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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Characterization of the interface between hydroxyapatite coating film and bone: use of a new expression to correct matrix effects for PIXE measurements in thick samples embedded in resin
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Characterization of the interface between hydroxyapatite coating film and bone: use of a new expression to correct matrix effects for PIXE measurements in thick samples embedded in resin

机译:表征羟基磷灰石涂膜和骨骼之间的界面:使用新的表达式来校正基质效应,以校正嵌入树脂中的厚样品中的PIXE测量

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摘要

Development of biomaterials for use as bone substitute requires better control of the process of materials degradation and bone substitution. At present, composite implants of alloy coated with bioceramic are being developed. In this paper, a cylinder made of TiAl6V4 alloy coated with hydroxyapatite is used to simulate a hip prosthesis integration. Physico-chemical evaluations are needed to determine such an implant osseointegration process. Use of the particle induced x-ray emission (PIXE) method with histological sections results in quantitative cartography of elements at the bone-implant interface. The sensitivity of the PIXE method in measuring low concentrations of elements gives information to better understand bioresorption of calcium phosphate ceramics and events occurring at this dynamic interface. However, concentration evolution in different elements is still going on and reflects the ceramic resorption. In our case, the alpha parameter method based on experimental determination of the correction of matrix effects is useful as it allows data corrections to be calculated without hypotheses about matrix composition. In the present paper, we propose an expression to calculate directly the correction factor and an application to the characterization of the interface between hydroxyapatite coating film and bone. [References: 21]
机译:开发用作骨替代物的生物材料需要更好地控制材料降解和骨替代的过程。目前,正在开发涂覆有生物陶瓷的合金复合植入物。在本文中,使用由涂有羟基磷灰石的TiAl6V4合金制成的圆柱体模拟髋关节假体的整合。需要进行物理化学评估以确定这种植入物骨整合过程。结合组织切片使用颗粒诱导X射线发射(PIXE)方法可对骨-植入物界面处的元素进行定量制图。 PIXE方法在测量低浓度元素中的灵敏度为更好地了解磷酸钙陶瓷的生物吸收以及在此动态界面处发生的事件提供了信息。但是,不同元素的浓度变化仍在继续,反映了陶瓷的吸收。在我们的案例中,基于实验确定基质效应校正的α参数方法非常有用,因为它可以在不假设基质成分的情况下计算数据校正。在本文中,我们提出了一种可直接计算校正因子的表达式,并将其应用于表征羟基磷灰石涂膜与骨骼之间的界面。 [参考:21]

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