Duda G N, Kirchner H, Wilke H J, Claes L
Department of Unfallchirurgische Forschung und Biomechanik, University of Ulm, Germany.
J Biomech. 1998 Mar;31(3):247-52. doi: 10.1016/s0021-9290(97)00115-2.
Inter-fragmentary movement considerably influences the fracture healing process. Large shear movement delays while moderate axial movement stimulates the healing process. To be able to control the mechanical situation at a fracture site and to achieve optimal bony healing it is essential to understand the relationship between inter-fragmentary movement, bony loading and fixation stiffness. A 6 x 6 stiffness matrix is introduced which completely describes the linear relationship between the 6 inter-fragmentary movements and the resulting bony loading (3 forces and 3 moments). Further, it is illustrated that even in relatively stiff external fixateur constructs simple axial loading of the bony fragments leads to complex inter-fragmentary movement. When the 3-D stiffness description is multiplied by the load state in sheep tibiae, movements similar to those measured in vivo are calculated. The relationship between axial compression and medio-lateral or dorso-ventral shear varies depending on the mounting plane of the external fixateur. The authors conclude that a single value is not sufficient to describe the mechanical relationship between inter-fragmentary movement and bony loading. Only a complete description of fixation stiffness allows prediction of inter-fragmentary movement and differentiation between various configurations of fixation devices and their potential for mechanically promoting bony healing.
骨折块间运动对骨折愈合过程有很大影响。较大的剪切运动会延迟愈合,而适度的轴向运动则会刺激愈合过程。为了能够控制骨折部位的力学状况并实现最佳的骨愈合,了解骨折块间运动、骨负荷与固定刚度之间的关系至关重要。本文引入了一个6×6的刚度矩阵,它完整地描述了6种骨折块间运动与由此产生的骨负荷(3个力和3个力矩)之间的线性关系。此外,还表明即使在相对刚性的外固定架结构中,骨块的简单轴向加载也会导致复杂的骨折块间运动。当将三维刚度描述与绵羊胫骨的负荷状态相乘时,可计算出与体内测量结果相似的运动。轴向压缩与内外侧或背腹侧剪切之间的关系因外固定架的安装平面而异。作者得出结论,单一值不足以描述骨折块间运动与骨负荷之间的力学关系。只有对固定刚度进行完整描述,才能预测骨折块间运动,并区分不同固定装置的配置及其在力学上促进骨愈合的潜力。