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Original Articles

Accommodation of the human lens capsule using a finite element model based on nonlinear regionally anisotropic biomembranes

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Pages 302-307 | Received 18 Aug 2014, Accepted 22 Aug 2016, Published online: 09 Sep 2016
 

Abstract

Accommodation of the eyes, the mechanism that allows humans to focus their vision on near objects, naturally diminishes with age via presbyopia. People who have undergone cataract surgery, using current surgical methods and artificial lens implants, are also left without the ability to accommodate. The process of accommodation is generally well known; however the specific mechanical details have not been adequately explained due to difficulties and consequences of performing in vivo studies. Most studies have modeled the mechanics of accommodation under assumptions of a linearly elastic, isotropic, homogenous lens and lens capsule. Recent experimental and numerical studies showed that the lens capsule exhibits nonlinear elasticity and regional anisotropy. In this paper we present a numerical model of human accommodation using a membrane theory based finite element approach, incorporating recent findings on capsular properties. This study seeks to provide a novel perspective of the mechanics of accommodation. Such findings may prove significant in seeking biomedical solutions to restoring loss of visual power.

Notes

No potential conflict of interest was reported by the authors.

Additional information

Funding

This work was supported, in part, via a contract from Alcon Laboratories, Inc. (Fort Worth, Texas); and the University of the Philippines Creative Work and Research Program.

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