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在人工晶状体眼中提供增加焦深的小孔径植入物的比较。

A comparison of small aperture implants providing increased depth of focus in pseudophakic eyes.

作者信息

Eppig Timo, Spira Corinna, Seitz Berthold, Szentmáry Nóra, Langenbucher Achim

机构信息

Institute of Experimental Ophthalmology, Saarland University, Kirrberger Strasse 100, Bldg. 22, 66424 Homburg/Saar, Germany.

Department of Ophthalmology, Saarland University Medical Centre, Kirrberger Strasse 100, Bldg. 22, 66424 Homburg/Saar, Germany.

出版信息

Z Med Phys. 2016 Jun;26(2):159-67. doi: 10.1016/j.zemedi.2016.03.003. Epub 2016 Mar 24.

Abstract

BACKGROUND AND PURPOSE

Presbyopia is characterized by a decreasing ability of accommodation - the eye's ability to alter the focus between far and near distance objects. After cataract surgery, accommodation is completely lost. Several years ago, small aperture (pinhole) implants have been presented in order to increase the depth of focus providing functional vision at far and near distance without the need for spectacles. We simulated the theoretical depth of focus with three different pseudophakic eye models in order to investigate the potential benefit arising from the implantation of small aperture optical (SAO) implants. The purpose was to compare the achievable defocus range of a SAO intraocular lens with a SAO corneal inlay.

MATERIAL AND METHODS

We created three pseudophakic eye models with an aberration correcting intraocular lens (IOL): one with a corneal SAO implant (M1), a second one with a SAO intraocular lens (M2) and a third one with a conventional intraocular lens of the same optical design but without SAO (M0). Defocus curves were created by varying the focal length of a thin lens in front of the eye - which mimics the clinical assessment of defocus curves.

RESULTS

With a Strehl ratio threshold of 0.05, the reference design M0 provided a maximum defocus range of approximately 1.7D (with a 2.0mm pupil) whereas both pinhole implants (M1 and M2) showed a defocus range up to 3.0 and 3.3D, respectively. With large natural pupil diameter, where light passes outside the SAO aperture, the defocus range drops to 0.8D/0.7D for M1 and M2 compared to 0.7D with M0.

CONCLUSIONS

The SAO intraocular lens showed a similar defocus range as the SAO corneal inlay. Both concepts have the potential of increasing depth of focus compared to a conventional intraocular lens. In case of large physiological pupil diameters these advantages of SAO implants may be lost.

摘要

背景与目的

老花眼的特征是调节能力下降,即眼睛改变远近物体焦点的能力下降。白内障手术后,调节能力完全丧失。几年前,出现了小孔径(针孔)植入物,以增加焦深,从而在远近距离都能提供功能性视力,而无需佩戴眼镜。我们用三种不同的人工晶状体眼模型模拟了理论焦深,以研究植入小孔径光学(SAO)植入物可能带来的益处。目的是比较SAO人工晶状体与SAO角膜镶嵌物可实现的散焦范围。

材料与方法

我们创建了三个带有像差校正人工晶状体(IOL)的人工晶状体眼模型:一个带有角膜SAO植入物(M1),第二个带有SAO人工晶状体(M2),第三个带有相同光学设计但没有SAO的传统人工晶状体(M0)。通过改变眼前薄透镜的焦距来创建散焦曲线,这模拟了散焦曲线的临床评估。

结果

在斯特列尔比阈值为0.05时,参考设计M0提供的最大散焦范围约为1.7D(瞳孔直径为2.0mm),而两个针孔植入物(M1和M2)的散焦范围分别高达3.0D和3.3D。在自然瞳孔直径较大时,光线从SAO孔径之外通过,M1和M2的散焦范围降至0.8D/0.7D,而M0为0.7D。

结论

SAO人工晶状体的散焦范围与SAO角膜镶嵌物相似。与传统人工晶状体相比,这两种概念都有增加焦深的潜力。在生理瞳孔直径较大的情况下,SAO植入物的这些优势可能会丧失。

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