首页> 外文会议>ASME summer bioengineering conference;SBC2010 >FINITE ELEMENT ANALYSIS OF THE INFLUENCE OF CEMENT VISCOSITY ON CEMENT MANTLE IN TOTAL KNEE ARTHROPLASTY
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FINITE ELEMENT ANALYSIS OF THE INFLUENCE OF CEMENT VISCOSITY ON CEMENT MANTLE IN TOTAL KNEE ARTHROPLASTY

机译:水泥粘度对全膝关节置换术中水泥模量影响的有限元分析

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Aseptic loosening of the tibial implant is one of the major reasons of failure in Total Knee Arthroplasty (TKA). The cement viscosity at the time of application to the bone influences the cement penetration and stability of the prosthesis. Four cements of different viscosities and set times were selected for analysis (Simplex-P, DePuy-2, Palacos, and Endurance). Finite element analysis was used to model cement flow and cement mantle resulting from a surgically implanted tibial plate into sawbone open cell blocks simulating tibial cancellous bone (Pacific Research, WA). Frictional stress, pressure, sliding distance, and total stress at the bone-cement-stem interface were studied at the contact interfaces, which may contribute towards construct stability. Palacos had the maximum interface pressure, sliding distance, and total stress, while DePuy-2 displayed the lowest total stress and sliding distance at interface. Simulated flow profile correlated well with the cemented constructs' radiographic profiles.
机译:胫骨植入物的无菌松动是全膝关节置换术(TKA)失败的主要原因之一。在施加到骨头上时的粘固剂粘度会影响粘固剂的渗透性和稳定性。选择了四种不同粘度和凝结时间的水泥进行分析(Simplex-P,DePuy-2,Palacos和Endurance)。有限元分析被用来模拟通过外科手术植入的胫骨板到模拟胫骨松质骨的锯骨开孔块中的水泥流动和水泥套(Pacific Research,WA)。在接触界面处研究了骨水泥-茎杆界面的摩擦应力,压力,滑动距离和总应力,这可能有助于结构的稳定性。 Palacos的界面压力,滑动距离和总应力最大,而DePuy-2的界面总应力和滑动距离最低。模拟的流动剖面与胶结结构的射线照相剖面密切相关。

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