首页> 外文期刊>Journal of Materials Science: Materials in Medicine >Bone ingrowth potential of electron beam and selective laser melting produced trabecular-like implant surfaces with and without a biomimetic coating
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Bone ingrowth potential of electron beam and selective laser melting produced trabecular-like implant surfaces with and without a biomimetic coating

机译:电子束的骨长入势和选择性激光熔化产生带有和不带有仿生涂层的小梁状植入物表面

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摘要

The bone ingrowth potential of trabecular-like implant surfaces produced by either selective laser melting (SLM) or electron beam melting (EBM), with or without a biomimetic calciumphosphate coating, was examined in goats. For histological analysis and histomorphometry of bone ingrowth depth and bone implant contact specimens were implanted in the femoral condyle of goats. For mechanical push out tests to analyse mechanical implant fixation specimens were implanted in the iliac crest. The follow up periods were 4 (7 goats) and 15 weeks (7 goats). Both the SLM and EBM produced trabecular-like structures showed a variable bone ingrowth after 4 weeks. After 15 weeks good bone ingrowth was found in both implant types. Irrespective to the follow up period, and the presence of a coating, no histological differences in tissue reaction around SLM and EBM produced specimens was found. Histological no coating was detected at 4 and 15 weeks follow up. At both follow up periods the mechanical push out strength at the bone implant interface was significantly lower for the coated SLM specimens compared to the uncoated SLM specimens. The expected better ingrowth characteristics and mechanical fixation strength induced by the coating were not found. The lower mechanical strength of the coated specimens produced by SLM is a remarkable result, which might be influenced by the gross morphology of the specimens or the coating characteristics, indicating that further research is necessary.
机译:在山羊中,检查了通过选择性激光熔化(SLM)或电子束熔化(EBM)(有或没有仿生磷酸钙涂层)产生的小梁状植入物表面的骨向内生长。为了进行组织学分析和骨长入深度的组织形态计量学以及将骨植入物接触标本植入山羊的股骨dy中。为了进行机械推出测试以分析机械植入物固定,将标本植入in中。随访时间为4(7只山羊)和15周(7山羊)。 SLM和EBM产生的小梁状结构均在4周后显示出可变的骨向内生长。 15周后,两种植入物均发现良好的骨向内生长。不管随访时间长短和是否存在涂层,在SLM和EBM产生的标本周围的组织反应中均未发现组织学差异。在随访的第4和15周未检测到组织学涂层。在两个随访期间,与未涂层的SLM样品相比,涂层的SLM样品在骨植入物界面处的机械推出强度明显较低。没有发现由涂层引起的预期的更好的向内生长特性和机械固定强度。 SLM生产的涂层试样的较低的机械强度是一个了不起的结果,这可能受试样的总体形态或涂层特性的影响,表明有必要进行进一步的研究。

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    Orthopaedic Research Laboratory Radboud University Nijmegen Medical Centre">(1);

    Orthopaedic Research Laboratory Radboud University Nijmegen Medical Centre">(1);

    Department of Operating Rooms Radboud University Nijmegen Medical Centre">(2);

    Orthopaedic Research Laboratory Radboud University Nijmegen Medical Centre">(1);

    Laboratory for Biomechanical Engineering University of Twente">(3);

    Orthopaedic Research Laboratory Radboud University Nijmegen Medical Centre">(1);

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