Cangzhou Central Hospital, Hebei, People's Republic of China.
Technology Translation Center for Medical Device, Chung Yuan Christian University, Taoyuan, Taiwan.
Comput Methods Biomech Biomed Engin. 2021 Aug;24(11):1206-1211. doi: 10.1080/10255842.2020.1870964. Epub 2021 Jan 7.
Sufficient interfragmental movement is the key to successful fracture healing in the theory of secondary bone healing. The far-cortical locking technique enables both stiffness reduction and parallel motion for ideal callus formation and fracture healing, but the influence of plate-bone gap on the performance of far-cortical locking technique remains unclear. The current study conducted a series of finite element analyses with mechanical validation to clarify this issue. Plate-bone gaps were assigned by 1, 2, 3, and 4mm in a simulated mid-shaft fracture model fixed with locking plate and six semi-rigid locking screws. Axial compressive load to 500N was applied to the fixation structure to evaluate the structural stiffness, pattern of interfragmental movement (parallel motion), and stresses on the screws. Results revealed the increased plate-bone gaps reduced the structural in order (315.3, 288.8, 264.9, and 243.4N/mm). Tilting angles for determining parallel interfragmental movement (1.58°-1.85°) and stresses on semi-rigid screws for evaluating implant safety were not severely altered. Greater stresses were found on the screws adjacent to the fracture site in all simulated models. The current study suggested that 1mm gap between the locking plate and the bone shall be ideal in view of parallel motion achieved balanced callus formation in far-cortical locking technique. Issue of reducing structural stiffness with limited plate-bone gap distance should be further investigated.
足够的断端间活动是继发骨愈合理论中骨折愈合成功的关键。远皮质锁定技术既能降低刚度,又能实现平行运动,从而理想地形成骨痂和愈合骨折,但板骨间隙对远皮质锁定技术性能的影响尚不清楚。本研究通过力学验证进行了一系列有限元分析,以阐明这一问题。在使用锁定板和六根半刚性锁定螺钉固定模拟的骨干中段骨折模型中,通过 1、2、3 和 4mm 来分配板骨间隙。将 500N 的轴向压缩载荷施加到固定结构上,以评估结构刚度、断端间活动(平行运动)模式和螺钉上的应力。结果表明,增加板骨间隙会降低结构刚度(分别为 315.3、288.8、264.9 和 243.4N/mm)。确定平行断端间活动的倾斜角度(1.58°-1.85°)和评估植入物安全性的半刚性螺钉上的应力没有受到严重影响。在所有模拟模型中,骨折部位附近的螺钉上都发现了更大的应力。本研究表明,考虑到远皮质锁定技术中实现的平行运动,锁定板和骨之间 1mm 的间隙是理想的,可实现平衡的骨痂形成。应进一步研究在有限的板骨间隙距离下降低结构刚度的问题。