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Assessment of in vivo 1H magnetic resonance spectroscopy in the liver: a review.

机译:肝脏中体内1H磁共振波谱的评估:审查。

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With increased availability of magnetic resonance (MR) systems at ultra-high field strength for clinical studies, other organs besides the brain have received renewed consideration for MR spectroscopy (MRS). Because signal-to-noise ratio and chemical shift increase proportional to the static magnetic field, a concomitant increase in signal intensity and spectral resolution of metabolite resonances can be exploited. Improved resolution of adjacent metabolite peaks would not only provide for more accuracy of metabolite identification but also metabolite quantification. While the superiority of high-field imaging and spectroscopy has already been demonstrated clearly in the brain, this article reviewed issues around 1H MRS of the liver. These include optimization strategies such as coil technology, minimizing of motion artefacts using breath-holding and postprocessing of the spectra. Moreover, we reviewed the pertinent experience hitherto reported in the literature on potential clinical issues where liverMRS may be useful. These included determination and characterization of liver fat content, liver tumours and focal lesions. While these applications have been used experimentally, liver MRS does not yet have a clearly defined role in the clinical management of any disease state. Accordingly, it remains primarily a research modality to date.
机译:随着用于临床研究的超高磁场强度的磁共振(MR)系统可用性的提高,除大脑外的其他器官也受到了MR光谱学(MRS)的重新考虑。因为信噪比和化学位移与静磁场成比例增加,所以可以利用代谢物共振的信号强度和光谱分辨率的同时增加。改善相邻代谢物峰的分辨率,不仅可以提高代谢物鉴定的准确性,而且还可以提高代谢物的定量。尽管高磁场成像和光谱学的优越性已在大脑中得到清晰证明,但本文还是回顾了肝脏1H MRS的相关问题。这些措施包括优化策略,例如线圈技术,使用屏气和频谱后处理来最大程度地减少运动伪影。此外,我们回顾了迄今有关肝MRS可能有用的潜在临床问题的文献报道。这些包括测定和表征肝脂肪含量,肝肿瘤和局灶性病变。尽管这些应用已通过实验使用,但肝脏MRS在任何疾病状态的临床管理中尚未明确定义。因此,迄今为止,它仍然主要是一种研究形式。

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