Department of Orthopaedics, Shahid Beheshti University, Tehran, Iran.
Int Orthop. 2010 Mar;34(3):329-33. doi: 10.1007/s00264-009-0769-2. Epub 2009 Apr 8.
This study was conducted to evaluate the effect of the various osteotomy parameters on the biomechanical aspects of the hip joint on a computerised model. The data of the radiographs and a three-dimensional (3D) CT scan of six patients with coverage deficient hip joint were used to construct a 3D computer model. Then Chiari type osteotomies were simulated using various heights, angles and fibrocartilage thicknesses. A new angle called the mid acetabular center edge (MACE) angle was defined in a mid coronal CT cut. The optimum displacement for obtaining the maximum coverage averaged 73%. The angle and height of the osteotomy had a significant effect on the MACE angle (P value < 0.01). Our findings of these Chiari parameters may change the results of the osteotomy. The probability of adapting the proximal osteotomy segment to a deformed femoral head was explained by the model and a modified osteotomy "multiple height osteotomy" was proposed.
本研究旨在通过计算机模型评估各种截骨参数对髋关节生物力学方面的影响。我们使用了 6 名髋关节覆盖不足患者的 X 光片和三维(3D)CT 扫描数据来构建 3D 计算机模型。然后,我们模拟了不同高度、角度和纤维软骨厚度的 Chiari 截骨术。在中冠状 CT 切片中定义了一个新的角度,称为髋臼中心边缘中间(MACE)角。获得最大覆盖的最佳位移平均值为 73%。截骨的角度和高度对 MACE 角有显著影响(P 值 < 0.01)。我们对这些 Chiari 参数的研究结果可能会改变截骨术的结果。该模型解释了近端截骨段适应变形股骨头的概率,并提出了一种改良截骨术“多高度截骨术”。