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老年人髋关节周围骨质会发生什么变化?

已有 2029 次阅读 2016-10-25 22:38 |个人分类:人工全髋关节置换手术|系统分类:人物纪事| 徐州二院骨科, 徐州医科大学, 徐州医科大学附属医院, 骨科, 江苏省

    最近,江苏省徐州医科大学附属医院骨科关节外科高绪仁膝肩髋关节医疗团队收治了大量髋关节周围骨折的老年患者。老年髋部骨折最常见的是股骨颈骨折和转子间骨折。我们常采用人工髋关节置换的方法或内固定的方法帮助患者重新恢复行走的能力。

     但是,如何做好老年患者髋关节周围骨量的评估?如何减少因髋部骨量减少引起的并发生是一个重要的话题。

      江苏省徐州医科大学附属医院骨科关节外科高绪仁膝肩髋关节医疗团队2016年10月25日周三的团队分享会的主题是:《老年人髋关节周围骨质会发生什么变化?如何做好老年人髋部骨折的骨质评估?》。



PLoS One. 2016 Oct 24;11(10):e0164949. doi: 10.1371/journal.pone.0164949. eCollection 2016.

Reconsideration of the Effects of Age on Proximal Femur Structure: Implications for Joint Replacement and Hip Fracture.

Khoo BC 1, 2, 3, Brown JK 4, Prince RL 3, 5.
Author information
  • 1Medical Technology & Physics, Sir Charles Gairdner Hospital, Perth, Western Australia, Australia.

  • 2School of Physics, University of Western Australia, Perth, Western Australia, Australia.

  • 3School of Medicine and Pharmacology, University of Western Australia, Perth, Western Australia, Australia.

  • 4Mindways Software Inc., Austin, Texas, United States of America.

  • 5Department of Endocrinology & Diabetes, Sir Charles Gairdner Hospital, Perth, Western Australia, Australia.

Abstract
OBJECTIVES:

In recent years quantitative computed tomography (QCT) has allowed precise non-invasive, three dimensional, in vivo measurement of hip structure in large numbers of individuals. The effects of ageing on proximal femur structure are reported and implications for the prevention of hip prosthesis loosening and hip fracture considered.

DESIGN, SETTING AND PARTICIPANTS:

An observational cross-sectional study of proximal femur QCT in 719 unselected female European descent aged 20 to 89 years recruited from US and Australian populations.

MAIN OUTCOMES MEASURES:

QCT scans were obtained using software that separates cortical and cancellous bone by a thresholding technique. Voxel based mineral volume and mass was computed for the integral (external), cancellous and cortical compartments of 1 mm wide sections through the femoral neck (FN), trochanter (TR) and intertrochanter (IT) regions.

RESULTS:

Over the adult life span total integral volumes at the FN, TR and IT sites expand linearly by between 18 and 37% at the same time as bone mass decreased by 22 to 25% resulting in massive reductions in true volumetric BMD (vBMD) of 40 to 50%. Cancellous volume expansion was larger at 65 to 79% at the three sites. Between the ages of 65 and 75 the average increase in cancellous volume at the IT site was 3.74 cm3 (12.1%). Voxel determined FN cortical volume decreased linearly by 43%, as did cortical bone mass so that vBMD did not change substantially. TR and IT cortical volumes decreased 54 and 28% respectively, small reductions in TR and IT cortical vBMD also occurred.

CONCLUSIONS:

Large endosteal expansion in the area in which hip replacement stem placement occurs may contribute to loosening. Regarding the propensity to hip fracture, periosteal expansion contributes to increased resistance to bending but cortical thinning contributes to loss of bone to resistance to bending forces. Understanding individual hip structure may contribute to individualisation of risk and subsequent targeting of management using pharmaceutical agents.

PMID: 27776156 DOI: 10.1371/journal.pone.0164949




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