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三维光声成像和应变场计算分析水性静脉和角膜缘巩膜的生物力学方法。

Method for the biomechanical analysis of aqueous veins and perilimbal sclera by three-dimensional photoacoustic imaging and strain field calculation.

机构信息

Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI, 48109, USA.

Department of Mechanical Engineering, University of Michigan-Dearborn, 4901 Evergreen Road, Dearborn, MI, 48128, USA.

出版信息

Sci Rep. 2021 Nov 11;11(1):22108. doi: 10.1038/s41598-021-01458-1.

Abstract

A method motivated by the eye's aqueous veins is described for the imaging and strain calculation within soft biological tissues. A challenge to the investigation of the biomechanics of the aqueous vein-perilimbal sclera tissue complex is resolution of tissue deformations as a function of intraocular pressure and the subsequent calculation of strain (a normalized measure of deformation). The method involves perfusion of the eye with a contrast agent during conduction of non-invasive, optical resolution photoacoustic microscopy. This imaging technique permits three-dimensional displacement measurements of tracked points on the inner walls of the veins which are used in a finite element model to determine the corresponding strains. The methods are validated against two standard strain measurement methods. Representative porcine globe perfusion experiments are presented that demonstrate the power of the method to determine complex strain fields in the veins dependent on intraocular pressure as well as vein anatomy. In these cases, veins are observed to move radially outward during increases in intraocular pressure and to possess significant spatial strain variation, possibly influenced by their branching patterns. To the authors' knowledge, these are the only such quantitative, data driven, calculations of the aqueous vein strains available in the open literature.

摘要

一种受眼球房水静脉启发的方法被描述用于在软生物组织中进行成像和应变计算。挑战在于研究房水静脉-角膜缘巩膜组织复合体的生物力学,需要解决组织变形作为眼内压的函数的问题,并随后计算应变(变形的归一化度量)。该方法涉及在进行非侵入性、光学分辨率光声显微镜检查期间用对比剂灌注眼睛。这种成像技术允许对静脉内壁上的跟踪点进行三维位移测量,这些测量点用于有限元模型中以确定相应的应变。该方法通过两种标准应变测量方法进行了验证。提出了代表性的猪眼球灌注实验,证明了该方法在确定依赖于眼内压和静脉解剖结构的静脉中复杂应变场的能力。在这些情况下,观察到静脉在眼内压增加时向外径向移动,并具有显著的空间应变变化,这可能受到其分支模式的影响。据作者所知,这些是在开放文献中可获得的唯一定量、数据驱动的房水静脉应变计算。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97ec/8585983/7cb43e1358e6/41598_2021_1458_Fig1_HTML.jpg

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