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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Fixation performance of an ultrasonically fused, bioresorbable osteosynthesis implant: A biomechanical and biocompatibility study
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Fixation performance of an ultrasonically fused, bioresorbable osteosynthesis implant: A biomechanical and biocompatibility study

机译:超声融合的固定性能,生物可吸收骨质合成植入物:生物力学和生物相容性研究

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Bioresorbable implants may serve as an alternative option for the fixation of bone fractures. Because of their minor inherent mechanical properties and insufficient anchorage within bone bioresorbable implants have so far been limited to mechanically nondemanding fracture types. By briefly liquefying the surface of the biomaterial during insertion, bioresorbable implants can be ultrasonically fused with bone to improve their mechanical fixation. The objective of this study was to investigate the biomechanical fixation performance and in vivo biocompatibility of an ultrasonically fused bioresorbable polymeric pin (SonicPin). First, we biomechanically compared the fused pin with press fitted metallic and bioresorbable polymeric implants for quasi-static and fatigue strength under shear and tensile loading in a polyurethane foam model. Second, fused implants were inserted into cancellous bovine bone and tested biomechanically to verify the reproducibility of their fusion behavior. Finally, the fused pins were tested in a lapine model of femoral condyle osteotomies and were histologically examined by light and transmission electron microscopy. While comparable under static shear loads, fixation performance of ultrasonically fused pins was significantly (p = 0.001) stronger under tensile loading than press fit implants and showed no pull-out. Both bioresorbable implants withstood comparable fatigue shear strength, but less than the K-wire. In bovine bone the ultrasonic fusion process worked highly reproducible and provided consistent mechanical fixation. In vivo, the polymeric pin produced no notable foreign body reactions or resorption layers. Ultrasonic fusion of polymeric pins achieved adequate and consistent mechanical fixation with high reproducibility and exhibits good short-term resorption and biocompatibility. (c) 2015 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 104B: 170-179, 2016.
机译:可生物可吸收的植入物可以作为固定骨骨折的替代选择。由于它们的次要固有的机械性能,并且骨骼生物可收吸收植入物中的锚固不足,因此目前尚未限于机械骨折类型。通过在插入期间简要地液化生物材料表面,可以与骨进行超声融合的可生物可吸收的植入物以改善其机械固定。本研究的目的是研究杂种融合的生物可吸收聚合物销(Sonicpin)的生物力学固定性能和体内生物相容性。首先,我们在聚氨酯泡沫模型中与压配金属和生物可吸收聚合物植入物进行了生物机制与压配金属和可生物可吸收的聚合物植入物。其次,将熔融植入物插入松质牛骨中并测试生物力学,以验证其融合行为的再现性。最后,在股骨髁骨膜切片的氯滨模型中测试稠合销,并通过光和透射电子显微镜组织学检查。虽然在静态剪切载量下相当,但在拉伸载荷下,超声稠合引脚的固定性能显着(p = 0.001)比压配合植入物更强,并且显示出没有拉出。两种生物可吸收的植入物都经受良好的疲劳剪切强度,但小于K线。在牛骨中,超声波融合过程工作高度可再现并提供一致的机械固定。在体内,聚合物销没有产生显着的异物反应或吸收层。超声波融合的聚合物引脚具有足够的具有高再现性的机械固定,并且具有良好的短期吸收和生物相容性。 (c)2015 Wiley期刊,Inc.J生物保解员B部分B:Appl Biomater,104B:170-179,2016。

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