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首页> 外文期刊>Communications in Numerical Methods in Engineering >Textural versus electrostatic exclusion-enrichment effects in the effective chemical transport within the cortical bone: A numerical investigation
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Textural versus electrostatic exclusion-enrichment effects in the effective chemical transport within the cortical bone: A numerical investigation

机译:皮质骨内有效化学物质传输中的纹理与静电排斥-富集效应:数值研究

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摘要

Interstitial fluid within bone tissue is known to govern the remodelling signals' expression. Bone fluid flow is generated by skeleton deformation during the daily activities. Due to the presence of charged surfaces in the bone porous matrix, the electrochemical phenomena occurring in the vicinity of mechanosensitive bone cells, the osteocytes, are key elements in the cellular communication. In this study, a multiscale model of interstitial fluid transport within bone tissues is proposed. Based on an asymptotic homogenization method, our modelling takes into account the physicochemical properties of bone tissue. Thanks to this multiphysical approach, the transport of nutrients and waste between the blood vessels and the bone cells can be quantified to better understand the mechanotransduction of bone remodelling. In particular, it is shown that the electrochemical tortuosity may have stronger implications in the mass transport within the bone than the purely morphological one.
机译:已知骨组织内的间质液控制着重塑信号的表达。在日常活动中,骨骼的变形会产生骨骼液流。由于骨多孔基质中存在带电表面,因此在机械敏感性骨细胞(骨细胞)附近发生的电化学现象是细胞通讯的关键因素。在这项研究中,提出了在骨组织内组织间质液体运输的多尺度模型。基于渐近均匀化方法,我们的建模考虑了骨组织的理化特性。由于采用了这种多物理场的方法,因此可以量化养分和废物在血管和骨细胞之间的传输,从而更好地了解骨骼重塑的机械传导。尤其是,已表明,相比于纯粹的形态学,电化学曲折度对骨骼内的物质传输可能具有更强的影响。

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