在混合水/油模的梯度召回回波图像中使用输入-输出信号周期映射评价磁场均匀性,作为日常质量控制的粗略指示

Y. Ishimori, H. Kawamura, M. Monma
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引用次数: 1

摘要

目的:磁场(b0)均匀性对磁共振成像(MRI)系统的性能很重要。传统上,b0均匀性是使用光谱峰或相位映射方法测量的。然而,MRI操作员通常无法进行这些操作,也很少常规操作。本研究提出了一种新的测量b0均匀性的方法,可以在日常质量控制(QC)中实施。方法:采用梯度回忆回波(GRE)脉冲序列对均匀混合水/油影进行成像,信号强度随回波时间(TE)动态变化。以此为基础,采用单形曲线拟合算法逐像素计算谐振频率。以共振频率标准差(SD)作为b0均匀性的指标。考察了适宜的TE模式和b0均匀性评价的可行性。结果:在1.5 t扫描仪中测量稳定的SD需要超过7个te(选择标称的同相,外相和两者的中点)。随着b0均匀性的恶化,偏离中心位置的SD变大。虽然与相位差法得到的光谱峰宽呈正相关,但SD值约为5 × 10 4倍。因此,SD只能作为b0均匀性的指标。使用0.3 t扫描仪获得了类似的结果。通过在几分钟内获取几张水/油混合幻影的GRE图像,可以获得地图和SD。结论:进出信号周期映射可以很容易地实现所有MRI扫描仪的日常质量控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of magnetic field homogeneity using in-out signal cycle mapping in gradient recalled echo images of a mixed water/oil phantom as a rough indication for daily quality control
Objective: Magnetic field (B 0 ) homogeneity is important for the performance of a magnetic resonance imaging (MRI) system. Traditionally, B 0 homogeneity was measured using the spectral peak or phase-mapping methods. However, these procedures are not generally accessible to the MRI operator and are rarely performed routinely. This study proposes a novel method for measuring B 0 homogeneity that can be implemented in daily quality control (QC). Methods: When a uniformly mixed water/oil phantom was imaged using a gradient recalled echo (GRE) pulse sequence, the signal intensity dynamically changed with echo time (TE). From this, the resonant frequency was calculated with a simplex curve-fitting algorithm on a pixel-by-pixel basis. The standard deviation of resonant frequency (SD) was used as the index of B 0 homogeneity. The appropriate TE pattern and feasibility of B 0 homogeneity evaluation were examined. Results: Over seven TEs (choosing nominal in-phase, out-phase, and the midpoints of both) were required to measure stable SD in a 1.5-T scanner. As B 0 homogeneity worsened, the SD became larger at the off-center position. Although a positive correlation was observed with the width of the spectral peak obtained by the phase-difference method, the SD value was about 5 × 10 4 times greater. Therefore, SD can be used only as an index of B 0 homogeneity. Similar results were obtained using a 0.3-T scanner. A  map and SD can be obtained by acquiring several GRE images of a water/oil mixed phantom within a few minutes. Conclusions: In-out signal cycle mapping can be easily implemented for daily QC in all MRI scanners.
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