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[低场磁共振成像:只是成本更低还是完全不同?]

[Low-field magnetic resonance imaging : Just less expensive or completely different?].

作者信息

Hennig Jürgen

机构信息

Medizin Physik, Klinik für Diagnostische und Interventionelle Radiologie, Killianstr. 5A, 79106, Freiburg, Deutschland.

出版信息

Radiologe. 2022 May;62(5):385-393. doi: 10.1007/s00117-022-00977-w. Epub 2022 Mar 8.

Abstract

Over the years the development of field strength in magnetic resonance imaging (MRI) has continued to increase from the low-field systems in the early years (0.2-0.5 T) to 1.5 T to 3 T to 7 T and more. In the last 2 years, there has been a renewed interest in MRI at lower fields, mainly driven by the development of "dry" superconductive magnets. The following article demonstrates that this renewed interest for lower fields is not a déjà vu purely driven by economic needs. The field strength appears to be from yesterday, but the combination with the tremendous improvements and innovations of all relevant components-gradients, radiofrequency system and especially new algorithms including the use of artificial intelligence (AI)-allow the realization of diagnostically adequate MRI without compromise in patient throughput and efficiency. In addition to the lower field, there are also some inherent advantages, e.g., for MRI of the lung and of metallic implants and especially for interventional MRI. It has already been shown that many of the devices used for interventional procedures (catheters, biopsy needles) can be used at lower fields without costly modifications. In addition, low-field MRI also allows the robust use of highly efficient sampling methods like spiral MRI. It is therefore safe to predict that low-field MRI is not only a cost-efficient compromise, but has the potential to open up new fields of application.

摘要

多年来,磁共振成像(MRI)的场强不断提升,从早期的低场系统(0.2 - 0.5 T)发展到1.5 T、3 T、7 T甚至更高。在过去两年中,低场MRI重新引起了人们的关注,这主要是由“干式”超导磁体的发展所推动。以下文章表明,对低场MRI的这种重新关注并非仅仅出于经济需求的似曾相识。场强看似是过去的,但与所有相关组件(梯度、射频系统,尤其是包括人工智能(AI)应用的新算法)的巨大改进和创新相结合,能够在不影响患者通量和效率的情况下实现诊断足够的MRI。除了低场之外,还有一些固有优势,例如用于肺部和金属植入物的MRI,特别是用于介入MRI。已经表明,许多用于介入操作的设备(导管、活检针)在低场下无需进行昂贵的改装即可使用。此外,低场MRI还允许稳健地使用高效采样方法,如螺旋MRI。因此,可以有把握地预测,低场MRI不仅是一种具有成本效益的折中方案,而且有潜力开辟新的应用领域。

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