A multibody model for the optimization of hip arthroplasty in relation to range of movement

E. Zanetti, C. Bignardi, M. Terzini, G. Putame, A. Audenino
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引用次数: 10

Abstract

Background The dislocation of the prosthesized hip is a relevant postoperative complication; this adverse outcome is dependent on the specific patient anatomy and on the artificial joint design. The geometry of the reconstructed hip is one of the key factors and it is usually designed at the time of the preoperative planning when the stem model and size, the head diameter and its offset, and the acetabular cup orientation are selected. Aims In this work, the authors have developed a numerical model to support the pre-operative planning, allowing assessing the hip range of motion, once the geometry of the implant has been defined. Methods A multi-body model of a prosthesized hip has been developed, and a dislocating movement has been applied; the software is able to assess the entity of displacements and of applied forces which can produce hip dislocation.
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基于运动范围的髋关节置换术优化多体模型
背景人工髋关节脱位是术后的一个相关并发症;这种不良结果取决于患者的具体解剖结构和人工关节的设计。重建髋关节的几何形状是关键因素之一,通常在术前规划时进行设计,选择髋关节干的型号和尺寸、髋臼杯的直径及其偏移量以及髋臼杯的方向。在这项工作中,作者开发了一个数值模型来支持术前计划,一旦确定了植入物的几何形状,就可以评估髋关节的活动范围。方法建立人工髋关节多体模型,并应用脱位运动;该软件能够评估位移的实体和可产生髋关节脱位的施加力。
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Australasian Medical Journal
Australasian Medical Journal MEDICINE, GENERAL & INTERNAL-
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