Hsu Jui-Ting, Lai Kuo-An, Chen Qingshan, Zobitz Mark E, Huang Heng-Li, An Kai-Nan, Chang Chih-Han
Institute of Biomedical Engineering, National Cheng Kung University, Tainan 701, Taiwan, ROC.
Comput Methods Programs Biomed. 2006 Oct;84(1):34-41. doi: 10.1016/j.cmpb.2006.08.002. Epub 2006 Sep 12.
One of the major causes inducing loosening in the cementless acetabular cup implanting is its insufficient initial stability. In this study, three-dimensional finite element models of the pelvis and acetabular components were developed to investigate the relationship between relative micromotion, initial stability, and screw fixation under six daily activity loadings. A commercial available hemispheric cup with five screw holes was used as the target acetabular cup. The simulation results showed that if screws were placed closed together, when the screw number increased from 1 to 5, the peak micromotion decreased less than 14%, from 126.5 to 108.8 microm, while the stable region, micromotion less than 28 microm, enlarged only by 40%, from 46.1% to 64.7%. However, if the screw could be placed near the cup rim, a single rim screw, 202.1 microm micromotion, could provide better stability than that of four dome screws, 209.6 microm micromotion, placed closed together. To conclude, multiple cup screws should be placed near cup rim and as separate as possible to enlarge the stable region and reduce the peak micromotion between cup and acetabulum.
非骨水泥髋臼杯植入物松动的主要原因之一是其初始稳定性不足。在本研究中,建立了骨盆和髋臼组件的三维有限元模型,以研究六种日常活动载荷下相对微动、初始稳定性和螺钉固定之间的关系。使用一种市售的带有五个螺孔的半球形杯作为目标髋臼杯。模拟结果表明,如果螺钉放置得很近,当螺钉数量从1增加到5时,峰值微动减少不到14%,从126.5微米降至108.8微米,而微动小于28微米的稳定区域仅扩大40%,从46.1%增至64.7%。然而,如果螺钉能够放置在髋臼杯边缘附近,单个边缘螺钉(微动202.1微米)能够提供比四个紧密放置的穹顶螺钉(微动209.6微米)更好的稳定性。总之,多个髋臼杯螺钉应放置在髋臼杯边缘附近并尽可能分开,以扩大稳定区域并减少髋臼杯与髋臼之间的峰值微动。