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通过纳米压痕测量的粘度与骨基质接触硬度和模量之间的关系。

Relationships of viscosity with contact hardness and modulus of bone matrix measured by nanoindentation.

作者信息

Kim Do-Gyoon, Huja Sarandeep S, Lee Hye Ri, Tee Boon Ching, Hueni Sarah

机构信息

Division of Orthodontics, College of Dentistry, The Ohio State University, Columbus, OH 43210, USA.

出版信息

J Biomech Eng. 2010 Feb;132(2):024502. doi: 10.1115/1.4000936.

Abstract

Creep is an active form of time-dependent viscoelastic deformation that occurs in bone tissue during daily life. Recent findings indicate bone mineralization, which is involved in determining the elastic and plastic properties of bone matrix, can also contribute in controlling its viscoelastic property. Nanoindentation viscosity was used as a direct measure for the capacity of a material to resist viscous-like flow under loading. The objectives of this study were to examine (1) whether the nanoindentation viscosity obtained using the traditional viscoelastic Voigt model can describe creep response of bone matrix and (2) how the nanoindentation viscosity is related to contact hardness and elastic modulus. The Voigt model accurately described the creep behavior of bone matrix (r(2)>0.96, p<0.001). The nanoindentation viscosity had strong relationships with nanoindentation contact hardness (r(2)=0.94, p<0.001) and modulus (r(2)=0.83, p<0.001) independent of tissue ages of osteonal bone matrix. The strong positive relationships of nanoindentation viscosity with contact hardness and modulus can be interpreted as increases in the mineral portion of bone matrix may limit the interfibril motion of collagen while enhancing the mechanical stability of bone. We suggest that previous nanoindentation results can be reanalyzed to characterize the viscoelastic creep using the Voigt model.

摘要

蠕变是一种随时间变化的粘弹性变形的主动形式,在日常生活中发生于骨组织。最近的研究结果表明,参与确定骨基质弹性和塑性特性的骨矿化,也有助于控制其粘弹性特性。纳米压痕粘度被用作材料在加载下抵抗粘性流动能力的直接度量。本研究的目的是检验:(1)使用传统粘弹性Voigt模型获得的纳米压痕粘度是否能描述骨基质的蠕变响应;(2)纳米压痕粘度与接触硬度和弹性模量之间的关系。Voigt模型准确地描述了骨基质的蠕变行为(r(2)>0.96,p<0.001)。纳米压痕粘度与纳米压痕接触硬度(r(2)=0.94,p<0.001)和模量(r(2)=0.83,p<0.001)有很强的相关性,与骨单位骨基质的组织年龄无关。纳米压痕粘度与接触硬度和模量之间的强正相关关系可以解释为,骨基质矿物质部分的增加可能会限制胶原蛋白的原纤维间运动,同时增强骨的机械稳定性。我们建议,可以使用Voigt模型重新分析以前的纳米压痕结果,以表征粘弹性蠕变。

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