Department of Orthopaedic Biomaterial Science, Osaka University Graduate School of Medicine, 2-2 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Department of Health and Sport Sciences, Osaka University Graduate School of Medicine, 1-17 Machikaneyama, Toyonaka, Osaka, 560-0043, Japan.
Sci Rep. 2024 Feb 8;14(1):3250. doi: 10.1038/s41598-024-53222-w.
This study analyzed 31 patients with symptomatic osteoarthritic knees scheduled to undergo knee arthroplasty or high tibial osteotomy and demonstrated shape variations in their proximal tibia using an average three-dimensional (3D) bone model. Preoperative computed tomography of the affected knees was reconstructed as 3D bone models using a triangle mesh of surface layers. The initial case was defined as the template, and the other models were reconstructed into homologous models with the same number of mesh vertices as that in the template. The corresponding mesh vertices of the other models were averaged to evaluate the spatial position on the particular mesh vertex of the template. This was applied to all the mesh vertices of the template to generate the average 3D model. To quantify the variation in surface geometry, average minimum distance from the average bone model to 31 models was recorded. The medial proximal tibial cortex (1.63 mm) revealed lesser variation compared to the tibial tuberosity (2.50 mm) and lateral cortex (2.38 mm), (p = 0.004 and p = 0.020, respectively). The medial tibial plateau (1.46 mm) revealed larger variation compared to the lateral tibial plateau (1.16 mm) (p = 0.044). Understanding 3D geometry could help in development of implants for arthroplasty and knee osteotomy.
本研究分析了 31 例有症状的骨关节炎膝关节患者,这些患者计划接受膝关节置换或胫骨高位截骨术,并使用平均三维(3D)骨骼模型分析其胫骨近端的形状变化。使用表面层的三角形网格对受影响膝关节的术前计算机断层扫描进行 3D 骨骼模型重建。初始病例被定义为模板,其他模型则使用与模板相同数量的网格顶点被重建为同源模型。其他模型的相应网格顶点被平均化,以评估模板中特定网格顶点的空间位置。这适用于模板的所有网格顶点,以生成平均 3D 模型。为了量化表面几何形状的变化,记录了平均骨骼模型与 31 个模型之间的平均最小距离。与胫骨结节(2.50 毫米)和外侧皮质(2.38 毫米)相比,内侧胫骨近端皮质(1.63 毫米)的变化较小(分别为 p = 0.004 和 p = 0.020)。与外侧胫骨平台(1.16 毫米)相比,内侧胫骨平台(1.46 毫米)的变化更大(p = 0.044)。了解 3D 几何形状有助于开发关节置换和膝关节截骨术的植入物。