Modern low-field MRI.

IF 1.9 3区 医学 Q2 ORTHOPEDICS Skeletal Radiology Pub Date : 2024-09-01 Epub Date: 2024-02-21 DOI:10.1007/s00256-024-04597-4
Tobias Pogarell, Rafael Heiss, Rolf Janka, Armin M Nagel, Michael Uder, Frank W Roemer
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Abstract

This narrative review explores recent advancements and applications of modern low-field (≤ 1 Tesla) magnetic resonance imaging (MRI) in musculoskeletal radiology. Historically, high-field MRI systems (1.5 T and 3 T) have been the standard in clinical practice due to superior image resolution and signal-to-noise ratio. However, recent technological advancements in low-field MRI offer promising avenues for musculoskeletal imaging. General principles of low-field MRI systems are being introduced, highlighting their strengths and limitations compared to high-field counterparts. Emphasis is placed on advancements in hardware design, including novel magnet configurations, gradient systems, and radiofrequency coils, which have improved image quality and reduced susceptibility artifacts particularly in musculoskeletal imaging. Different clinical applications of modern low-field MRI in musculoskeletal radiology are being discussed. The diagnostic performance of low-field MRI in diagnosing various musculoskeletal pathologies, such as ligament and tendon injuries, osteoarthritis, and cartilage lesions, is being presented. Moreover, the discussion encompasses the cost-effectiveness and accessibility of low-field MRI systems, making them viable options for imaging centers with limited resources or specific patient populations. From a scientific standpoint, the amount of available data regarding musculoskeletal imaging at low-field strengths is limited and often several decades old. This review will give an insight to the existing literature and summarize our own experiences with a modern low-field MRI system over the last 3 years. In conclusion, the narrative review highlights the potential clinical utility, challenges, and future directions of modern low-field MRI, offering valuable insights for radiologists and healthcare professionals seeking to leverage these advancements in their practice.

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现代低场磁共振成像
这篇叙述性综述探讨了现代低场(≤ 1 特斯拉)磁共振成像(MRI)在肌肉骨骼放射学中的最新进展和应用。一直以来,高场磁共振成像系统(1.5 T 和 3 T)因其卓越的图像分辨率和信噪比而成为临床实践中的标准。然而,低场磁共振成像技术的最新进展为肌肉骨骼成像提供了广阔的前景。本文介绍了低场核磁共振成像系统的一般原理,重点介绍了与高场核磁共振成像系统相比,低场核磁共振成像系统的优势和局限性。重点介绍了硬件设计方面的进步,包括新型磁体配置、梯度系统和射频线圈,这些技术提高了图像质量,减少了易感伪影,尤其是在肌肉骨骼成像方面。目前正在讨论现代低场磁共振成像在肌肉骨骼放射学中的不同临床应用。介绍了低场磁共振成像在诊断各种肌肉骨骼病变(如韧带和肌腱损伤、骨关节炎和软骨损伤)方面的诊断性能。此外,还讨论了低场磁共振成像系统的成本效益和可及性,使其成为资源有限或病人群体特殊的成像中心的可行选择。从科学的角度来看,有关低场强度下肌肉骨骼成像的可用数据数量有限,而且通常已有几十年的历史。本综述将对现有文献进行深入分析,并总结我们在过去三年中使用现代低场磁共振成像系统的经验。总之,这篇叙述性综述强调了现代低场磁共振成像的潜在临床用途、挑战和未来发展方向,为放射科医生和医疗保健专业人员在实践中寻求利用这些进步提供了宝贵的见解。
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来源期刊
Skeletal Radiology
Skeletal Radiology 医学-核医学
CiteScore
4.40
自引率
9.50%
发文量
253
审稿时长
3-8 weeks
期刊介绍: Skeletal Radiology provides a forum for the dissemination of current knowledge and information dealing with disorders of the musculoskeletal system including the spine. While emphasizing the radiological aspects of the many varied skeletal abnormalities, the journal also adopts an interdisciplinary approach, reflecting the membership of the International Skeletal Society. Thus, the anatomical, pathological, physiological, clinical, metabolic and epidemiological aspects of the many entities affecting the skeleton receive appropriate consideration. This is the Journal of the International Skeletal Society and the Official Journal of the Society of Skeletal Radiology and the Australasian Musculoskelelal Imaging Group.
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