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首页> 外文期刊>Nature reviews Cancer >THEORETICAL ANALYSIS OF THE LEAKAGE THROUGH THE CEMENT LINE OF A SINGLE OSTEON
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THEORETICAL ANALYSIS OF THE LEAKAGE THROUGH THE CEMENT LINE OF A SINGLE OSTEON

机译:单岩水泥线泄漏的理论分析

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This work focuses on the Lacunar-Canalicular Porosity (PLC) of cortical bone which includes the osteons. Osteons are semicylindrical porous structures saturated with fluid within the bone and are approximately 250 mu m in diameter. The outer boundary of the osteon is called the cement line. Some studies suggested that the cement line is less highly mineralized and produced evidence that it has less calcium and phosphorus and more sulfur than the neighboring bone lamellae. Most authors assume that the cement line is impermeable, while others assume that some canaliculi are crossing the cement line which will make it permeable to certain degree. The objective of this work is to develop a theoretical analysis to study the leakage through the cement line and its relationship with the pore pressure distribution. The theoretical analysis is developed using our previous analysis for osteon under harmonic loading with addition of leakage parameter. The leakage parameter varies from 0 to 1, where a value of 0 indicates free flow through the cement line and a value of 1 indicates no flow through the cement line. Experimental results could be compared to this developed theoretical solution to get in depth understanding of the effect of leakage on osteon poroelastic properties. Additionally, the developed theoretical solution will give insight into sensitivity of osteon pore pressure to leakage through the cement line.
机译:这项工作侧重于包括骨膜的皮质骨的瓣膜穴位(PLC)。骨骨是饱和骨内的流体饱和的圆锥多孔结构,直径约为250μm。重构的外边界称为水泥生产线。一些研究表明,水泥生产线的高度矿化和产生的证据表明它具有比邻近的骨薄片更少的钙和磷,更含硫。大多数作者假设水泥生产线是不可渗透的,而其他作者则假设一些Canaliculi正在穿过水泥生产线,这将使其能够在一定程度上使其能够使其能够使其能够使其能够在一定程度上使其能够使其能够使其能够在一定程度上使其能够使其能够使其能够使其能够在一定程度上使其能够使其能够使其成为某些程度。这项工作的目的是制定理论分析,以研究通过水泥生产线的泄漏及其与孔隙压力分布的关系。通过添加泄漏参数,利用我们之前的谐波分析开发了理论分析。泄漏参数从0到1变化,其中值0表示通过水泥线的自由流量,值1表示无流过水泥线的流量。可以将实验结果与这种开发的理论解决方案进行比较,以深入了解泄漏对Osteon Porelastic属性的影响。此外,开发的理论溶液将深入了解Osteon孔隙压力通过水泥生产线泄漏的敏感性。

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