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首页> 外文期刊>Journal of shoulder and elbow surgery >In vitro and finite element analysis of glenoid bone/baseplate interaction in the reverse shoulder design.
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In vitro and finite element analysis of glenoid bone/baseplate interaction in the reverse shoulder design.

机译:在后肩设计中关节盂骨/底板相互作用的体外和有限元分析。

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摘要

We developed biomechanical and finite element models, using high-strength polyurethane foam blocks, to represent the glenoid bone/baseplate junction to determine if increasing the distance between the glenoid bone and the center of rotation of the glenosphere increases baseplate motion during static loading in the reverse shoulder design. Although there was a general trend toward increased baseplate motion with increasing distance from the glenoid to the center of rotation, in vitro mechanical testing revealed no significant difference between the 7 glenosphere types tested, with average baseplate motion during 1000 load cycles ranging from 90 mum to 120 mum. Results from the finite element analysis strongly correlated with the in vitro mechanical testing. The magnitude of baseplate motion occurring in a modeled representation of bone under simulated physiologic loading conditions was similar for the 7 reverse shoulder glenoid components tested in this study.
机译:我们使用高强度聚氨酯泡沫块开发了生物力学和有限元模型,以代表关节盂骨/基板连接处,以确定在静载荷作用下增加关节盂骨与盂球旋转中心之间的距离是否会增加基板运动。反肩设计。尽管总体趋势是随着距盂盂到旋转中心的距离增加,基板运动会增加,但体外机械测试显示,所测试的7种盂球类型之间没有显着差异,在1000次负载循环(从90毫米到90毫米)中,平均基板运动120妈有限元分析的结果与体外机械测试密切相关。在本研究中测试的7个后肩关节盂关节部件在模拟的生理负荷条件下,在骨骼的模型表示中发生的底板运动幅度相似。

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