首页> 外文期刊>Journal of clinical densitometry >Ageing Effects on 3-Dimensional Femoral Neck Cross-Sectional Asymmetry: Implications for Age-Related Bone Fragility in Falling
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Ageing Effects on 3-Dimensional Femoral Neck Cross-Sectional Asymmetry: Implications for Age-Related Bone Fragility in Falling

机译:对三维股骨颈横截面不对称性的老化作用:对年龄相关骨脆性的影响

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This paper explores the effects of aging on femoral neck (FN) anatomy in a study of women aged 20-90 years in relation to implications for FN fracture propensity in buckling. Five hundred and four participants were scanned by Quantitative Computed Tomography and analyzed using Quantitative Computed Tomography Pro BIT (Mindways). FN cross-section was split through geometric center into superior and inferior sectors. Bone mass, structural measurements, and bone mineral density were analyzed. Buckling ratio was calculated as ratio of buckling radius to cortical thickness. Between 2nd decade and 8th decade, age-related integral bone mass reduction in superior sector was substantially larger than in inferior sector (33% compared to 21%), especially in cortical bone superiorly compared to inferiorly (53% vs 21%; p < 0.001), principally due to reduction in cortical thickness, averaged cortical thickness (56%) with little difference in density. Superior and inferior sector trabecular bone mineral density reduction was similar at 41% and 43% respectively. Differential cortical bone loss in superior sector resulted in a 59% inferior displacement (delta) of center-of-mass from geometric center. Differences in S and averaged cortical thickness with age accounted for a 151% increase in mean superior buckling ratio from 9 to 23. Analysis confirms significant progressive age-related superior cortical bone loss as the major age effect on FN structure with relative preservation of inferior cortex probably related to maintenance of inferior sector by regular loading as a result of standing and walking. Computation of buckling ratio may allow prediction of fracture propensity in a sideways fall.
机译:本文探讨了老化对股骨颈(FN)解剖学在20-90岁的屈曲中的妇女研究中的影响中的影响。通过定量计算断层扫描扫描五百和四个参与者,并使用定量计算断层扫描专题钻头(MINDWAYS)进行分析。 FN横截面被几何中心分成优越和劣等的扇区。分析了骨质量,结构测量和骨密度。屈曲比计算为屈曲半径与皮质厚度的比率。在第二十年和第8个十年之间,优质扇区的年龄相关的整体骨量减少大于劣质部门(33%至21%),特别是在皮质骨中优于较差(53%Vs 21%; P < 0.001),主要是由于皮质厚度的降低,平均皮质厚度(56%),密度差异很小。优异的和劣质扇形骨矿物密度减少分别为41%和43%。差异皮质骨质损失在卓越部门中,从几何中心的质量中心的59%劣势(Delta)。 S的平均皮质厚度的差异占50至23倍的平均屈曲比增加了151%。分析证实了显着的渐进年龄相关的优质皮层骨质损失作为对FN结构的主要效果,相对保存劣质皮质由于站立和行走,定期装载可能与劣质部门的维护有关。屈曲比的计算可以允许预测侧面落下的断裂倾向。

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