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Brillouin spectroscopy and radiography for assessment of viscoelastic and regenerative properties of mammalian bones

机译:Brillouin光谱和射线照相用于评估哺乳动物骨骼的粘弹性和再生性能

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摘要

Biomechanical properties of mammalian bones, such as strength, toughness, and plasticity, are essential for understanding how microscopic-scale mechanical features can link to macroscale bones’ strength and fracture resistance. We employ Brillouin light scattering (BLS) microspectroscopy for local assessment of elastic properties of bones under compression and the efficacy of the tissue engineering approach based on heparin-conjugated fibrin (HCF) hydrogels, bone morphogenic proteins, and osteogenic stem cells in the regeneration of the bone tissues. BLS is noninvasive and label-free modality for probing viscoelastic properties of tissues that can give information on structure-function properties of normal and pathological tissues. Results showed that MCS and BPMs are critically important for regeneration of elastic and viscous properties, respectively, HCF gels containing combination of all factors had the best effect with complete defect regeneration at week nine after the implantation of bone grafts and that the bones with fully consolidated fractures have higher values of elastic moduli compared with defective bones.
机译:哺乳动物骨骼的生物力学性质,如强度,韧性和可塑性,对于了解微观尺度的机械特征可以链接到宏观骨骼的强度和断裂抗性是必不可少的。我们采用Brillouin光散射(BLS)微型光谱检查,以便在压缩下局部评估骨骼的弹性性质,以及基于肝素 - 缀合的纤维蛋白(HCF)水凝胶,骨形态发生蛋白质的组织工程方法的功效,在再生中的骨质形成蛋白和骨质发生干细胞骨组织。 BLS是无侵入性的和无标记的模态,用于探测组织的粘弹性性能,可以提供关于正常和病理组织的结构功能性质的信息。结果表明,MCS和BPMS对于弹性和粘性特性的再生至关重要,分别含有所有因子组合的HCF凝胶在九个植入骨移植后与完全缺陷再生具有最佳效果,并且骨骼完全合并与缺陷的骨骼相比,骨折具有更高的弹性模量。

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