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An Approach to Developing Customized Total Knee Replacement Implants

机译:开发定制的全膝关节置换植入物的方法

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Total knee replacement (TKR) has been performed for patients with end-stage knee joint arthritis to relieve pain and gain functions. Most knee replacement patients can gain satisfactory knee functions; however, the range of motion of the implanted knee is variable. There are many designs of TKR implants; it has been suggested by some researchers that customized implants could offer a better option for patients. Currently, the 3-dimensional knee model of a patient can be created from magnetic resonance imaging (MRI) or computed tomography (CT) data using image processing techniques. The knee models can be used for patient-specific implant design, biomechanical analysis, and creating bone cutting guide blocks. Researchers have developed patient-specific musculoskeletal lower limb model with total knee replacement, and the models can be used to predict muscle forces, joint forces on knee condyles, and wear of tibial polyethylene insert. These available techniques make it feasible to create customized implants for individual patients. Methods and a workflow of creating a customized total knee replacement implant for improving TKR kinematics and functions are discussed and presented in this paper.
机译:已对患有晚期膝关节关节炎的患者进行了全膝关节置换术(TKR),以减轻疼痛并获得功能。大多数膝关节置换患者可以获得满意的膝关节功能。但是,植入的膝盖的运动范围是可变的。 TKR植入物的设计很多。一些研究人员建议定制的植入物可以为患者提供更好的选择。当前,可以使用图像处理技术从磁共振成像(MRI)或计算机断层摄影(CT)数据创建患者的3维膝盖模型。膝关节模型可用于特定患者的植入物设计,生物力学分析以及创建骨切割导向块。研究人员已经开发出了特定于患者的肌肉骨骼下肢模型,并进行了全膝关节置换,该模型可用于预测肌肉力量,膝盖knee突上的关节力量以及胫骨聚乙烯插入物的磨损。这些可用技术使为个别患者创建定制植入物变得可行。本文讨论并介绍了创建定制的全膝关节置换植入物以改善TKR运动学和功能的方法和工作流程。

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