Department of Mechanical Engineering, Maulana Azad National Institute of Technology, Bhopal, India.
Comput Methods Biomech Biomed Engin. 2024 Jun;27(8):951-963. doi: 10.1080/10255842.2023.2217708. Epub 2023 May 31.
As an evolution, biodegradable implants need to maximize mechanical performance thereby may lead to confusion in selection of the biodegradable material and implant design to the fracture site. This requires selecting a unique fixation configuration to fit within the fractured bone, factors of which can be bone-plate clearance, interfragmentary gap, alteration in screw fixation position and variation in the number of screws whose configuration optimization can re-maximize the mechanical performance of the biodegradable implant. Therefore, these factors have been optimized based on the induced minimum stress using the finite element method-based simulation for which biodegradable embossed locking plates (BELCP) screws made of Mg-alloy have been fitted over two fragments of femur body (as hollow cylindrical cortical bone). An average human weight of 62 kg is applied to one segment of the femur for all different configurations of each factor, where another segment is assumed to be fixed. By this simulation, the most optimal fixation configuration was found at a minimum induced stress value of 41.96 MPa which is approximately 85%, 18%, 6% and 48% respectively less than all maximum stress induced configurations in each of the factor. This optimized configuration was at the minimum clearance between bone and plate with a 3 mm interfragmentary gap using 8 screws where the locking screw begins to apply from the center of the BELCP. Overall, BELCP may be a better biodegradable implant plate for bone fracture fixation with these optimized fixation configurations as the improved mechanical performance after experimental validation.
作为一种演变,可生物降解的植入物需要最大限度地提高机械性能,这可能会导致在选择可生物降解材料和植入物设计到骨折部位时产生混淆。这需要选择独特的固定配置以适应骨折的骨骼,其中的因素包括骨板间隙、骨间间隙、螺钉固定位置的改变以及螺钉数量的变化,其配置的优化可以重新最大限度地提高可生物降解植入物的机械性能。因此,这些因素已根据使用有限元法的模拟所产生的最小应力进行了优化,为此在两个股骨体段(作为空心圆柱形皮质骨)上安装了由镁合金制成的可生物降解压印锁定板(BELCP)螺钉。对于每个因素的所有不同配置,将 62 公斤的平均人体重量施加到股骨的一段上,而另一段被假定为固定。通过这种模拟,在最小诱导应力值为 41.96 MPa 时找到了最佳的固定配置,这大约比每个因素中的所有最大应力诱导配置分别减少了 85%、18%、6%和 48%。在使用 8 个螺钉的情况下,这种优化的配置具有最小的骨板间隙和 3mm 的骨间间隙,锁定螺钉从 BELCP 的中心开始施加。总体而言,BELCP 可能是一种更好的用于骨折固定的可生物降解植入物板,这些优化的固定配置可以提高机械性能,然后进行实验验证。