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首页> 外文期刊>International Orthopaedics >Upward and inward displacements of the acetabular component increase stress on femoral head in single endoprothesis models
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Upward and inward displacements of the acetabular component increase stress on femoral head in single endoprothesis models

机译:在单个内支架模型中,髋臼组件的向上和向内位移会增加股骨头的应力

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摘要

The centre of rotation of the hip can be displaced in hip dysplasia and revision arthroplasty. This study examined the effect of artificial femoral head load after acetabular component displacement in total hip arthroplasty. Sixteen total hip arthroplasty models of human cadaver specimens were reconstructed, and under different acetabular component position, the load around the femoral head was evaluated by strain gages. The results showed that the load was higher in the same specimens when the cup was moved 2 mm inward or upward, especially after the cup was moved more than 6 mm, and the load had an increasing effect in the inward group. In the upward group, an increasing effect happened at 8 mm upward displacement, but the stress value decreased from 4 mm to 6 mm upward displacement. In the same moving distance, the stress of inward displacement is obviously higher than upward displacement. Altogether, the results suggested that for both inward displacement and upward displacement of the acetabular cup, the load around the femoral head increased gradually, while the distance of the inward displacement and the superior displacement was increased. The greater the displacement, the bigger the loading contact stress. The upward displacement caused less stress change on the femoral head. The stress of the 6 mm upward position was lower than nearby positions; perhaps this site represented a stress buffering zone.
机译:在髋关节发育不良和翻修置换术中,髋关节旋转中心可能会移位。这项研究检查了髋臼组件移位后人工股骨头负荷在全髋关节置换术中的影响。重建了十六具人体尸体标本的全髋关节置换模型,并在不同的髋臼组件位置下,通过应变计评估了股骨头周围的负荷。结果表明,当杯子向内或向上移动2 mm时,相同样本的负载较高,尤其是在杯子移动超过6 mm之后,并且向内组的负载增加。在向上的组中,向上位移8 mm时发生了增加的作用,但是应力值从4 mm向上位移减小到6 mm。在相同的移动距离下,向内位移的应力明显高于向上位移。总之,对于髋臼杯向内移位和向上移位,股骨头周围的负荷逐渐增加,而向内移位和上移位的距离增加。位移越大,载荷接触应力越大。向上移位引起股骨头应力变化较小。向上6毫米位置的应力低于附近位置;也许这个站点代表了一个应力缓冲带。

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