Schultz Blake J, Koval Kenneth, Salehi Parsa P, Gardner Michael J, Cerynik Douglas L
Orthopedics. 2020 May 1;43(3):e125-e133. doi: 10.3928/01477447-20200213-08. Epub 2020 Feb 20.
Dynamization of fracture fixation constructs provides early rigidity for primary bone healing and late motion for secondary healing. A review of laboratory, animal, and clinical studies investigating the impact, and optimal timing, of dynamization is limited by lack of standardization across studies. However, in animal models, dynamization improves histologic and biomechanical properties compared with statically rigid or flexible controls. In animals, dynamization at 3 to 4 weeks showed improved histologic results. In clinical studies, it showed faster, stronger, and stiffer bone healing. Clinical success dynamizing external fixators and intramedullary nails suggests a role for late dynamization in other fixation types, such as bridge plating. [Orthopedics. 2020;43(3):e125-e133.].
骨折固定结构的动力化可为一期骨愈合提供早期稳定性,并为二期愈合提供后期活动度。回顾关于动力化的影响及最佳时机的实验室、动物及临床研究,因各项研究缺乏标准化而受到限制。然而,在动物模型中,与静态刚性或柔性对照相比,动力化可改善组织学和生物力学特性。在动物实验中,3至4周时进行动力化可改善组织学结果。在临床研究中,动力化显示出更快、更强且更硬的骨愈合。对外部固定器和髓内钉进行动力化的临床成功表明,后期动力化在其他固定类型(如桥接钢板固定)中也发挥作用。[《骨科》。2020年;43(3):e125 - e133。]