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An Ultrasound Assisted Anchoring Technique (BoneWelding® Technology) for Fixation of Implants to Bone – A Histological Pilot Study in Sheep

机译:超声辅助锚固技术(BoneWelding®技术),用于将植入物固定在骨头上–绵羊的组织学试验研究

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摘要

The BoneWelding® Technology offers new opportunities to anchor implants within bone. The technology melted the surface of biodegradable polymer pins by means of ultrasound energy to mould material into the structures of the predrilled bone. Temperature changes were measured at the sites of implantation in an in vitro experiment. In the in vivo part of the study two types of implants were implanted in the limb of sheep to investigate the biocompatibility of the method. One implant type was made of PL-DL-lactide (PLA), the second one was a titanium core partially covered with PLA. Healing period was 2 and 6 months, with 3 sheep per group. Bone samples were evaluated radiologically, histologically and histomorphometrically for bone remodeling and inflammatory reactions. Results demonstrated mild and short temperature increase during insertion. New bone formed at the implant without evidence of inflammatory reaction. The amount of adjacent bone was increased compared to normal cancellous bone. It was concluded that the BoneWelding® Technology proved to be a biocompatible technology to anchor biodegradable as well as titanium-PLA implants in bone.
机译:BoneWelding®技术提供了将植入物固定在骨骼内的新机会。该技术利用超声能量熔化了可生物降解的聚合物销钉的表面,从而将材料模制成预钻孔骨骼的结构。在体外实验中,测量植入部位的温度变化。在研究的体内部分,将两种类型的植入物植入绵羊的肢体中,以研究该方法的生物相容性。一种植入物类型由PL-DL-丙交酯(PLA)制成,第二种植入物是部分覆盖PLA的钛芯。治愈期为2个月和6个月,每组3只。通过放射学,组织学和组织形态学评估骨样品的骨重塑和炎症反应。结果表明,插入过程中温度略有升高。新骨在植入物处形成,没有炎症反应的迹象。与正常松质骨相比,相邻骨的数量增加了。结论是,BoneWelding®技术被证明是一种生物相容性技术,可将可生物降解的钛以及PLA植入物固定在骨骼中。

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