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Femoral Shape and Size Variability from segmented CT datasets for patient-specific THA planning

机译:患者特定于患者特定CT数据集的股骨形状和尺寸可变性

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Biomechanical functionality of artificial hips strongly correlates with quality of life of patients after total hip arthroplasty.As the numbers of total hip arthroplasty are growing due to increasing life expectancy, biomechanical research is of utmost importance to improve the implants used and the operative procedures applied.Multibody simulation is used to predict forces and moments inside the human body.Generic scaling is usually performed to adapt the human models used in multibody simulation to individual patients.However, since the shape and size of the bones can vary considerably, this type of scaling often is not sufficient.In this work various CT datasets were used to quantify differences of individual femoral shapes, especially with regard to important biomechanical hip parameters, such as the CCD angle or the femoral offset.Our results prove that multibody simulations should be modeled more patientspecific to be able to calculate articular forces and moments more precisely, and thus, to improve surgical planning.
机译:人工髋骨的生物力学功能与总髋关节置换术后患者的生活质量强烈关联。由于寿命增加,总髋关节置换术的数量越来越多,生物力学研究至关重要,以改善所用的植入物和应用程序的手术程序。多体仿真用于预测人体内部的力和时刻。通常进行以使多体体模拟用于个体患者的人类模型。然而,由于骨骼的形状和尺寸可以显着变化,这种类型的缩放通常不足。在这项工作中,各种CT数据集用于量化个体股骨形状的差异,特别是关于重要的生物力学髋关节参数,例如CCD角度或股骨偏移。我们的结果证明了多体模拟应该更加模拟患者能够更准确地计算关节力和时刻,因此,改善手术规划。

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