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开发和验证一种基于直观生物力学的眼压测量方法:模态分析方法。

Development and validation of an intuitive biomechanics-based method for intraocular pressure measurement: a modal analysis approach.

机构信息

College of Medicine, National Taiwan University, 10048, Taipei, Taiwan.

Department of Biomedical Engineering, National Taiwan University, 10048, Taipei, Taiwan.

出版信息

BMC Ophthalmol. 2023 Mar 27;23(1):124. doi: 10.1186/s12886-023-02867-8.

Abstract

BACKGROUND

Current intraocular pressure (IOP) measurements based on non-contact tonometry are derived from statistics-driven equations and lack biomechanical significance, which often leads to under-estimation in post-refractive surgery cornea. This study aims to introduce and validate modal analysis-derived intraocular pressure (mIOP) as a novel method generated through Legendre-based modal decomposition of the anterior corneal contour; it provides an accurate and intuitive IOP measurement from an energy-based perspective.

METHODS

This retrospective study included 680 patients. Healthy participants were divided into reference (n = 385) and validation (n = 142) datasets, and the others underwent either femtosecond-assisted laser in situ keratomileusis (FS-LASIK, n = 58) or transepithelial photorefractive keratectomy (TPRK, n = 55). Corneal curvature of the right eyes was extracted from raw serial cross-sectional images of the cornea generated by Corvis ST, a noncontact tonometer with a high-speed Scheimpflug-camera. Legendre expansion was then applied to the corneal curvature to obtain the modal profiles (i.e., temporal changes of the coefficient for each basis polynomial [modes]). Using the reference dataset, feature selection on the modal profiles generated a final mIOP model consisting of a single parameter: total area under curve (frames 1-140) divided by the area under curve of the rising phase (frames 24-40) in the fourth mode, i.e. the M ratio. Validation was performed in both the healthy validation and postoperative datasets. IOP-Corvis, pachymetry-corrected IOP, biomechanically corrected IOP, and mIOP values were compared. For the FS-LASIK and TPRK groups, pairwise postoperative IOP changes were analyzed through repeated measures analysis of variance, and agreement was examined through Bland-Altman analysis. Using a finite element analysis based three-dimensional model of the human cornea, we further compared the M ratio with the true intraocular pressure within the physiological range.

RESULTS

The M ratio-based mIOP demonstrated weak to negligible association with age, radius of corneal curvature, and central corneal thickness (CCT) in all validation analyses, and performed comparably with biomechanically corrected IOP (bIOP) in the refractive surgery groups. Both remained nearly constant postoperatively and were not influenced by CCT changes. Additionally, M ratio accurately represented true intraocular pressure in the in silico model.

CONCLUSIONS

mIOP is a reliable IOP measurement in healthy and postrefractive surgery populations. This energy-based, ratio-derived approach effectively filters out pathological, rotational, misaligned movements and serves as an interpatient self-calibration index. Modal analysis of corneal deformation dynamics provides novel insights into regional corneal responses against pressure loading.

摘要

背景

目前基于非接触眼压计的眼压(IOP)测量值来自统计驱动的方程,缺乏生物力学意义,这往往导致屈光手术后角膜的低估。本研究旨在介绍和验证模态分析衍生的眼压(miOP),这是一种通过前角膜轮廓的基于勒让德的模态分解产生的新方法; 它从能量的角度提供了一种准确和直观的眼压测量。

方法

本回顾性研究纳入了 680 例患者。健康参与者分为参考(n = 385)和验证(n = 142)数据集,其余患者分别接受飞秒辅助准分子激光原位角膜磨镶术(FS-LASIK,n = 58)或经上皮准分子激光角膜切削术(TPRK,n = 55)。右眼角膜曲率从 Corvis ST 生成的角膜的原始系列横截面图像中提取,Corvis ST 是一种具有高速 Scheimpflug 相机的非接触眼压计。然后对角膜曲率进行勒让德展开,以获得模态轮廓(即,每个基多项式系数的时间变化[模式])。使用参考数据集,对模态轮廓进行特征选择,生成一个最终的 mIOP 模型,该模型由单个参数组成:第四模式下的总曲线下面积(帧 1-140)除以上升相的曲线下面积(帧 24-40),即 M 比。在健康验证和术后数据集上进行了验证。比较了 IOP-Corvis、角膜厚度校正眼压、生物力学校正眼压和 mIOP 值。对于 FS-LASIK 和 TPRK 组,通过重复测量方差分析分析术后的 IOP 变化,并通过 Bland-Altman 分析检查一致性。使用基于有限元分析的人眼角膜三维模型,我们进一步比较了生理范围内的 M 比与真实眼压。

结果

在所有验证分析中,基于 M 比的 mIOP 与年龄、角膜曲率半径和中央角膜厚度(CCT)呈弱至可忽略的相关性,在屈光手术组中与生物力学校正眼压(bIOP)表现相当。两者术后基本保持不变,不受 CCT 变化的影响。此外,M 比在计算机模型中准确地代表了真实眼压。

结论

miOP 是健康人群和屈光手术后人群中可靠的眼压测量值。这种基于能量的、比值衍生的方法有效地过滤掉病理性、旋转性、未对准的运动,作为患者间的自我校准指标。角膜变形动力学的模态分析为压力加载下的区域性角膜反应提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b75d/10044385/c8c8d2dddebe/12886_2023_2867_Fig1_HTML.jpg

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