Institute of Orthopaedic Research and Biomechanics, Center of Musculoskeletal Research Ulm, University of Ulm, Ulm, Germany.
J Orthop Res. 2014 Jul;32(7):865-72. doi: 10.1002/jor.22617. Epub 2014 Mar 20.
The outcome of secondary fracture healing processes is strongly influenced by interfragmentary motion. Shear movement is assumed to be more disadvantageous than axial movement, however, experimental results are contradictory. Numerical fracture healing models allow simulation of the fracture healing process with variation of single input parameters and under comparable, normalized mechanical conditions. Thus, a comparison of the influence of different loading directions on the healing process is possible. In this study we simulated fracture healing under several axial compressive, and translational and torsional shear movement scenarios, and compared their respective healing times. Therefore, we used a calibrated numerical model for fracture healing in sheep. Numerous variations of movement amplitudes and musculoskeletal loads were simulated for the three loading directions. Our results show that isolated axial compression was more beneficial for the fracture healing success than both isolated shearing conditions for load and displacement magnitudes which were identical as well as physiological different, and even for strain-based normalized comparable conditions. Additionally, torsional shear movements had less impeding effects than translational shear movements. Therefore, our findings suggest that osteosynthesis implants can be optimized, in particular, to limit translational interfragmentary shear under musculoskeletal loading.
骨折愈合过程的结果受骨间活动的强烈影响。剪切运动被认为比轴向运动更不利,然而,实验结果却存在矛盾。数值骨折愈合模型允许在单一输入参数变化的情况下,以及在可比的、标准化的力学条件下模拟骨折愈合过程。因此,比较不同加载方向对愈合过程的影响是可能的。在这项研究中,我们模拟了几种轴向压缩、平移和扭转剪切运动情况下的骨折愈合,并比较了它们各自的愈合时间。因此,我们使用了校准的绵羊骨折愈合数值模型。对三种加载方向的运动幅度和肌肉骨骼负荷进行了大量的变化模拟。我们的结果表明,与相同幅度的单独剪切条件相比,单独的轴向压缩对骨折愈合的成功更为有利,甚至对于基于应变的标准化可比条件也是如此。此外,扭转剪切运动比平移剪切运动的阻碍作用小。因此,我们的发现表明,骨固定植入物可以进行优化,特别是限制肌肉骨骼负荷下的骨间剪切运动。