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Compositional and mechanical properties of growing cortical bone tissue: a study of the human fibula

机译:生长皮质骨组织的成分和力学性能:对人腓骨的研究

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Human cortical bone contains two types of tissue: osteonal and interstitial tissue. Growing bone is not well-known in terms of its intrinsic material properties. To date, distinctions between the mechanical properties of osteonal and interstitial regions have not been investigated in juvenile bone and compared to adult bone in a combined dataset. In this work, cortical bone samples obtained from fibulae of 13 juveniles patients (4 to 18 years old) during corrective surgery and from 17 adult donors (50 to 95 years old) were analyzed. Microindentation was used to assess the mechanical properties of the extracellular matrix, quantitative microradiography was used to measure the degree of bone mineralization (DMB), and Fourier transform infrared microspectroscopy was used to evaluate the physicochemical modifications of bone composition (organic versus mineral matrix). Juvenile and adult osteonal and interstitial regions were analyzed for DMB, crystallinity, mineral to organic matrix ratio, mineral maturity, collagen maturity, carbonation, indentation modulus, indicators of yield strain and tissue ductility using a mixed model. We found that the intrinsic properties of the juvenile bone were not all inferior to those of the adult bone. Mechanical properties were also differently explained in juvenile and adult groups. The study shows that different intrinsic properties should be used in case of juvenile bone investigation.
机译:人皮质骨含有两种类型的组织:骨髓和间质组织。在其内在材料特性方面,生长骨骼尚不清楚。迄今为止,在少年骨中未研究过骨和间隙区域的机械性能之间的区别,并与组合数据集中的成人骨骼相比。在这项工作中,在矫正手术中的13名青少年患者(4至18岁)和17名成人供体(50至95岁)中获得的皮质骨样品(4至18岁)分析。微基因用于评估细胞外基质的机械性能,定量微孔造影用于测量骨矿化程度(DMB),并且使用傅里叶变换红外微型光谱检查来评估骨组合物的物理化学修饰(有机与矿物基质)。对DMB,结晶性,矿物质与有机基质比,矿物成熟度,胶原成熟度,碳化,缩进模量,使用混合模型的药物菌株和组织延展性的矿物成熟度,矿物质,矿物质的矿物质分析。我们发现幼年骨的内在特性并不差不等于成年骨的特性。在少年和成年组中也有不同的解释机械性能。该研究表明,在少年骨骼调查的情况下应该使用不同的内在性质。

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