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赤道巩膜胶原束拉伸诱导的解卷曲。

Stretch-Induced Uncrimping of Equatorial Sclera Collagen Bundles.

机构信息

Department of Ophthalmology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15213; Department of Bioengineering, Swanson School of Engineering, University of Pittsburgh, Pittsburgh, PA 15213.

Department of Ophthalmology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15213.

出版信息

J Biomech Eng. 2023 May 1;145(5). doi: 10.1115/1.4056354.

Abstract

Stretch-induced collagen uncrimping underlies the nonlinear mechanical behavior of the sclera according to what is often called the process of recruitment. We recently reported experimental measurements of sclera collagen crimp and pressure-induced uncrimping. Our studies, however, were cross-sectional, providing statistical descriptions of crimp with no information on the effects of stretch on specific collagen bundles. Data on bundle-specific uncrimping is necessary to better understand the effects of macroscale input on the collagen microscale and tissue failure. Our goal in this project was to measure bundle-specific stretch-induced collagen uncrimping of sclera. Three goat eyes were cryosectioned sagittally (30 μm). Samples of equatorial sclera were isolated, mounted to a custom uni-axial stretcher and imaged with polarized light microscopy at various levels of clamp-to-clamp stretch until failure. At each stretch level, local strain was measured using image tracking techniques. The level of collagen crimping was determined from the bundle waviness, defined as the circular standard deviation of fiber orientation along a bundle. Eye-specific recruitment curves were then computed using eye-specific waviness at maximum stretch before sample failure to define fibers as recruited. Nonlinear mixed effect models were used to determine the associations of waviness to local strain and recruitment to clamp-to-clamp stretch. Waviness decreased exponentially with local strain (p < 0.001), whereas bundle recruitment followed a sigmoidal curve with clamp-to-clamp stretch (p < 0.001). Individual bundle responses to stretch varied substantially, but recruitment curves were similar across sections and eyes. In conclusion, uni-axial stretch caused measurable bundle-specific uncrimping, with the sigmoidal recruitment pattern characteristic of fiber-reinforced soft tissues.

摘要

拉伸诱导的胶原解卷曲是巩膜非线性力学行为的基础,这通常被称为募集过程。我们最近报道了巩膜胶原卷曲和压力诱导解卷曲的实验测量。然而,我们的研究是横截面的,提供了卷曲的统计描述,而没有关于拉伸对特定胶原束影响的信息。关于束特异性解卷曲的数据对于更好地了解宏观输入对胶原微观结构和组织失效的影响是必要的。我们在这个项目中的目标是测量巩膜的束特异性拉伸诱导胶原解卷曲。三个山羊眼睛被矢状冷冻切片(30μm)。赤道巩膜的样本被分离出来,安装在一个定制的单轴拉伸器上,并在不同的夹到夹拉伸水平下用偏光显微镜进行成像,直到失效。在每个拉伸水平下,使用图像跟踪技术测量局部应变。从束波纹度确定胶原卷曲程度,定义为纤维方向在束上的圆形标准偏差。然后使用最大拉伸前眼特异性波纹度计算眼特异性募集曲线,以在样本失效之前定义募集的纤维。使用非线性混合效应模型确定波纹度与局部应变和募集与夹到夹拉伸的关联。波纹度随局部应变呈指数下降(p<0.001),而束募集随夹到夹拉伸呈 S 形曲线(p<0.001)。各束对拉伸的反应差异很大,但募集曲线在各部分和各眼之间相似。总之,单轴拉伸导致可测量的束特异性解卷曲,其募集模式呈 S 形,这是纤维增强软组织的特征。

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