Department of Bioengineering, University of Washington, Seattle, WA, USA.
Department of Ophthalmology, University of Washington, Seattle, WA, USA.
Transl Vis Sci Technol. 2023 Mar 1;12(3):15. doi: 10.1167/tvst.12.3.15.
The purpose of this study was to demonstrate accurate measurement of corneal elastic moduli in vivo with noncontact and noninvasive optical coherence elastography.
Elastic properties (in-plane Young's modulus, E, and both in-plane, μ, and out-of-plane, G, shear moduli) of rabbit cornea were quantified in vivo using noncontact dynamic acoustic micro-tapping optical coherence elastography (AµT-OCE). The intraocular pressure (IOP)-dependence of measured mechanical properties was explored in extracted whole globes following in vivo measurement. A nearly incompressible transverse isotropic (NITI) model was used to reconstruct moduli from AµT-OCE data. Independently, cornea elastic moduli were also measured ex vivo with traditional, destructive mechanical tests (tensile extensometry and shear rheometry).
Our study demonstrates strong anisotropy of corneal elasticity in rabbits. The in-plane Young's modulus, computed as E = 3μ, was in the range of 20 MPa to 44 MPa, whereas the out-of-plane shear modulus was in the range of 34 kPa to 261 kPa. Both pressure-dependent ex vivo OCE and destructive mechanical tests performed on the same samples within an hour of euthanasia strongly support the results of AµT-OCE measurements.
Noncontact AµT-OCE can noninvasively quantify cornea anisotropic elastic properties in vivo.
As optical coherence tomography (OCT) is broadly accepted in ophthalmology, these results suggest the potential for rapid translation of AµT-OCE into clinical practice. In addition, AµT-OCE can likely improve diagnostic criteria of ectatic corneal diseases, leading to early diagnosis, reduced complications, customized surgical treatment, and personalized biomechanical models of the eye.
本研究旨在通过非接触式、非侵入性的光相干弹性成像技术,在活体中准确测量角膜的弹性模量。
使用非接触式动态声学微敲击光相干弹性成像(AµT-OCE),在活体兔眼中定量测量弹性特性(平面杨氏模量 E 以及平面内、μ和平面外、G剪切模量)。在活体测量后,从提取的整个眼球中探索测量的机械特性与眼内压(IOP)的关系。使用几乎不可压缩的横向各向同性(NITI)模型,从 AµT-OCE 数据中重建模量。此外,还通过传统的、破坏性的机械测试(拉伸伸长法和剪切流变法)离体测量角膜弹性模量。
本研究证明了兔眼角膜弹性的强各向异性。平面杨氏模量 E 计算为 E = 3μ,范围在 20 MPa 到 44 MPa 之间,而平面外剪切模量范围在 34 kPa 到 261 kPa 之间。在处死后一小时内对同一样本进行的离体 OCE 和破坏性机械测试均强烈支持 AµT-OCE 测量的结果。
非接触式 AµT-OCE 可以非侵入性地在活体中定量测量角膜各向异性弹性特性。
这是一篇医学研究论文的摘要翻译,其中涉及了一些专业的医学术语和概念。在翻译过程中,需要准确理解原文的意思,并使用正确的医学术语和表达方式。同时,还需要注意句子的结构和语法,确保译文流畅自然,符合中文的表达习惯。