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首页> 外文期刊>Journal of magnetic resonance >3D localized 2D ultrafast J-resolved magnetic resonance spectroscopy: In vitro study on a 7T imaging system
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3D localized 2D ultrafast J-resolved magnetic resonance spectroscopy: In vitro study on a 7T imaging system

机译:3D局部2D超快速J分辨磁共振波谱:7T成像系统的体外研究

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摘要

2D Magnetic Resonance Spectroscopy (MRS) is a well known tool for the analysis of complicated and overlapped MR spectra and was therefore originally used for structural analysis. It also presents a potential for biomedical applications as shown by an increasing number of works related to localized in vivo experiments. However, 2D MRS suffers from long acquisition times due to the necessary collection of numerous increments in the indirect dimension (t1). This paper presents the first 3D localized 2D ultrafast J-resolved MRS sequence, developed on a small animal imaging system, allowing the acquisition of a 3D localized 2D J-resolved MRS spectrum in a single scan. Sequence parameters were optimized regarding Signal-to-Noise ratio and spectral resolution. Sensitivity and spatial localization properties were characterized and discussed. An automatic post-processing method allowing the reduction of artifacts inherent to ultrafast excitation is also presented. This sequence offers an efficient signal localization and shows a great potential for in vivo dynamic spectroscopy.
机译:二维磁共振波谱(MRS)是用于分析复杂和重叠的MR谱图的众所周知的工具,因此最初用于结构分析。正如与本地化体内实验相关的越来越多的研究表明的那样,它也为生物医学应用提供了潜力。但是,由于必须收集间接维(t1)的多个增量,因此二维MRS的获取时间较长。本文介绍了在小型动物成像系统上开发的首个3D局部2D超快J分辨MRS序列,允许在一次扫描中获取3D局部2D J分辨MRS光谱。在信噪比和频谱分辨率方面优化了序列参数。对灵敏度和空间定位特性进行了表征和讨论。还提出了一种自动后处理方法,可以减少超快激发固有的伪像。该序列提供了有效的信号定位,并显示了体内动态光谱的巨大潜力。

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