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通过应力应变指数图和布里渊显微镜进行角膜硬度测绘

Corneal Stiffness Mapping by the Stress-Strain Index Maps and Brillouin Microscopy.

作者信息

Lopes Bernardo T, Elsheikh Ahmed

机构信息

School of Engineering, University of Liverpool, Liverpool, UK.

Department of Ophthalmology, Federal University of São Paulo, São Paulo, Brazil.

出版信息

Curr Eye Res. 2023 Feb;48(2):114-120. doi: 10.1080/02713683.2022.2081979. Epub 2022 May 30.

Abstract

The study of corneal stiffness has numerous clinical applications such as the measurement of intraocular pressure, the preoperative screening for iatrogenic ectasia after laser vision correction surgery and the diagnosis and treatment of corneal ectatic diseases such as keratoconus. The localised aspect of the microstructure deterioration in keratoconus leading to local biomechanical softening, corneal bulging, irregular astigmatism and ultimately loss of vision boosted the need to map the corneal stiffness to identify the regional biomechanical failure. Currently, two methods to map the corneal stiffness are integrated into devices that are either already commercially available or about to be commercialised: the stress-strain index (SSI) maps and the Brillouin Microscopy (BM). The former method produces 2D map of stiffness across the corneal surface, developed through numerical simulations using the corneal shape, its microstructure content, and the deformation behaviour under air-puff excitation. It estimates the whole stress-strain behaviour, making it possible to obtain the material tangent modulus under different intraocular pressure levels. On the other hand, BM produces a 3D map of the corneal longitudinal modulus across the corneal surface and thickness. It uses a low-power near-infrared laser beam and through a spectral analysis of the returned signal, it assesses the mechanical compressibility of the tissue as measured by the longitudinal modulus. In this paper, these two techniques are reviewed, and their advantages and limitations discussed.

摘要

角膜硬度的研究具有众多临床应用,例如眼压测量、激光视力矫正手术后医源性扩张的术前筛查以及圆锥角膜等角膜扩张性疾病的诊断和治疗。圆锥角膜中微观结构恶化的局部特征会导致局部生物力学软化、角膜膨出、不规则散光并最终导致视力丧失,这促使人们需要绘制角膜硬度图以识别区域生物力学故障。目前,有两种绘制角膜硬度图的方法已被集成到已上市或即将商业化的设备中:应力应变指数(SSI)图和布里渊显微镜(BM)。前一种方法通过使用角膜形状、其微观结构成分以及在吹气激发下的变形行为进行数值模拟,生成角膜表面硬度的二维图。它估计了整个应力应变行为,从而能够在不同眼压水平下获得材料切线模量。另一方面,BM生成角膜表面和厚度上角膜纵向模量的三维图。它使用低功率近红外激光束,并通过对返回信号的光谱分析,评估由纵向模量测量的组织机械压缩性。本文对这两种技术进行了综述,并讨论了它们的优缺点。

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