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INTERFACIAL FRACTURE STRENGTH MEASUREMENT OF TISSUE-BIOMATERIAL SYSTEMS

机译:组织-生物材料系统的界面断裂强度测量

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The interfacial mechanics at the bone-implant interface is a critical issue for implant fixation and the filling of bone defects created by tumors and/or their excision. The present study is based on the hypothesis that the differences of the surface roughness at bone/ implant interface due to incorporation of micro and nano nanoparticle additives may have significant influence on the quality of bone/implant union. This research studied poly Methyl MethAcrylate (PMMA) bone cement with and without MgO additives as different implant materials. The aims of this research were to determine the influences of a magnesium oxide (MgO) additive particle size to PMMA bone cement on the bonding strength between bone and bone cement specimens. The scope of work for this study were: (1) to quantify elastic properties (Young's modulus and Poisson's ratio) of bone cement specimens, (2) to determine whether inclusion of MgO particles with PMMA has any influence on the interface strength between bone and PMMA, and (3) to quantify the effect of surface roughness on the interface fracture strength between bone and PMMA. This study found that the mean interface strength for bone-PMMA is significantly less than the mean interface strengths of bone-PMMA with microsize MgO particles and bone-PMMA with nanosize MgO particles.
机译:骨-植入物界面处的界面力学对于植入物的固定以及由肿瘤和/或其切除所造成的骨缺损的填充是至关重要的问题。本研究基于这样的假设,即由于掺入了微米和纳米纳米粒子添加剂而导致的骨骼/植入物界面处的表面粗糙度差异可能对骨骼/植入物结合的质量产生重大影响。这项研究研究了含和不含MgO添加剂的聚甲基丙烯酸甲酯(PMMA)骨水泥作为不同的植入材料。这项研究的目的是确定氧化镁(MgO)添加剂粒径对PMMA骨水泥对骨与骨水泥标本之间粘结强度的影响。这项研究的工作范围是:(1)量化骨水泥标本的弹性性能(杨氏模量和泊松比),(2)确定PMMA掺入MgO颗粒是否对骨与骨之间的界面强度有任何影响。 PMMA,以及(3)量化表面粗糙度对骨骼与PMMA之间界面断裂强度的影响。这项研究发现,骨-PMMA的平均界面强度显着小于具有微米级MgO颗粒的骨-PMMA和具有纳米级MgO颗粒的骨-PMMA的平均界面强度。

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