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人肋软骨各向异性和年龄相关的弹性材料行为。

Anisotropic and age-dependent elastic material behavior of the human costal cartilage.

机构信息

Institute of Legal Medicine, Faculty of Medicine, University of Cologne, 50823, Cologne, Germany.

Institute for Forensic Sciences, Landeskriminalamt Nordrhein-Westfalen, 40219, Düsseldorf, Germany.

出版信息

Sci Rep. 2021 Jun 30;11(1):13618. doi: 10.1038/s41598-021-93176-x.

Abstract

Compared to articular cartilage, the biomechanical properties of costal cartilage have not yet been extensively explored. The research presented addresses this problem by studying for the first time the anisotropic elastic behavior of human costal cartilage. Samples were taken from 12 male and female cadavers and unconfined compression and indentation tests were performed in mediolateral and dorsoventral direction to determine Young's Moduli E for compression and E, E and E at 5%, 10% and maximum strain for indentation. Furthermore, the crack direction of the unconfined compression samples was determined and histological samples of the cartilage tissue were examined with the picrosirius-polarization staining method. The tests revealed mean Young's Moduli of E = 32.9 ± 17.9 MPa (N = 10), E = 11.1 ± 5.6 MPa (N = 12), E = 13.3 ± 6.3 MPa (N = 12) and E = 14.6 ± 6.6 MPa (N = 12). We found that the Young's Moduli in the indentation test are clearly anisotropic with significant higher results in the mediolateral direction (all P = 0.002). In addition, a dependence of the crack direction of the compressed specimens on the load orientation was observed. Those findings were supported by the orientation of the structure of the collagen fibers determined in the histological examination. Also, a significant age-related elastic behavior of human costal cartilage could be shown with the unconfined compression test (P = 0.009) and the indentation test (P = 0.004), but no sex effect could be detected. Those results are helpful in the field of autologous grafts for rhinoplastic surgery and for the refinement of material parameters in Finite Element models e.g., for accident analyses with traumatic impact on the thorax.

摘要

与关节软骨相比,肋软骨的生物力学特性尚未得到广泛研究。本研究首次研究了人肋软骨的各向异性弹性行为,旨在解决这一问题。从 12 具男性和女性尸体中采集样本,并在侧向和背侧方向进行无约束压缩和压痕试验,以确定压缩时的杨氏模量 E 和 E ,压痕时的 5%、10%和最大应变处的杨氏模量 E 、 E 和 E 。此外,还确定了无约束压缩样品的裂纹方向,并通过番红固绿偏振染色法对软骨组织的组织样本进行了检查。试验结果表明,E 的平均杨氏模量为 32.9 ± 17.9 MPa(N = 10),E 为 11.1 ± 5.6 MPa(N = 12),E 为 13.3 ± 6.3 MPa(N = 12),E 为 14.6 ± 6.6 MPa(N = 12)。我们发现,压痕试验中的杨氏模量明显具有各向异性,侧向方向的结果明显更高(所有 P 值均为 0.002)。此外,还观察到压缩试件的裂纹方向与载荷方向有关。这些发现得到了组织学检查中确定的胶原纤维结构取向的支持。此外,还可以通过无约束压缩试验(P = 0.009)和压痕试验(P = 0.004)显示人肋软骨的弹性与年龄有关,但未检测到性别影响。这些结果有助于鼻整形术中的自体移植物领域,并有助于改进有限元模型中的材料参数,例如,用于胸部创伤性冲击的事故分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6c9/8245550/dcf1df52f0f2/41598_2021_93176_Fig1_HTML.jpg

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