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首页> 外文期刊>Key Engineering Materials >PREDICTION OF INTRAOSSEOUS PRESSURE BEHAVIOR TO UNDERSTAND STRAIN GENERATED POTENTIAL NEAR OSSEOINTEGRATED BONE AND IMPLANT COMPOSITE
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PREDICTION OF INTRAOSSEOUS PRESSURE BEHAVIOR TO UNDERSTAND STRAIN GENERATED POTENTIAL NEAR OSSEOINTEGRATED BONE AND IMPLANT COMPOSITE

机译:预测在骨整合骨和植入物复合体后欠应变产生的骨内压力行为

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摘要

Osseointegration (OI) could be described as the modality for stable fixation of titanium implant to bone structure. The OI has become a realized phenomenon of importance in the dental and rehabilitation sciences since recently developed dentures and artificial limbs are directly attached to human skeleton by using osseointegrated implants. Previously, a study showed that bone strain generated potential (SGP) that is an electrical potential and considered to be generated by fluid flow in bone could be used as a parameter to examine the amount of OI on implant-bone interface. SGP generation is known to require intraosseous fluid flow related with generations of pore pressure gradient in bone. Therefore, SGP would interact with properties determining interstitial fluid flow characteristics such as viscosity, velocity, flow path directions, and interstitial fluid flow boundary conditions. Since interstitial fluid flow characteristics in bone are governed by pore pressure gradient, it could be possible to predict SGP indirectly through the prediction of pore pressure generation in bone. The aim of this study is to predict the distribution of pore pressure in OI bone-implant composite representing a completely osseointegrated rabbit tibia-titanium implant composite. The theoretical background of this prediction is based on the poroelasticity of 2-phase material that grounds on fluid flow and behavior of cortical bone material. In this study, we constructed a finite element (FE) model of the composite from images of micro-CT scanning. In the next step, we examined analysis of the FE model about pore pressure by using ABAQUS. In this analysis, the constitutive behavior was externally computed by utilizing a user subroutine. The results showed the different spatial distributions of pore pressure in the composite. The magnitudes of pore pressure were found to be significantly increased when the position was approached for the interface of implant-bone. Further analytical study is required to fully understand relationships between SGP and pore pressure distributions in OI bone-implant composite materials.
机译:骨整合(OI)可描述为将钛植入物稳定固定在骨结构上的方式。自从最近开发的假牙和假肢通过使用骨整合植入物直接附着在人体骨骼上以来,OI已成为在牙科和康复科学领域中已实现的重要现象。以前,一项研究表明,骨应变产生电位(SGP)是一种电位,被认为是由骨骼中的流体流动所产生的,可以用作检查植入物-骨界面上OI量的参数。已知SGP的产生需要与骨中孔隙压力梯度的产生相关的骨内流体流动。因此,SGP将与确定间隙流体流动特性(例如粘度,速度,流路方向和间隙流体流动边界条件)的属性相互作用。由于骨中的间质液流动特性受孔隙压力梯度控制,因此可以通过预测骨骼中的孔隙压力来间接预测SGP。这项研究的目的是预测代表完全骨整合的兔胫骨-钛植入物复合材料的OI骨植入物复合材料中的孔隙压力分布。这种预测的理论背景是基于两相材料的多孔弹性,其基于流体流动和皮质骨材料的行为。在这项研究中,我们从微CT扫描的图像构建了复合材料的有限元(FE)模型。在下一步中,我们使用ABAQUS检查了关于孔隙压力的有限元模型的分析。在此分析中,通过使用用户子例程从外部计算了本构行为。结果表明,复合材料中孔隙压力的空间分布不同。当接近植入物-骨的界面位置时,发现孔隙压力的大小显着增加。需要进行进一步的分析研究,以充分了解OI骨植入复合材料中SGP与孔隙压力分布之间的关系。

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