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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >A tricalcium phosphate/polyether ether ketone anchor bionic fixation device for anterior cruciate ligament reconstruction: Safety and efficacy in a beagle model
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A tricalcium phosphate/polyether ether ketone anchor bionic fixation device for anterior cruciate ligament reconstruction: Safety and efficacy in a beagle model

机译:用于前十字架韧带重建的磷酸三钙/聚醚醚酮锚定仿真装置:Beagle模型中的安全性和有效性

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Abstract The goal of this study was to develop a bionic fixation device based on the use of a tricalcium phosphate/polyether ether ketone anchor and harvesting of the ulnar carpal flexor muscle tendon for application as a ligament graft in a beagle anterior cruciate ligament (ACL) reconstruction model, with the goal of accelerating the ligament graft‐to‐bone tunnel healing and providing a robust stability through exploration of this new kind of autologous ligament graft. The safety and efficacy of this fixation device were explored 3 and 6 months after surgery in a beagle ACL reconstruction model using biomechanical tests and comprehensive histological observation. The data were compared using a two‐tailed Student's t test and a paired t test. A p value 0.05 was defined as statistically significant. All the models were successfully established. This fixation device possessed the excellent mechanical properties for ACL reconstruction. A comprehensive histological observation revealed that a cartilage layer was visible in the transition zone between the tendon and bone interface at both 3 and 6 months postoperation. The trabecular of the new bone was observed six months after surgery and was found to be similar to a direct connection. This fixation technique provided not only a robust primary mechanical fixation but also a bionic fixation for long‐term knee joint stability by accelerating the healing of the tendon to the bone tunnel, showing a high potential for use in clinical practice. ? 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 2018. ? 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 107B: 554–563, 2019.
机译:摘要本研究的目的是基于使用磷酸三钙/聚醚醚酮锚和尺甲状腺屈肌肌肉肌腱的收获来开发仿生固定装置,以在Beagle前十字架韧带(ACL)中的韧带移植物中的韧带移植物重建模型,通过探索这种新型自体韧带移植物加速韧带移植到骨隧道愈合并提供鲁棒稳定性的目标。使用生物力学测试和综合组织学观察,在手术中探讨了该固定装置的安全性和疗效3和6个月。使用双尾学生的T测试和配对T测试进行比较数据。 P值<0.05被定义为统计学意义。所有模型都成功建立。该固定装置具有用于ACL重建的优异的机械性能。综合组织学观察显示,在术后3和6个月的肌腱和骨界面之间的过渡区中可见软骨层。手术后六个月观察到新骨的小梁,发现类似于直接连接。该固定技术不仅提供了一种强大的主要机械固定,而且提供了通过加速肌腱对骨隧道的愈合来实现长期膝关节稳定性的仿生固定,显示出在临床实践中使用的高潜力。还2018 Wiley期刊,Inc.J生物保证Mater Res B:苹果生物摩特,2018年。? 2018 Wiley期刊,INC.J生物保解率B部分:Appl Biomater 107B:554-563,2019。

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