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Differences of Curing Effects between a Human and Veterinary Bone Cement

机译:人与兽骨水泥固化效果的差异

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摘要

The goal of the study is to understand how the curing characteristics of a human bone cement (HBC) and veterinary bone cement (VBC) influence the mechanical behavior of each cement and cement bonding with an implant. This study hypothesizes that the curing temperature and time influence the mechanical properties of the cement adjacent to the implant, which resulted in the variability in bonding strength between the implant and cement. To test this hypothesis, this study measured the exothermic temperature, flexural strength, hardness, and morphology of a HBC and VBC at different curing times. In addition, this study measured shear strength at the interfaces of implant/HBC and implant/VBC samples during static and stepwise cyclic tests at different curing times. This study used Stryker Simplex P and BioMedtrix 3 poly methyl methacrylate (PMMA) as an HBC and VBC, respectively. This study cured HBC and VBC cement for 30 and 60 min and then conducted flexural, hardness, and interface fracture tests to evaluate the curing effect on mechanical behavior of each of the cements. This study found that the curing time significantly increases the values of flexure and hardness properties of each cement and shear strength of implant/HBC and implant/VBC (p < 0.05). This study observed a difference of curing time and temperature between HBC and VBC. This study also observed a significant difference of surface porosity at the interface of implant/HBC and implant/VBC interfaces. The variability of mechanical properties between HBC and VBC due to the differences of curing conditions may influence the bonding of cement with the implant.
机译:该研究的目的是了解人骨水泥(HBC)和兽骨水泥(VBC)的固化特性如何影响每种水泥的机械​​性能以及与植入物的水泥粘结。这项研究假设固化温度和时间会影响与种植体相邻的水泥的机械​​性能,从而导致种植体与水泥之间的粘结强度发生变化。为了验证这一假设,本研究测量了在不同固化时间下HBC和VBC的放热温度,弯曲强度,硬度和形态。此外,这项研究在不同固化时间的静态和逐步循环测试中,测量了植入物/ HBC和植入物/ VBC样品界面的剪切强度。这项研究分别使用Stryker Simplex P和BioMedtrix 3聚甲基丙烯酸甲酯(PMMA)作为HBC和VBC。这项研究将HBC和VBC水泥固化了30分钟和60分钟,然后进行了挠曲,硬度和界面断裂测试,以评估固化对每种水泥力学性能的影响。这项研究发现,固化时间显着增加了每种水泥的挠曲和硬度值,以及植入物/ HBC和植入物/ VBC的剪切强度(p <0.05)。这项研究观察到HBC和VBC之间的固化时间和温度有所不同。这项研究还观察到植入物/ HBC界面和植入物/ VBC界面的表面孔隙率存在显着差异。由于固化条件的差异,HBC和VBC之间的机械性能差异可能会影响水泥与植入物的粘结。

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