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Cement mantle stress under retroversion torque at heel-strike.

机译:脚跟撞击时逆行扭矩作用下的水泥地应力。

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摘要

The paper presents a theory of fixation failure and loosening in cemented total hip prostheses and proceeds to investigate this using an experimentally validated finite element model and two prosthesis types, namely the Charnley and the C-Stem. The study investigates the effects of retroversion torque occurring at heel-strike in combination with a loss of proximal cement/bone support and distal implant/cement support with a good distal cement/bone interface. A 3D finite element model was validated by comparison of femoral surface strains with those measured in an in vitro experimental simulation using an implanted Sawbone femur loaded in the heel-strike position and including a simplified representation of muscle forces. Results showed that the heel-strike position applies a high retroversion torque to the femoral stem that when combined with proximal debonding of the cement/bone interface and distal debonding of the implant/cement interface increases the strain transfer to the cement that may ultimately lead to the breakdown of the cement mantle leading on to osteolysis and loosening of the prostheses. Experimental fatigue testing of the implanted Charnley stem in a Sawbone femur produced cracks within the cement mantle that were located in positions of maximum stress supporting the finite element analysis results and theory of failure.
机译:本文提出了一种胶合全髋关节假体的固定失败和松动的理论,并继续使用经过实验验证的有限元模型和两种假体类型Charnley和C-Stem进行研究。这项研究调查了在足跟撞击时发生的逆转扭矩与失去近端骨水泥/骨支撑和具有良好远骨水泥/骨界面的远侧植入物/骨水泥支撑相结合的影响。通过将股骨表面应变与在体外实验模拟中测得的应力进行比较,从而验证了3D有限元模型,该模拟使用负载在脚后跟打击位置并包括简化的肌肉力量表示的植入式锯齿状股骨进行。结果表明,脚后跟打击位置向股骨柄施加了高的逆向扭矩,当与骨水泥/骨界面的近端脱骨和植入物/骨水泥界面的远端脱骨结合时,会增加向骨水泥的应变传递,最终可能导致水泥套破裂导致骨溶解和假体松动。对锯齿状股骨中植入的Charnley茎进行的疲劳试验进行了测试,结果表明,水泥地幔内部出现了裂缝,裂缝位于最大应力位置,支持有限元分析结果和破坏理论。

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