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System and method for ultrafast magnetic resonance spectroscopic imaging using learned spectral features

机译:超快磁共振光谱成像的系统和方法,使用学习谱特征

摘要

A new method is developed for ultrafast, high-resolution magnetic resonance spectroscopic imaging (MRSI) using learned spectral features. The method uses Free Induction Decay (FID) based ultrashort-TE and short-TR acquisition without any solvent suppression pulses to generate the desired spatiospectral encodings. The spectral features for the desired molecules are learned from specifically designed “training” data by taking into account the resonance structure of each compound generated by quantum mechanical simulations. A union-of-subspaces model that incorporates the learned spectral features is used to effectively separate the unsuppressed water/lipid signals, the metabolite signals, and the macromolecule signals. The unsuppressed water spectroscopic signals in the data can be used for various purposes, e.g., removing the need of additional auxiliary scans for calibration, and for generating high quality quantitative tissue susceptiability mapping etc. Simultaneous spatiospectral reconstructions of water, lipids, metabolite and macromolecule can be obtained using a single 1H-MRSI scan.
机译:使用学习光谱特征开发了一种用于超快,高分辨率磁共振光谱成像(MRSI)的新方法。该方法使用基于基于诱导衰减(FID)的UltraShort-Te和短TR采集,而没有任何溶剂抑制脉冲以产生所需的斯基塔谱编码。通过考虑量子机械模拟产生的每个化合物的共振结构,从专门设计的“训练”数据中学习所需分子的光谱特征。包含所学习频谱特征的子空间模型用于有效地分离未抑制的水/脂信号,代谢物信号和大分子信号。数据中的未抑制的水谱信号可以用于各种目的,例如,除去需要额外的辅助扫描进行校准,以及用于产生高质量的定量组织敏感性映射等。同时吐痰,脂质,代谢物和大分子的同时痉挛重建使用单个 1 H-MRSI扫描获得。

著录项

  • 公开/公告号US11079453B2

    专利类型

  • 公开/公告日2021-08-03

    原文格式PDF

  • 申请/专利号US201816643239

  • 发明设计人 ZHI-PEI LIANG;FAN LAM;

    申请日2018-08-23

  • 分类号G01R33/485;A61B5;A61B5/055;G01R33/24;G01R33/34;G01R33/46;G01R33/465;G01R33/48;G01R33/56;G01R33/561;

  • 国家 US

  • 入库时间 2022-08-24 20:18:24

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