Burgoyne Claude F, Downs J Crawford, Bellezza Anthony J, Suh J-K Francis, Hart Richard T
LSU Eye Center, Louisiana State University Health Sciences Center, 2020 Gravier Street, Suite B, New Orleans, LA 70112, USA.
Prog Retin Eye Res. 2005 Jan;24(1):39-73. doi: 10.1016/j.preteyeres.2004.06.001.
We propose here a conceptual framework for understanding the optic nerve head (ONH) as a biomechanical structure. Basic principles of biomechanical engineering are used to propose a central role for intraocular pressure (IOP)-related stress and strain in the physiology of ONH aging and the pathophysiology of glaucomatous damage. Our paradigm suggests that IOP-related stress and strain (1) are substantial within the load-bearing connective tissues of the ONH even at low levels of IOP and (2) underlie both ONH aging and the two central pathophysiologies of glaucomatous damage--mechanical failure of the connective tissues of the lamina cribrosa, scleral canal wall, and peripapillary sclera, and axonal compromise within the lamina cribrosa by a variety of mechanisms. Modeling the ONH as a biomechanical structure generates a group of testable hypotheses regarding the central mechanisms of glaucomatous damage and provides a logic for classifying the principal components of the susceptibility of an individual ONH to a given level of IOP.
我们在此提出一个概念框架,用于将视神经乳头(ONH)理解为一种生物力学结构。生物力学工程的基本原理被用于提出眼内压(IOP)相关应力和应变在ONH衰老生理学和青光眼性损伤病理生理学中的核心作用。我们的范例表明,IOP相关应力和应变(1)即使在低眼压水平下,在ONH的承重结缔组织中也很显著,并且(2)是ONH衰老以及青光眼性损伤的两个核心病理生理学的基础——筛板、巩膜管管壁和视乳头周围巩膜结缔组织的机械性破坏,以及筛板内多种机制导致的轴突受损。将ONH建模为生物力学结构会产生一组关于青光眼性损伤核心机制的可测试假设,并为将个体ONH对给定眼压水平易感性的主要成分进行分类提供了逻辑依据。