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视神经乳头的几何结构与力学特性之间的相互作用。

Interactions between geometry and mechanical properties on the optic nerve head.

作者信息

Sigal Ian A

机构信息

Department of Biomedical Engineering, Tulane University, New Orleans, Louisiana,

出版信息

Invest Ophthalmol Vis Sci. 2009 Jun;50(6):2785-95. doi: 10.1167/iovs.08-3095. Epub 2009 Jan 24.

Abstract

PURPOSE

To determine the relative strength, independently and in interaction, of the influence of factors representing the geometry and mechanical properties on the IOP-induced stresses and strains within the optic nerve head (ONH).

METHODS

A computational model of the eye was developed such that 21 factors could be varied independently or simultaneously. A fractional factorial screening analysis was used to identify the factors and interactions with the largest influences on the lamina cribrosa (LC) and prelaminar neural tissue (PLNT).

RESULTS

Nine factors and their interactions accounted for the majority of the variance in the responses (between 95% and 99.8%). These factors were: the properties of the sclera (modulus, eye radius, and shell thickness), LC (modulus and radius), PLNT (modulus and compressibility), and optic nerve (modulus), and IOP. The interactions were stronger on the PLNT than on the LC (up to 16.4% and 9.0% of the response variances, respectively). No factor was the most influential on all the responses or sufficient to ensure high or low levels of strain or stress. Although the modulus of the sclera was among the most influential factors, its effects could be outweighed by other factors.

CONCLUSIONS

There were strong interactions between and within the geometry and mechanical properties of the tissues of the ONH. This suggests that to ascertain individual susceptibility to IOP it may be necessary to determine several properties of the eye, as well as their interactions. The influential factors and their covariances should be better characterized.

摘要

目的

确定代表几何形状和力学性能的因素对视神经乳头(ONH)内眼压诱导的应力和应变的独立影响以及相互作用的影响强度。

方法

建立了一个眼睛的计算模型,使得21个因素可以独立或同时变化。采用分数析因筛选分析来确定对筛板(LC)和板前神经组织(PLNT)影响最大的因素及其相互作用。

结果

九个因素及其相互作用占响应方差的大部分(95%至99.8%)。这些因素包括:巩膜的属性(模量、眼球半径和壳厚度)、LC(模量和半径)、PLNT(模量和可压缩性)、视神经(模量)以及眼压。这些相互作用对PLNT的影响比对LC的影响更强(分别占响应方差的16.4%和9.0%)。没有一个因素对所有响应都是最具影响力的,也不足以确保高或低水平的应变或应力。尽管巩膜模量是最具影响力的因素之一,但其影响可能会被其他因素超过。

结论

ONH组织的几何形状和力学性能之间以及内部存在强烈的相互作用。这表明,要确定个体对眼压的易感性,可能有必要确定眼睛的多个属性及其相互作用。应更好地表征这些有影响的因素及其协方差。

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