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超高场 MRI:真正与众不同的地方。

Ultrahigh-field MRI: where it really makes a difference.

机构信息

High-Field MR Center - 7T MR, Department of Biomedical Imaging and Image-guided Therapy, Medical University Vienna, Lazarettgasse 14, 1090, Vienna, Austria.

Department of Imaging Methods, Institute of Measurement Science, Slovak Academy of Sciences, Dubravska cesta 9, 84104, Bratislava, Slovakia.

出版信息

Radiologie (Heidelb). 2024 Nov;64(Suppl 1):1-8. doi: 10.1007/s00117-023-01184-x. Epub 2023 Aug 16.

Abstract

BACKGROUND

Currently, two major magnetic resonance (MR) vendors provide commercial 7‑T scanners that are approved by the Food and Drug Administration (FDA) for clinical application. There is growing interest in ultrahigh-field MRI because of the improved clinical results in terms of morphological detail, as well as functional and metabolic imaging capabilities.

MATERIALS AND METHODS

The 7‑T systems benefit from a higher signal-to-noise ratio, which scales supralinearly with field strength, a supralinear increase in the blood oxygenation level dependent (BOLD) contrast for functional MRI and susceptibility weighted imaging (SWI), and the chemical shift increases linearly with field strength with consequently higher spectral resolution.

RESULTS

In multiple sclerosis (MS), 7‑T imaging enables visualization of cortical lesions, the central vein sign, and paramagnetic rim lesions, which may be beneficial for the differential diagnosis between MS and other neuroinflammatory diseases in challenging and inconclusive clinical presentations and are seen as promising biomarkers for prognosis and treatment monitoring. The recent development of high-resolution proton MR spectroscopic imaging in clinically reasonable scan times has provided new insights into tumor metabolism and tumor grading as well as into early metabolic changes that may precede inflammatory processes in MS. This technique also improves the detection of epileptogenic foci in the brain. Multi-nuclear clinical applications, such as sodium imaging, have shown great potential for the evaluation of repair tissue quality after cartilage transplantation and in the monitoring of newly developed cartilage regenerative drugs for osteoarthritis.

CONCLUSION

For special clinical applications, such as SWI in MS, MR spectroscopic imaging in tumors, MS and epilepsy, and sodium imaging in cartilage repair, 7T may become a new standard.

摘要

背景

目前,有两家主要的磁共振(MR)供应商提供获得美国食品和药物管理局(FDA)批准可用于临床应用的 7T 扫描仪。由于在形态学细节、功能和代谢成像能力方面的临床改善,超高场 MRI 的应用兴趣日益增加。

材料和方法

7T 系统得益于更高的信噪比,该信噪比随磁场强度呈超线性增加,功能磁共振成像和磁化率加权成像(SWI)的血氧水平依赖(BOLD)对比度呈超线性增加,化学位移随磁场强度呈线性增加,从而具有更高的光谱分辨率。

结果

在多发性硬化症(MS)中,7T 成像能够可视化皮质病变、中央静脉征和顺磁性边缘病变,这可能有助于在具有挑战性和不确定的临床表现中对 MS 和其他神经炎症性疾病进行鉴别诊断,并且被视为预后和治疗监测的有前途的生物标志物。在临床合理的扫描时间内,最近开发的高分辨率质子磁共振波谱成像提供了关于肿瘤代谢和肿瘤分级以及可能先于 MS 炎症过程的早期代谢变化的新见解。该技术还提高了大脑致痫灶的检测。多核临床应用,如钠成像,在评估软骨移植后的修复组织质量以及监测新开发的骨关节炎软骨再生药物方面显示出巨大的潜力。

结论

对于特殊的临床应用,如 MS 的 SWI、肿瘤的磁共振波谱成像、MS 和癫痫、软骨修复的钠成像,7T 可能成为新标准。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52ec/11602857/beacd21f1892/117_2023_1184_Fig1_HTML.jpg

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