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人类升主动脉瘤的区域生物力学特征:微观结构与双轴力学响应

Regional biomechanical characterization of human ascending aortic aneurysms: Microstructure and biaxial mechanical response.

作者信息

Cosentino Federica, Sherifova Selda, Sommer Gerhard, Raffa Giuseppe, Pilato Michele, Pasta Salvatore, Holzapfel Gerhard A

机构信息

Ri.MED Foundation, Palermo, Italy; Department of Engineering, University of Palermo, Italy.

Institute of Biomechanics, Graz University of Technology, Austria.

出版信息

Acta Biomater. 2023 Oct 1;169:107-117. doi: 10.1016/j.actbio.2023.08.016. Epub 2023 Aug 12.

Abstract

The ascending thoracic aortic aneurysm (ATAA) is a permanent dilatation of the vessel with a high risk of adverse events, and shows heterogeneous properties. To investigate regional differences in the biomechanical properties of ATAAs, tissue samples were collected from 10 patients with tricuspid aortic valve phenotype and specimens from minor, anterior, major, and posterior regions were subjected to multi-ratio planar biaxial extension tests and second-harmonic generation (SHG) imaging. Using the data, parameters of a microstructure-motivated constitutive model were obtained considering fiber dispersion. SHG imaging showed disruptions in the organization of the layers. Structural and material parameters did not differ significantly between regions. The non-symmetric fiber dispersion model proposed by Holzapfel et al. [25] was used to fit the data. The mean angle of collagen fibers was negatively correlated between minor and anterior regions, and the parameter associated with collagen fiber stiffness was positively correlated between minor and major regions. Furthermore, correlations were found between the stiffness of the ground matrix and the mean fiber angle, and between the parameter associated with the collagen fiber stiffness and the out-of-plane dispersion parameter in the posterior and minor regions, respectively. The experimental data collected in this study contribute to the biomechanical data available in the literature on human ATAAs. Region-specific parameters for the constitutive models are fundamental to improve the current risk stratification strategies, which are mainly based on aortic size. Such investigations can facilitate the development of more advanced finite element models capable of capturing the regional heterogeneity of pathological tissues. STATEMENT OF SIGNIFICANCE: Tissue samples of human ascending thoracic aortic aneurysms (ATAA) were collected. Samples from four regions underwent multi-ratio planar biaxial extension tests and second-harmonic generation imaging. Region-specific parameters of a microstructure-motivated model considering fiber dispersion were obtained. Structural and material parameters did not differ significantly between regions, however, the mean fiber angle was negatively correlated between minor and anterior regions, and the parameter associated with collagen fiber stiffness was positively correlated between minor and major regions. Furthermore, correlations were found between the stiffness of the ground matrix and the mean fiber angle, and between the parameter associated with the collagen fiber stiffness and the out-of-plane dispersion parameter in the posterior and minor regions, respectively. This study provides a unique set of mechanical and structural data, supporting the microstructural influence on the tissue response. It may facilitate the development of better finite element models capable of capturing the regional tissue heterogeneity.

摘要

升主动脉瘤(ATAA)是一种血管的永久性扩张,具有发生不良事件的高风险,并且表现出异质性。为了研究ATAA生物力学特性的区域差异,从10例三尖瓣主动脉瓣表型患者中采集组织样本,并对来自较小、前部、较大和后部区域的标本进行多比例平面双轴拉伸试验和二次谐波产生(SHG)成像。利用这些数据,考虑纤维分散情况获得了微观结构驱动的本构模型的参数。SHG成像显示层的组织结构遭到破坏。各区域之间的结构和材料参数没有显著差异。采用Holzapfel等人[25]提出的非对称纤维分散模型对数据进行拟合。较小区域和前部区域之间胶原纤维的平均角度呈负相关,较小区域和较大区域之间与胶原纤维刚度相关的参数呈正相关。此外,分别在后侧区域和较小区域发现了基底刚度与平均纤维角度之间以及与胶原纤维刚度相关的参数与平面外分散参数之间的相关性。本研究收集的实验数据为文献中关于人类ATAA的生物力学数据做出了贡献。本构模型的区域特异性参数对于改进目前主要基于主动脉大小的风险分层策略至关重要。此类研究有助于开发能够捕捉病理组织区域异质性的更先进有限元模型。

意义声明

采集了人类升主动脉瘤(ATAA)的组织样本。来自四个区域的样本进行了多比例平面双轴拉伸试验和二次谐波产生成像。获得了考虑纤维分散的微观结构驱动模型的区域特异性参数。各区域之间的结构和材料参数没有显著差异,然而,较小区域和前部区域之间的平均纤维角度呈负相关,较小区域和较大区域之间与胶原纤维刚度相关的参数呈正相关。此外,分别在后侧区域和较小区域发现了基底刚度与平均纤维角度之间以及与胶原纤维刚度相关的参数与平面外分散参数之间的相关性。本研究提供了一组独特的力学和结构数据,支持微观结构对组织反应的影响。它可能有助于开发能够捕捉区域组织异质性的更好的有限元模型。

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