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通过断裂试验研究人眼角膜的微观结构失效。

Investigation of microstructural failure in the human cornea through fracture tests.

机构信息

Department of Mechanical and Aerospace Engineering, Indian Institute of Technology Hyderabad (IIT Hyderabad), Hyderabad, India.

Department of Mechanical and Product Design Engineering, Swinburne University of Technology, Melbourne, Australia.

出版信息

Sci Rep. 2023 Aug 24;13(1):13876. doi: 10.1038/s41598-023-40286-3.

Abstract

Fracture toughness of the human cornea is one of the critical parameters in suture-involved corneal surgeries and the development of bioengineered mimetics of the human cornea. The present article systematically studied the fracture characteristics of the human cornea to evaluate its resistance to tear in the opening (Mode-I) and trouser tear mode (Mode-III). Tear experiments reveal the dependency of the fracture behavior on the notch size and its location created in the corneal specimens. The findings indicate lamellar tear and collagen fiber pull-out as a failure mechanism in trouser tear and opening mode tests, respectively. Experimental results have shown a localized variation of tear behavior in trouser tear mode and indicated an increasing resistance to tear from the corneal center to the periphery. This article demonstrated the complications of evaluating fracture toughness in opening mode and showed that the limbus was weaker than the cornea and sclera against tearing. The overall outcomes of the present study help in designing experiments to understand the toughness of the diseased tissues, understanding the effect of the suturing location and donor placement, and creating numerical models to study parameters affecting corneal replacement surgery.

摘要

人眼角膜的断裂韧性是涉及缝线的角膜手术和人眼角膜生物工程模拟物开发的关键参数之一。本文系统地研究了人眼角膜的断裂特性,以评估其在开口撕裂(模式 I)和裤型撕裂模式(模式 III)下抵抗撕裂的能力。撕裂实验表明,断裂行为取决于在角膜标本中产生的缺口尺寸及其位置。研究结果表明,在裤型撕裂和开口模式测试中,分层撕裂和胶原纤维拔出分别是失效的机制。实验结果表明,裤型撕裂模式下撕裂行为存在局部变化,并表明从角膜中心到周边撕裂阻力逐渐增加。本文证明了在开口模式下评估断裂韧性的复杂性,并表明与撕裂相比,角膜缘比角膜和巩膜脆弱。本研究的总体结果有助于设计实验以了解病变组织的韧性,了解缝线位置和供体放置的影响,并创建数值模型以研究影响角膜置换手术的参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8985/10449857/2d12681d1118/41598_2023_40286_Fig1_HTML.jpg

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