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Whole-body imaging of the musculoskeletal system: the value of MR imaging

机译:肌肉骨骼系统的全身成像:MR成像的价值

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摘要

In clinical practice various modalities are used for whole-body imaging of the musculoskeletal system, including radiography, bone scintigraphy, computed tomography, magnetic resonance imaging (MRI), and positron emission tomography-computed tomography (PET-CT). Multislice CT is far more sensitive than radiographs in the assessment of trabecular and cortical bone destruction and allows for evaluation of fracture risk. The introduction of combined PET-CT scanners has markedly increased diagnostic accuracy for the detection of skeletal metastases compared with PET alone. The unique soft-tissue contrast of MRI enables for precise assessment of bone marrow infiltration and adjacent soft tissue structures so that alterations within the bone marrow may be detected before osseous destruction becomes apparent in CT or metabolic changes occur on bone scintigraphy or PET scan. Improvements in hard- and software, including parallel image acquisition acceleration, have made high resolution whole-body MRI clinically feasible. Whole-body MRI has successfully been applied for bone marrow screening of metastasis and systemic primary bone malignancies, like multiple myeloma. Furthermore, it has recently been proposed for the assessment of systemic bone diseases predisposing for malignancy (e.g., multiple cartilaginous exostoses) and muscle disease (e.g., muscle dystrophy). The following article gives an overview on state-of-the-art whole-body imaging of the musculoskeletal system and highlights present and potential future applications, especially in the field of whole-body MRI.
机译:在临床实践中,各种形式用于肌肉骨骼系统的全身成像,包括放射线照相,骨闪烁显像,计算机断层扫描,磁共振成像(MRI)和正电子发射断层扫描计算机断层扫描(PET-CT)。在评估小梁和皮质骨破坏方面,多层CT比放射线照相更加敏感,并且可以评估骨折风险。与单独的PET相比,结合PET-CT扫描仪的引入显着提高了诊断骨骼转移的诊断准确性。 MRI独特的软组织对比可以精确评估骨髓浸润和邻近的软组织结构,从而可以在CT骨破坏明显或在骨闪烁显像或PET扫描中发生代谢变化之前就可以检测到骨髓内的改变。硬件和软件的改进(包括并行图像采集加速)使高分辨率的全身MRI在临床上可行。全身MRI已成功应用于骨髓转移和全身原发性恶性肿瘤(如多发性骨髓瘤)的筛查。此外,最近已经提出了用于评估易患恶性肿瘤(例如,多发性软骨外生糖)和肌肉疾病(例如,肌肉营养不良)的全身性骨疾病的评估。以下文章概述了肌肉骨骼系统的最新全身成像,并重点介绍了当前和潜在的未来应用,尤其是在全身MRI领域。

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