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首页> 外文期刊>NMR in biomedicine >Density‐weighted concentric rings kk ‐space trajectory for 11 H magnetic resonance spectroscopic imaging at 7?T
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Density‐weighted concentric rings kk ‐space trajectory for 11 H magnetic resonance spectroscopic imaging at 7?T

机译:密度加权同心环 k k -space轨迹用于 1 1 h磁共振光谱成像在7Ωt

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摘要

> It has been shown that density‐weighted (DW) k ‐space sampling with spiral and conventional phase encoding trajectories reduces spatial side lobes in magnetic resonance spectroscopic imaging (MRSI). In this study, we propose a new concentric ring trajectory (CRT) for DW‐MRSI that samples k ‐space with a density that is proportional to a spatial, isotropic Hanning window. The properties of two different DW‐CRTs were compared against a radially equidistant (RE) CRT and an echo‐planar spectroscopic imaging (EPSI) trajectory in simulations, phantoms and in vivo experiments. These experiments, conducted at 7 T with a fixed nominal voxel size and matched acquisition times, revealed that the two DW‐CRT designs improved the shape of the spatial response function by suppressing side lobes, also resulting in improved signal‐to‐noise ratio (SNR). High‐quality spectra were acquired for all trajectories from a specific region of interest in the motor cortex with an in‐plane resolution of 7.5 × 7.5 mm 2 in 8 min 3 s. Due to hardware limitations, high‐spatial‐resolution spectra with an in‐plane resolution of 5 × 5 mm 2 and an acquisition time of 12 min 48 s were acquired only for the RE and one of the DW‐CRT trajectories and not for EPSI. For all phantom and in vivo experiments, DW‐CRTs resulted in the highest SNR. The achieved in vivo spectral quality of the DW‐CRT method allowed for reliable metabolic mapping of eight metabolites including N‐acetylaspartylglutamate, γ‐aminobutyric acid and glutathione with Cramér‐Rao lower bounds below 50%, using an LCModel analysis. Finally, high‐quality metabolic mapping of a whole brain slice using DW‐CRT was achieved with a high in‐plane resolution of 5 × 5 mm
机译:

已经显示了密度加权(DW) K - 空间采样,带螺旋和传统的相位编码轨迹减少了空间侧在磁共振光谱成像(MRSI)中的裂片。在这项研究中,我们为DW-MRSI提出了一种新的同心环轨迹(CRT),其具有与空间,各向同性的汉语窗口成比例的密度的 k - 空间。将两种不同DW-CRT的性质与径向等距(RE)CRT和在体内实验中的模拟,幽灵和中的回声平面光谱成像(EPSI)轨迹进行比较。这些实验以固定的标称体素尺寸和匹配的采集时间进行,揭示了两种DW-CRT设计通过抑制侧瓣改善空间响应功能的形状,也导致了改善的信噪比( SNR)。从电机皮层中的特定感兴趣区域的所有轨迹获得高质量光谱,在8分钟内,面内分辨率为7.5×7.5mm 2 。由于硬件限制,具有5×5mm 2 的平面分辨率的高空间分辨率光谱和12分钟48s的采集时间为RE和一个DW -crt轨迹而不是EPSI。对于所有幻影和在体内实验中,DW-CRT导致最高的SNR。达到的DW-CRT方法中的达到的DW-CRT方法的谱质量允许占八种代谢物的可靠代谢映射,包括N-acetylasparylylylamate,γ-氨基丁酸和谷胱甘肽,使用克拉姆 - ro-Rao低于50%,使用LCModel分析。最后,使用DW-CRT的高质量代谢映射,使用5×5mm的高面积分辨率实现了DW-CRT

著录项

  • 来源
    《NMR in biomedicine》 |2018年第1期|共14页
  • 作者单位

    Wellcome Centre for Integrative Neuroimaging FMRIB Division Nuffield Department of Clinical NeurosciencesUniversity of OxfordJohn Radcliffe Hospital Oxford UK;

    Department of Radiology and Biomedical ImagingUniversity of CaliforniaSan Francisco CA USA;

    Department of OncologyUniversity of OxfordOxford UK;

    Department of Radiology and Biomedical ImagingUniversity of CaliforniaSan Francisco CA USA;

    Wellcome Centre for Integrative Neuroimaging FMRIB Division Nuffield Department of Clinical NeurosciencesUniversity of OxfordJohn Radcliffe Hospital Oxford UK;

    Wellcome Centre for Integrative Neuroimaging FMRIB Division Nuffield Department of Clinical NeurosciencesUniversity of OxfordJohn Radcliffe Hospital Oxford UK;

    Department of Radiological SciencesUniversity of CaliforniaLos Angeles CA USA;

    Wellcome Centre for Integrative Neuroimaging FMRIB Division Nuffield Department of Clinical NeurosciencesUniversity of OxfordJohn Radcliffe Hospital Oxford UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 放射医学;
  • 关键词

    echo‐planar; spectroscopic imaging; concentric rings; spectroscopic imaging; ultra‐high field;

    机译:回声平面;光谱成像;同心环;光谱成像;超高场;

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