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Adjustable stiffness, external fixator for the rat femur osteotomy and segmental bone defect models

机译:硬度可调,用于大鼠股骨截骨术和节段性骨缺损模型的外固定器

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摘要

The mechanical environment around the healing of broken bone is very important as it determines the way the fracture will heal. Over the past decade there has been great clinical interest in improving bone healing by altering the mechanical environment through the fixation stability around the lesion. One constraint of preclinical animal research in this area is the lack of experimental control over the local mechanical environment within a large segmental defect as well as osteotomies as they heal. In this paper we report on the design and use of an external fixator to study the healing of large segmental bone defects or osteotomies. This device not only allows for controlled axial stiffness on the bone lesion as it heals, but it also enables the change of stiffness during the healing process in vivo. The conducted experiments have shown that the fixators were able to maintain a 5 mm femoral defect gap in rats in vivo during unrestricted cage activity for at least 8 weeks. Likewise, we observed no distortion or infections, including pin infections during the entire healing period. These results demonstrate that our newly developed external fixator was able to achieve reproducible and standardized stabilization, and the alteration of the mechanical environment of in vivo rat large bone defects and various size osteotomies. This confirms that the external fixation device is well suited for preclinical research investigations using a rat model in the field of bone regeneration and repair.
机译:骨折愈合周围的机械环境非常重要,因为它决定了骨折的愈合方式。在过去的十年中,通过通过病变周围的固定稳定性改变机械环境来改善骨骼愈合方面,引起了极大的临床兴趣。在这一领域,临床前动物研究的一个制约因素是缺乏对大型节段缺损内局部机械环境以及愈合时切骨术的实验控制。在本文中,我们报告了外部固定器的设计和使用,以研究大节段性骨缺损或截骨术的愈合。该装置不仅可以在愈合时在骨病变上控制轴向刚度,而且还可以在体内愈合过程中改变刚度。进行的实验表明,在无限制的笼活动期间,固定器能够在大鼠体内维持5 mm的股骨缺损间隙至少8周。同样,我们在整个愈合过程中均未观察到变形或感染,包括针状感染。这些结果表明,我们新开发的外固定器能够实现可再现且标准化的稳定化,并且能够改变体内大鼠大骨缺损和各种尺寸截骨术的机械环境。这证实了外固定装置非常适合在骨骼再生和修复领域中使用大鼠模型进行临床前研究。

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