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首页> 外文期刊>International journal for numerical methods in biomedical engineering >The influence of loading configurations on numerical evaluation of failure mechanisms in an uncemented femoral prosthesis
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The influence of loading configurations on numerical evaluation of failure mechanisms in an uncemented femoral prosthesis

机译:加载配置对未发布股骨假体失效机制数值评价的影响

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The clinical relevance of numerical predictions of failure mechanisms in femoral prosthesis could be impaired due to simplification of musculoskeletal loading. This study investigated the extent to which loading configurations affect the preclinical analysis of an uncemented femoral implant. Patient-specific, CT-scan based FE models of intact and implanted femurs were developed and analysed using three loading configurations, which comprised of load cases representing daily activities. First loading configuration consisted of two load cases, each of walking and stair climbing. The second consisted of more number of load cases for each of these activities. The third included load cases of additional activities of standing up and sitting down. Failure criteria included maximum principal strains, interface debonding, implant-bone relative displacement and adaptive bone remodelling. Simplified loading configurations led to a reduction (100-1500 mu epsilon) around cortical principal strains. The area prone to interface debonding were observed in the proximo-medial part of implant and was maximum when all activities were considered. This area was reduced by 35%, when simplified loading configurations were chosen. Interfacial area of 88%-96% experienced implant-bone relative displacements below 40 mu m; however maximum of 110 mu m was observed at the calcar region. Lack of consideration of variety of activities overestimated (30%-50%) bone resorption around the lateral part of the implant; hence, these bone remodelling results were less clinically relevant. Considering a variety daily activities along with an adequate number of load cases for each activity seemed necessary for pre-clinical evaluations of reconstructed femur.
机译:由于肌肉骨骼载荷的简化,股骨假体失效机制数值预测的临床关联可能受损。本研究研究了装载配置的程度影响未解释的股骨植入物的临界分析。使用三种装载配置开发并分析了特定于患者的CT扫描的FE模型,包括由代表日常活动的负载案例组成。第一个装载配置包括两个负载案例,每一个步行和楼梯攀爬。第二个由这些活动中的每项活动组成更多数量的负载箱。第三包括额外的额外活动的负荷案例。故障标准包括最大主体菌株,接口剥离,植入骨相对位移和自适应骨重塑。简化的加载配置导致皮质主菌株周围的减少(100-1500μmepsilon)。在植入物的Proximo-Midial部分中观察到易于接口剥离的区域,最大限度地考虑所有活动。 This area was reduced by 35%, when simplified loading configurations were chosen.界面面积88%-96%经验丰富的植入物 - 骨相对位移低于40亩;然而,在轮廓区域中观察到最大110μm。缺乏对植入物的侧面部分偏估的各种活动(30%-50%)骨吸收;因此,这些骨重塑结果较少相关。考虑到各种日常活动以及对重建股骨的预临床前评估所必需的每项活动的足够数量的负荷案例。

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