首页> 外文期刊>Journal of cataract and refractive surgery >Optical modeling of a corneal inlay in real eyes to increase depth of focus: Optimum centration and residual defocus
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Optical modeling of a corneal inlay in real eyes to increase depth of focus: Optimum centration and residual defocus

机译:对真实眼睛中的角膜镶嵌进行光学建模以增加焦深:最佳定心和残留散焦

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Purpose: To determine the optimum position to center a small-aperture corneal inlay and the effect of residual defocus in the surgical eye to maximize depth of focus. Setting: Laboratorio de óptica, Universidad de Murcia, Murcia, Spain. Design: Cohort study. Methods: Personalized eye models were built using actual data (corneal topography, eye length, ocular aberrations, and eye alignment). A small aperture 1.6 mm in diameter was placed at the corneal plane in each model. The monochromatic and polychromatic Strehl ratios were calculated as a function of the pinhole position. Different residual defocus values were also incorporated into the models, and the through-focus Strehl ratios were calculated. Results: Sixteen eye models were built. For most subjects, the optimum location of the aperture for distance vision was close to the corneal reflex position. For a given optimized centration of the aperture, the best compromise of depth of focus was obtained when the eyes had some residual myopic defocus (range -0.75 to -1.00 diopter [D]). Strehl ratio values were over 0.1 for far distance, which led to visual acuities better than 20/20. The depth of focus was 2.50 D with a mean near visual acuity of Jaeger 1 or better. Conclusions: In eyes with little astigmatism and aberrations, the optimum centration of the small aperture was near the corneal reflex position. To improve optical outcomes with the inlay, some small residual myopia and correction of corneal astigmatism might be required. Financial Disclosure: Dr. Artal is a consultant to Acufocus, manufacturer of the Acufocus Kamra corneal inlay. Dr. Tabernero has no financial or proprietary interest in any material or method mentioned.
机译:目的:确定使小孔角膜镶嵌物居中的最佳位置,并确定手术眼中残留散焦的影响,以最大程度地聚焦。地点:西班牙穆尔西亚穆尔西亚大学实验室。设计:队列研究。方法:使用实际数据(角膜地形图,眼睛长度,眼像差和眼睛对准)建立个性化的眼睛模型。在每个模型中,将一个直径为1.6毫米的小孔放置在角膜平面上。根据针孔位置计算单色和多色斯特列尔比。还将不同的残留散焦值合并到模型中,并计算出通过焦点的Strehl比。结果:建立了十六个眼模型。对于大多数受试者,远视光圈的最佳位置接近角膜反射位置。对于给定的最佳光圈中心,当眼睛残留一些近视散焦(范围为-0.75至-1.00屈光度[D])时,可以获得最佳的聚焦深度折衷。远距离的Strehl比率值超过0.1,这导致视敏度优于20/20。聚焦深度为2.50 D,平均近视力为Jaeger 1或更高。结论:在散光和像差很小的眼睛中,小光圈的最佳中心在角膜反射位置附近。为了改善嵌体的视觉效果,可能需要一些小的残留近视和矫正角膜散光。财务披露:Artal博士是Acufocus Kamra角膜嵌体制造商Acufocus的顾问。 Tabernero博士对上述任何材料或方法均无财务或所有权利益。

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