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定量磁共振成像探测关节软骨损伤和疾病。

Probing articular cartilage damage and disease by quantitative magnetic resonance imaging.

机构信息

Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN 47907, USA.

出版信息

J R Soc Interface. 2013 Jan 6;10(78):20120608. doi: 10.1098/rsif.2012.0608.

Abstract

Osteoarthritis (OA) is a debilitating disease that reflects a complex interplay of biochemical, biomechanical, metabolic and genetic factors, which are often triggered by injury, and mediated by inflammation, catabolic cytokines and enzymes. An unmet clinical need is the lack of reliable methods that are able to probe the pathogenesis of early OA when disease-rectifying therapies may be most effective. Non-invasive quantitative magnetic resonance imaging (qMRI) techniques have shown potential for characterizing the structural, biochemical and mechanical changes that occur with cartilage degeneration. In this paper, we review the background in articular cartilage and OA as it pertains to conventional MRI and qMRI techniques. We then discuss how conventional MRI and qMRI techniques are used in clinical and research environments to evaluate biochemical and mechanical changes associated with degeneration. Some qMRI techniques allow for the use of relaxometry values as indirect biomarkers for cartilage components. Direct characterization of mechanical behaviour of cartilage is possible via other specialized qMRI techniques. The combination of these qMRI techniques has the potential to fully characterize the biochemical and biomechanical states that represent the initial changes associated with cartilage degeneration. Additionally, knowledge of in vivo cartilage biochemistry and mechanical behaviour in healthy subjects and across a spectrum of osteoarthritic patients could lead to improvements in the detection, management and treatment of OA.

摘要

骨关节炎(OA)是一种使人虚弱的疾病,反映了生化、生物力学、代谢和遗传因素的复杂相互作用,这些因素通常由损伤引发,并由炎症、分解代谢细胞因子和酶介导。临床上尚未满足的需求是缺乏可靠的方法来探测早期 OA 的发病机制,因为在疾病纠正治疗可能最有效的时候。非侵入性定量磁共振成像(qMRI)技术已显示出具有特征性的潜力,可以描述发生软骨退变时的结构、生化和机械变化。在本文中,我们回顾了关节软骨和 OA 的背景知识,这些知识与常规 MRI 和 qMRI 技术有关。然后,我们讨论了常规 MRI 和 qMRI 技术如何在临床和研究环境中用于评估与退变相关的生化和机械变化。一些 qMRI 技术允许使用弛豫率值作为软骨成分的间接生物标志物。通过其他专门的 qMRI 技术可以直接描述软骨的力学行为。这些 qMRI 技术的结合有可能全面描述代表与软骨退变相关的初始变化的生化和生物力学状态。此外,了解健康受试者和各种骨关节炎患者的体内软骨生物化学和力学行为,可能会导致在 OA 的检测、管理和治疗方面取得进展。

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