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瞳孔阻滞现象的生物力学计算研究。

Computational Study on the Biomechanics of Pupil Block Phenomenon.

机构信息

School of Biomedical Engineering, Capital Medical University, Beijing, China.

Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Beijing, China.

出版信息

Biomed Res Int. 2019 Sep 25;2019:4820167. doi: 10.1155/2019/4820167. eCollection 2019.

Abstract

Pupil blocking force (PBF) can indicate the potential risk of pupil block (PB), which is considered as a main pathogenic factor of primary angle-closure glaucoma (PACG). However, the effect of PB on the PBF under different pupil diameters and iris-lens channel (ILC) distance was unknown. Besides, a simple and practical method to assess PBF has not been reported yet. In this study, 21 finite element models of eyes with various pupil diameters (2.4 mm-2.6 mm) and ILC (2 m-20 m) were constructed and were conducted to simulate aqueous humor flow by fluid-solid coupling numerical simulation. PBF in each model was calculated based on the numerical simulation results and was fitted using response surface methodology. The results demonstrated that ILC distance had a more significant effect than pupil diameter on PBF. With the decrease of ILC distance, the PBF increased exponentially. When the reduced distance was lower than 5 m, the PBF exploded quickly, resulting in a high risk of iris bomb. The PBF also varied with pupil diameter, especially under the condition of narrow ILC. Both ILC distance and pupil diameter could explain more than 97% variation in PBF, and a second-order empirical model has been developed to be a good predictor of PBF. Based on the linear relationship between anterior chamber deformation and PBF, a threshold value of PBF was given to guide clinical decisions. This study could be used to investigate PACG pathological correlation and its pathogenesis, so as to provide a reference value for clinical diagnosis of PACG.

摘要

瞳孔阻滞力(PBF)可以反映瞳孔阻滞(PB)的潜在风险,PB 被认为是原发性闭角型青光眼(PACG)的主要致病因素之一。然而,在不同的瞳孔直径和虹膜-晶状体间隙(ILC)距离下,PB 对 PBF 的影响尚不清楚。此外,目前还没有报道一种简单实用的评估 PBF 的方法。在这项研究中,构建了 21 个具有不同瞳孔直径(2.4mm-2.6mm)和 ILC(2m-20m)的眼睛有限元模型,并通过流固耦合数值模拟来模拟房水的流动。根据数值模拟结果计算了每个模型中的 PBF,并使用响应面法对其进行拟合。结果表明,ILC 距离对 PBF 的影响比瞳孔直径更显著。随着 ILC 距离的减小,PBF 呈指数增长。当减小的距离低于 5m 时,PBF 迅速增加,导致虹膜膨隆的风险很高。PBF 也随瞳孔直径而变化,尤其是在 ILC 狭窄的情况下。ILC 距离和瞳孔直径都可以解释 PBF 超过 97%的变化,并且已经建立了一个二阶经验模型来很好地预测 PBF。基于前房变形与 PBF 之间的线性关系,给出了 PBF 的阈值来指导临床决策。本研究可用于研究 PACG 的病理相关性及其发病机制,为 PACG 的临床诊断提供参考价值。

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