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使用二次谐波生成成像和双轴测试对人类半月板进行区域和层特异性研究。

Region- and layer-specific investigations of the human menisci using SHG imaging and biaxial testing.

作者信息

Rasheed Bismi, Ayyalasomayajula Venkat, Schaarschmidt Ute, Vagstad Terje, Schaathun Hans Georg

机构信息

Cyber-Physical Systems Laboratory, Department of ICT and Natural Sciences, Norwegian University of Science and Technology (NTNU), Ålesund, Norway.

Ålesund Biomechanics Lab, Ålesund General Hospital, Møre and Romsdal Hospital Trust, Ålesund, Norway.

出版信息

Front Bioeng Biotechnol. 2023 Apr 18;11:1167427. doi: 10.3389/fbioe.2023.1167427. eCollection 2023.

Abstract

In this paper, we examine the region- and layer-specific collagen fiber morphology via second harmonic generation (SHG) in combination with planar biaxial tension testing to suggest a structure-based constitutive model for the human meniscal tissue. Five lateral and four medial menisci were utilized, with samples excised across the thickness from the anterior, mid-body, and posterior regions of each meniscus. An optical clearing protocol enhanced the scan depth. SHG imaging revealed that the top samples consisted of randomly oriented fibers with a mean fiber orientation of 43.3 . The bottom samples were dominated by circumferentially organized fibers, with a mean orientation of 9.5 . Biaxial testing revealed a clear anisotropic response, with the circumferential direction being stiffer than the radial direction. The bottom samples from the anterior region of the medial menisci exhibited higher circumferential elastic modulus with a mean value of 21 MPa. The data from the two testing protocols were combined to characterize the tissue with an anisotropic hyperelastic material model based on the generalized structure tensor approach. The model showed good agreement in representing the material anisotropy with a mean = 0.92.

摘要

在本文中,我们通过二次谐波产生(SHG)结合平面双轴拉伸试验来研究区域和层特异性胶原纤维形态,以提出一种基于结构的人半月板组织本构模型。使用了五个外侧半月板和四个内侧半月板,从每个半月板的前部、中部和后部区域沿厚度方向切取样本。一种光学清除方案提高了扫描深度。SHG成像显示,顶部样本由随机取向的纤维组成,平均纤维取向为43.3°。底部样本以周向排列的纤维为主,平均取向为9.5°。双轴试验显示出明显的各向异性响应,周向方向比径向方向更硬。内侧半月板前部区域的底部样本表现出更高的周向弹性模量,平均值为21MPa。将两种测试方案的数据结合起来,用基于广义结构张量方法的各向异性超弹性材料模型来表征该组织。该模型在表示材料各向异性方面表现出良好的一致性,平均R² = 0.92。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e762/10151675/158fb2cd552a/fbioe-11-1167427-g001.jpg

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