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白内障手术中超声乳化术冲洗/抽吸过程中角膜变形的计算机模拟研究

In silico investigation of cornea deformation during irrigation/aspiration in phacoemulsification in cataract surgery.

作者信息

Bayatpour Dariush, Abouali Omid, Ghaffarieh Alireza, Ahmadi Goodarz

机构信息

School of Mechanical Engineering, Shiraz University, Shiraz, Iran.

School of Mechanical Engineering, Shiraz University, Shiraz, Iran.

出版信息

Med Eng Phys. 2017 May;43:77-85. doi: 10.1016/j.medengphy.2017.02.010. Epub 2017 Mar 10.

Abstract

To analyze the stress, strain and displacement of the human cornea under the action of negative intraocular pressure, which occurs during phacoemulsification in cataract surgery, a multidisciplinary approach including biomedical engineering, solid mechanics, numerical analysis, and fluid dynamics was used. Fluid-structure interaction method was implemented using 3-dimensional nonlinear finite element analysis of cornea tissue in conjunction with CFD analysis of anterior chamber fluid flow to study the deformation of the cornea under negative gage pressure during irrigation and aspiration (I/A). The computational model of the eye includes both cornea and sclera. To increase the accuracy of the computational model, both cornea hyperelasticity and thickness variation were included in the analysis. The simulation was performed for both coaxial and bimanual I/A systems with different flow rates. The cornea deformations for various flow rates were evaluated, and the possibility of an unstable anterior chamber was assessed. The results show that the critical pressure in the anterior chamber, which may lead to the surge condition due to buckling of the cornea, is sub-ambient (below zero gauge pressure). Anterior chamber instability occurs at higher volume flow rates for coaxial I/A system compared with that for bimanual system, but the deformation of the cornea is more intense for the bimanual system.

摘要

为了分析白内障手术超声乳化过程中出现的负压作用下人眼角膜的应力、应变和位移,采用了一种多学科方法,包括生物医学工程、固体力学、数值分析和流体动力学。通过对角膜组织进行三维非线性有限元分析并结合前房流体流动的计算流体动力学(CFD)分析,采用流固耦合方法来研究冲洗和抽吸(I/A)过程中负压作用下角膜的变形。眼睛的计算模型包括角膜和巩膜。为提高计算模型的准确性,分析中考虑了角膜的超弹性和厚度变化。针对不同流速的同轴和双手操作I/A系统进行了模拟。评估了不同流速下的角膜变形情况,并评估了前房不稳定的可能性。结果表明,由于角膜屈曲可能导致前房波动状态的临界压力低于环境压力(低于零表压)。与双手操作系统相比,同轴I/A系统在更高的体积流速下会出现前房不稳定,但双手操作系统中角膜的变形更强烈。

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