The First Clinical College, Guangzhou University of Chinese Medicine, Guangzhou, China.
The First Affiliated Hospital of Guangzhou University of Chinese Medicine, Guangzhou, China.
J Orthop Surg Res. 2023 Aug 7;18(1):577. doi: 10.1186/s13018-023-04054-3.
The optimal balance between mechanical environment and biological factors is crucial for successful bone healing, as they synergistically affect bone development. Any imbalance between these factors can lead to impaired bone healing, resulting in delayed union or non-union. To address this bone healing disorder, clinicians have adopted a technique known as "dynamization" which involves modifying the stiffness properties of the fixator. This technique facilitates the establishment of a favorable mechanical and biological environment by changing a rigid fixator to a more flexible one that promotes bone healing. However, the dynamization of fixators is selective for certain types of non-union and can result in complications or failure to heal if applied to inappropriate non-unions. This review aims to summarize the indications for dynamization, as well as introduce a novel dynamic locking plate and various techniques for dynamization of fixators (intramedullary nails, steel plates, external fixators) in femur and tibial fractures. Additionally, Factors associated with the effectiveness of dynamization are explored in response to the variation in dynamization success rates seen in clinical studies.
在机械环境和生物因素之间达到最佳平衡对于成功的骨骼愈合至关重要,因为它们协同影响骨骼发育。这些因素之间的任何不平衡都可能导致骨骼愈合受损,导致延迟愈合或不愈合。为了解决这种骨骼愈合障碍,临床医生采用了一种称为“动力化”的技术,该技术涉及改变固定器的刚度特性。通过将刚性固定器改为更灵活的固定器,该技术可促进骨骼愈合,从而建立有利的机械和生物环境。然而,固定器的动力化对某些类型的不愈合具有选择性,如果应用于不合适的不愈合,可能会导致并发症或愈合失败。本篇综述旨在总结动力化的适应证,并介绍一种新型的动力锁定钢板以及股骨和胫骨骨折中固定器(髓内钉、钢板、外固定器)动力化的各种技术。此外,还探讨了与动力化效果相关的因素,以应对临床研究中观察到的动力化成功率的变化。