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Advanced Imaging in Femoroacetabular Impingement: Current State and Future Prospects

机译:髋臼前突撞击的高级成像:现状和未来展望

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摘要

Symptomatic femoroacetabular impingement (FAI) is now a known precursor of early osteoarthritis (OA) of the hip. In terms of clinical intervention, the decision between joint preservation and joint replacement hinges on the severity of articular cartilage degeneration. The exact threshold during the course of disease progression when the cartilage damage is irreparable remains elusive. The intention behind radiographic imaging is to accurately identify the morphology of osseous structural abnormalities and to accurately characterize the chondrolabral damage as much as possible. However, both plain radiographs and computed tomography (CT) are insensitive for articular cartilage anatomy and pathology. Advanced magnetic resonance imaging (MRI) techniques include magnetic resonance arthrography and biochemically sensitive techniques of delayed gadolinium-enhanced MRI of cartilage (dGEMRIC), T1rho (T1ρ), T2/T2* mapping, and several others. The diagnostic performance of these techniques to evaluate cartilage degeneration could improve the ability to predict an individual patient-specific outcome with non-surgical and surgical care. This review discusses the facts and current applications of biochemical MRI for hip joint cartilage assessment covering the roles of dGEMRIC, T2/T2*, and T1ρ mapping. The basics of each technique and their specific role in FAI assessment are outlined. Current limitations and potential pitfalls as well as future directions of biochemical imaging are also outlined.
机译:有症状的股骨髋臼撞击(FAI)现在是髋关节早期骨关节炎(OA)的已知先兆。在临床干预方面,关节保留与关节置换之间的决定取决于关节软骨变性的严重程度。当软骨损伤不可修复时,在疾病进展过程中的确切阈值仍然难以捉摸。射线照相成像的目的是准确识别骨结构异常的形态,并尽可能准确地表征软骨唇的损伤。但是,无论是平片还是计算机断层扫描(CT)对关节软骨的解剖学和病理都不敏感。先进的磁共振成像(MRI)技术包括磁共振关节造影和延迟延迟的软骨-增强MRI(dGEMRIC),T1rho(T1ρ),T2 / T2 *映射等生化敏感技术。这些评估软骨变性的技术的诊断性能可以提高通过非手术和手术护理预测个别患者特定结果的能力。这篇综述讨论了生化MRI在髋关节软骨评估中的事实和当前应用,涵盖了dGEMRIC,T2 / T2 *和T1ρ作图的作用。概述了每种技术的基础及其在固定资产投资评估中的特定作用。还概述了当前的局限性和潜在的陷阱以及生化成像的未来方向。

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