保持在与人眼相同的距角膜距离处。所测试的镜头为AMO Tecnis ZM900系列(衍射设计,+ 25.00 D,+ 4.00 D加),AMO ReZoom NXG1系列(折射设计,25.00 D,+ 4.00 D加)和AMO 811E(非球面设计为25.00 D,+ 4.00添加)。可见瞳孔直径为5.75mm。结果:发现衍射双焦点IOL在Shack-Hartmann传感器图像中产生了斑点加倍,这是理论上的预期。但是,报告的剩余球面功率和圆柱体功率是预期值。此外,根据预期结果,报告的更高阶像差是合理的。发现折射多焦点IOL可以按预期创建扭曲的Shack-Hartmann图像。所报告的剩余球面光焦度和圆柱光焦度既不是预期的,也不是高阶像差。另外,较高阶值对眼睛相对于折射镜的位置敏感。结论:可谨慎地使用带有衍射IOL的眼睛进行波前测量,以计划激光屈光治疗。具有屈光多焦点IOL的眼睛的波前测量值不应用于计划植入后激光屈光矫正。

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