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考虑个体层次的人类神经颅机械特性的地形测绘。

Topographical mapping of the mechanical characteristics of the human neurocranium considering the role of individual layers.

机构信息

Department of Anatomy, University of Otago, Dunedin, New Zealand.

Institute of Legal Medicine, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.

出版信息

Sci Rep. 2021 Feb 12;11(1):3721. doi: 10.1038/s41598-020-80548-y.

Abstract

The site-dependent load-deformation behavior of the human neurocranium and the load dissipation within the three-layered composite is not well understood. This study mechanically investigated 257 human frontal, temporal, parietal and occipital neurocranial bone samples at an age range of 2 to 94 years, using three-point bending tests. Samples were tested as full-thickness three-layered composites, as well as separated with both diploë attached and removed. Right temporal samples were the thinnest samples of all tested regions (median < 5 mm; p < 0.001) and withstood lowest failure loads (median < 762 N; p < 0.001). Outer tables were thicker and showed higher failure loads (median 2.4 mm; median 264 N) than inner tables (median 1.7 mm, p < 0.001; median 132 N, p = 0.003). The presence of diploë attached to outer and inner tables led to a significant reduction in bending strength (with diploë: median < 60 MPa; without diploë: median > 90 MPa, p < 0.001). Composites (r = 0.243, p = 0.011) and inner tables with attached diploë (r = 0.214, p = 0.032) revealed positive correlations between sample thickness and age. The three-layered composite is four times more load-resistant compared to the outer table and eight times more compared to the inner table.

摘要

人类颅神经的部位依赖性负荷-变形行为以及三层复合结构内的负荷耗散情况尚不清楚。本研究使用三点弯曲试验对 257 个人类额骨、颞骨、顶骨和枕骨神经颅骨样本进行了机械研究,年龄范围为 2 至 94 岁。样本作为全厚三层复合材料进行测试,以及同时附着和去除板障的情况下进行测试。右颞部样本是所有测试区域中最薄的样本(中位数<5mm;p<0.001),且承受的失效负荷最低(中位数<762N;p<0.001)。外板较厚,且显示出更高的失效负荷(中位数 2.4mm;中位数 264N),高于内板(中位数 1.7mm,p<0.001;中位数 132N,p=0.003)。外板和内板附着板障会显著降低弯曲强度(有板障:中位数<60MPa;无板障:中位数>90MPa,p<0.001)。复合材料(r=0.243,p=0.011)和附着板障的内板(r=0.214,p=0.032)显示样本厚度与年龄之间呈正相关。与外板相比,三层复合材料的负荷阻力增加了四倍,与内板相比,负荷阻力增加了八倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b301/7881109/98409fad245b/41598_2020_80548_Fig1_HTML.jpg

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