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Biomechanical considerations in the design of patient-specific fixation plates for the distal radius

机译:radius骨远端患者固定板设计中的生物力学考虑

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摘要

Use of patient-specific fixation plates is promising in corrective osteotomy of the distal radius. So far, custom plates were mostly shaped to closely fit onto the bone surface and ensure accurate positioning of bone segments, however, without considering the biomechanical needs for bone healing. In this study, we investigated how custom plates can be optimized to stimulate callus formation under daily loading conditions. We calculated implant stress distributions, axial screw forces, and interfragmentary strains via finite element analysis (FEA) and compared these parameters for a corrective distal radius osteotomy model fixated by standard and custom plates. We then evaluated these parameters in a modified custom plate design with alternative screw configuration, plate size, and thickness on 5 radii models. Compared to initial design, in the modified custom plate, the maximum stress was reduced, especially under torsional load (− 31%). Under bending load, implants with 1.9-mm thickness induced an average strain (median = 2.14%, IQR = 0.2) in the recommended range (2–10%) to promote callus formation. Optimizing the plate shape, width, and thickness in order to keep the fixation stable while guaranteeing sufficient strain to enhance callus formation can be considered as a design criteria for future, less invasive, custom distal radius plates. >Graphical abstract
机译:在远端specific骨的矫正截骨术中,使用患者专用固定板很有希望。到目前为止,定制板的形状大多能紧贴骨骼表面,并确保骨骼段的精确定位,但是并未考虑骨骼愈合的生物力学需求。在这项研究中,我们研究了如何在日常加载条件下优化定制板来刺激愈伤组织的形成。我们通过有限元分析(FEA)计算了植入物的应力分布,轴向螺钉力和碎片间的应变,并比较了这些参数,以通过标准板和定制板固定的远端distal骨矫正模型。然后,我们在经过修改的定制板设计中评估了这些参数,并在5个半径模型上使用了可选的螺钉配置,板尺寸和厚度。与初始设计相比,在改进的定制板上,最大应力降低了,特别是在扭转载荷下(-31%)。在弯曲载荷下,厚度为1.9mm的植入物会在建议的范围(2–10%)内引起平均应变(中位值= 2.14%,IQR = 0.2),以促进愈伤组织的形成。优化板的形状,宽度和厚度,以保持固定稳定,同时保证足够的应变以增强愈伤组织的形成,可以被视为未来,侵入性较小,定制的radius骨远端板的设计标准。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!- fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->ᅟ

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