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股骨颈骨密度是老年男性和女性髋部骨折易感性的有力预测指标,因为它能检测皮质骨的不稳定性:鹿特丹研究。

Femoral neck BMD is a strong predictor of hip fracture susceptibility in elderly men and women because it detects cortical bone instability: the Rotterdam Study.

作者信息

Rivadeneira Fernando, Zillikens M Carola, De Laet Chris Edh, Hofman Albert, Uitterlinden André G, Beck Thomas J, Pols Huibert Ap

机构信息

Department of Internal Medicine, Erasmus Medical Center, Rotterdam, The Netherlands.

出版信息

J Bone Miner Res. 2007 Nov;22(11):1781-90. doi: 10.1359/jbmr.070712.

Abstract

UNLABELLED

We studied HSA measurements in relation to hip fracture risk in 4,806 individuals (2,740 women). Hip fractures (n = 147) occurred at the same absolute levels of bone instability in both sexes. Cortical instability (propensity of thinner cortices in wide diameters to buckle) explains why hip fracture risk at different BMD levels is the same across sexes.

INTRODUCTION

Despite the sexual dimorphism of bone, hip fracture risk is very similar in men and women at the same absolute BMD. We aimed to elucidate the main structural properties of bone that underlie the measured BMD and that ultimately determines the risk of hip fracture in elderly men and women.

MATERIALS AND METHODS

This study is part of the Rotterdam Study (a large prospective population-based cohort) and included 147 incident hip fracture cases in 4,806 participants with DXA-derived hip structural analysis (mean follow-up, 8.6 yr). Indices compared in relation to fracture included neck width, cortical thickness, section modulus (an index of bending strength), and buckling ratio (an index of cortical bone instability). We used a mathematical model to calculate the hip fracture distribution by femoral neck BMD, BMC, bone area, and hip structure analysis (HSA) parameters (cortical thickness, section modulus narrow neck width, and buckling ratio) and compared it with prospective data from the Rotterdam Study.

RESULTS

In the prospective data, hip fracture cases in both sexes had lower BMD, thinner cortices, greater bone width, lower strength, and higher instability at baseline. In fractured individuals, men had an average BMD that was 0.09 g/cm(2) higher than women (p < 0.00001), whereas no significant difference in buckling ratios was seen. Modeled fracture distribution by BMD and buckling ratio levels were in concordance to the prospective data and showed that hip fractures seem to occur at the same absolute levels of bone instability (buckling ratio) in both men and women. No significant differences were observed between the areas under the ROC curves of BMD (0.8146 in women and 0.8048 in men) and the buckling ratio (0.8161 in women and 0.7759 in men).

CONCLUSIONS

The buckling ratio (an index of bone instability) portrays in both sexes the critical balance between cortical thickness and bone width. Our findings suggest that extreme thinning of cortices in expanded bones plays a key role on local susceptibility to fracture. Even though the buckling ratio does not offer additional predictive value, these findings improve our understanding of why low BMD is a good predictor of fragility fractures.

摘要

未标记

我们在4806名个体(2740名女性)中研究了血清白蛋白(HSA)测量值与髋部骨折风险的关系。男女髋部骨折(n = 147)在相同的绝对骨不稳定性水平时发生。皮质骨不稳定性(宽直径处较薄皮质骨发生弯曲的倾向)解释了为什么在不同骨密度水平下,男女髋部骨折风险相同。

引言

尽管骨骼存在性别差异,但在相同的绝对骨密度下,男女髋部骨折风险非常相似。我们旨在阐明骨的主要结构特性,这些特性是测量骨密度的基础,并最终决定老年男女髋部骨折的风险。

材料与方法

本研究是鹿特丹研究(一项基于人群的大型前瞻性队列研究)的一部分,纳入了4806名接受双能X线吸收法(DXA)进行髋部结构分析的参与者中的147例新发髋部骨折病例(平均随访8.6年)。与骨折相关的指标比较包括颈宽、皮质厚度、截面模量(弯曲强度指标)和屈曲比(皮质骨不稳定性指标)。我们使用数学模型通过股骨颈骨密度、骨矿含量、骨面积和髋部结构分析(HSA)参数(皮质厚度、截面模量、窄颈宽和屈曲比)计算髋部骨折分布,并将其与鹿特丹研究的前瞻性数据进行比较。

结果

在前瞻性数据中,男女髋部骨折病例在基线时骨密度较低、皮质较薄、骨宽度较大、强度较低且不稳定性较高。在骨折个体中,男性的平均骨密度比女性高0.09 g/cm²(p < 0.00001),而屈曲比未见显著差异。通过骨密度和屈曲比水平模拟的骨折分布与前瞻性数据一致,表明男女髋部骨折似乎在相同的绝对骨不稳定性(屈曲比)水平发生。骨密度的ROC曲线下面积(女性为0.8146,男性为0.8048)与屈曲比的ROC曲线下面积(女性为0.8161,男性为0.7759)之间未观察到显著差异。

结论

屈曲比(骨不稳定性指标)在男女中都描绘了皮质厚度和骨宽度之间的关键平衡。我们的研究结果表明,扩张骨中皮质的极度变薄在局部骨折易感性中起关键作用。尽管屈曲比没有提供额外的预测价值,但这些发现有助于我们理解为什么低骨密度是脆性骨折的良好预测指标。

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