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Biomechanical effects of screw orientation and plate profile on tibial condylar valgus osteotomy - Finite-element analysis

机译:螺杆定向和板材型材在胫骨髁突骨截骨骨膜骨膜骨膜骨膜骨膜骨膜骨质术的生物力学效应 - 有限元分析

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摘要

Tibial condylar valgus osteotomy (TCVO) is a type of open wedge high tibial osteotomy for correcting intra-articular deformities of medial knee osteoarthritis. However, there are no implant design and related biomechanical investigations specifically for TCVO. This study aims to investigate the effects of the proximal screw direction and plate profile on the biomechanical behaviors of the TCVO construct. Based on computed tomography images, the tibia model with TCVO was simulated. Four variations (straight and contoured plate profile x convergent and divergent proximal screw direction) with two loading conditions (compressive loads and torsional load) were compared by finite-element method. Fracture risk and construct stability were chosen as the comparison indices. For both loading conditions, the fracture risk of screw, plate and bone was the lowest in straight plate with divergent screw direction (SD), while contoured plate with convergent screw direction (CC) was the highest. Similar results were found in construct stability, SD allowed the smallest micromotions of the L-shaped opening gap, but CC allowed the highest. Divergent screw direction can decrease fracture risk of all components and provide better construct stability, while contoured plate profile seems like to have converse effects. If stability is the major concern, straight plate with divergent screw is recommended for patients with heavy load demands. Contoured plate may be suitable for skinny patients that can reduce the soft tissue irritation.
机译:胫骨髁突骨截骨截骨术(TCVO)是一种开放式楔形骨质骨切断术,用于校正内侧膝关节骨关节炎的关节内畸形。然而,没有植入设计和相关的生物力学调查,专门针对TCVO。本研究旨在研究近端螺钉方向和板轮廓对TCVO构建体的生物力学行为的影响。基于计算机断层摄影图像,模拟了TCVO的胫骨模型。通过有限元方法比较了具有两个装载条件(压缩载荷和扭转载荷)的四个变型(直链和轮廓板轮廓x会聚和发散的近端螺钉方向)。选择裂缝风险和构建稳定性作为比较指标。对于载荷条件来说,螺钉,板和骨的断裂风险是具有发散螺杆方向(SD)的直板中最低板,而具有会聚螺杆方向(CC)的轮廓板是最高的。在构造稳定性中发现了类似的结果,SD允许L形开口间隙的最小微调,但CC允许最高。发散螺杆方向可以降低所有部件的断裂风险并提供更好的构造稳定性,而轮廓板轮廓似乎具有逆转效应。如果稳定性是主要的问题,建议为负载需求的患者推荐具有发散螺钉的直板。轮廓板可能适用于可降低软组织刺激的瘦性患者。

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