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晶状体悬韧带插入角度对调节的影响。

The Effect of the Zonular Fiber Angle of Insertion on Accommodation.

作者信息

Feng Liying, Pierscionek Barbara, Weeber Henk, Canovas Vidal Carmen, Rozema Jos J

机构信息

Johnson & Johnson Surgical Vision, 9728 NX Groningen, The Netherlands.

Visual Optics Lab Antwerp (VOLANTIS), Faculty of Medicine and Health Sciences, University of Antwerp, 2000 Antwerp, Belgium.

出版信息

Vision (Basel). 2024 Jul 23;8(3):45. doi: 10.3390/vision8030045.

Abstract

With age, there is an anterior shift of the ciliary body in the eye, which alters the angle of zonular insertion in older eyes compared with younger eyes. This study aims to simulate lens accommodation with different zonular angles to consider the influence of zonular position on lens accommodative capacity. Models were constructed based on lenses aged 11, 29, and 45 years using a 2D axisymmetric structure that included a capsule, cortex, nucleus, and zonular fibers. The different zonular fibers were simulated by changing the position of the point where the zonular fibers connect to the ciliary body. The effect of the different zonular fiber insertion angles on the model shape and optical power was analyzed. The models show that smaller angles made by zonular fibers to the surface of the lens lead to larger optical power changes with simulated stretching. When the models were stretched, and when varying the zonule angles, the optical power of the 11-, 29-, and 45-year-old models changed up to 0.17 D, 0.24 D, and 0.30 D, respectively. The effect of zonular angles on the anterior radius of curvature of the anterior surface varied by 0.29 mm, 0.23 mm, and 0.25 mm for the 11-, 29-, and 45-year-old models, respectively. Larger zonular fiber insertion angles cause smaller deformation and less accommodative change, while parallel zonules induce the largest change in lens shape.

摘要

随着年龄增长,眼睛中的睫状体向前移位,与年轻眼睛相比,这改变了老年眼睛中悬韧带附着的角度。本研究旨在模拟不同悬韧带角度下的晶状体调节,以考虑悬韧带位置对晶状体调节能力的影响。使用包含囊膜、皮质、核和悬韧带纤维的二维轴对称结构,构建了基于11岁、29岁和45岁晶状体的模型。通过改变悬韧带纤维与睫状体连接点的位置来模拟不同的悬韧带纤维。分析了不同悬韧带纤维插入角度对模型形状和屈光力的影响。模型显示,悬韧带纤维与晶状体表面形成的角度越小,模拟拉伸时屈光力变化越大。当模型被拉伸且悬韧带角度变化时,11岁、29岁和45岁模型的屈光力分别变化高达0.17 D、0.24 D和0.30 D。对于11岁、29岁和45岁的模型,悬韧带角度对晶状体前表面前曲率半径的影响分别变化0.29 mm、0.23 mm和0.25 mm。悬韧带纤维插入角度越大,变形越小,调节变化越小,而平行的悬韧带会引起晶状体形状的最大变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46e1/11348028/3518cfc0a97f/vision-08-00045-g001.jpg

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