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成人高分辨率外周 CT(HR-pQCT)的临床应用:现状与未来方向。

The clinical application of high-resolution peripheral computed tomography (HR-pQCT) in adults: state of the art and future directions.

机构信息

Department of Internal Medicine, VieCuri Medical Center, Venlo, The Netherlands.

Department of Internal Medicine, Maastricht University Medical Center, Maastricht, The Netherlands.

出版信息

Osteoporos Int. 2021 Aug;32(8):1465-1485. doi: 10.1007/s00198-021-05999-z. Epub 2021 May 22.

Abstract

High-resolution peripheral computed tomography (HR-pQCT) was developed to image bone microarchitecture in vivo at peripheral skeletal sites. Since the introduction of HR-pQCT in 2005, clinical research to gain insight into pathophysiology of skeletal fragility and to improve prediction of fractures has grown. Meanwhile, the second-generation HR-pQCT device has been introduced, allowing novel applications such as hand joint imaging, assessment of subchondral bone and cartilage thickness in the knee, and distal radius fracture healing. This article provides an overview of the current clinical applications and guidance on interpretation of results, as well as future directions. Specifically, we provide an overview of (1) the differences and reference data for HR-pQCT variables by age, sex, and race/ethnicity; (2) fracture risk prediction using HR-pQCT; (3) the ability to monitor response of anti-osteoporosis therapy with HR-pQCT; (4) the use of HR-pQCT in patients with metabolic bone disorders and diseases leading to secondary osteoporosis; and (5) novel applications of HR-pQCT imaging. Finally, we summarize the status of the application of HR-pQCT in clinical practice and discuss future directions. From the clinical perspective, there are both challenges and opportunities for more widespread use of HR-pQCT. Assessment of bone microarchitecture by HR-pQCT improves fracture prediction in mostly normal or osteopenic elderly subjects beyond DXA of the hip, but the added value is marginal. The prospects of HR-pQCT in clinical practice need further study with respect to medication effects, metabolic bone disorders, rare bone diseases, and other applications such as hand joint imaging and fracture healing. The mostly unexplored potential may be the differentiation of patients with only moderately low BMD but severe microstructural deterioration, which would have important implications for the decision on therapeutical interventions.

摘要

高分辨率外周 CT(HR-pQCT)用于在活体外周骨骼部位对骨微观结构进行成像。自 2005 年 HR-pQCT 问世以来,为深入了解骨骼脆弱的病理生理学并提高骨折预测能力而开展的临床研究不断增加。同时,第二代 HR-pQCT 设备也已问世,允许进行新的应用,如手关节成像、膝关节软骨下骨和软骨厚度评估以及桡骨远端骨折愈合评估。本文概述了当前的临床应用以及结果解读指导,同时探讨了未来的发展方向。具体而言,我们概述了(1)HR-pQCT 变量在年龄、性别和种族/民族方面的差异和参考数据;(2)使用 HR-pQCT 预测骨折风险;(3)使用 HR-pQCT 监测抗骨质疏松治疗的反应;(4)在代谢性骨疾病和导致继发性骨质疏松症的疾病患者中使用 HR-pQCT;以及(5)HR-pQCT 成像的新应用。最后,我们总结了 HR-pQCT 在临床实践中的应用现状,并讨论了未来的发展方向。从临床角度来看,HR-pQCT 的更广泛应用既面临挑战,也存在机遇。HR-pQCT 评估骨微观结构可提高髋部 DXA 检查基本正常或骨量减少的老年患者的骨折预测能力,但附加值有限。HR-pQCT 在药物疗效、代谢性骨疾病、罕见骨疾病以及手关节成像和骨折愈合等其他应用方面的临床应用前景需要进一步研究。尚未探索的潜力可能在于区分仅有中度低骨密度但微观结构严重恶化的患者,这对于治疗干预决策具有重要意义。

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