首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >A new ultrafast 3D gradient echo‐based imaging method using quadratic‐phase encoding
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A new ultrafast 3D gradient echo‐based imaging method using quadratic‐phase encoding

机译:一种新的超自辐3D梯度回波基成像方法,使用二次阶段编码

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摘要

Purpose To propose a novel 3D ultrafast gradient echo‐based MRI method, dubbed RASE, using quadratic‐phase encoding. Theory and Methods Several characteristics of RASE, including spin behaviors, spatial resolution, SNR, and reduction of susceptibility‐induced signal loss, were analytically described. A way of compensating for TE variation was suggested in the quadratic phase‐encoding direction. Lemon, in vivo rat and mouse images were demonstrated at 9.4T, including a feasibility study for DCE‐MRI as one of promising applications. Results RASE was successfully demonstrated by lemon and in vivo rat brain imaging, showing a good robustness to field inhomogeneity. Contribution of the quadratic phase to signal enhancement in a range of magnetic susceptibilities was also evaluated by simulation. Taking a geometric mean of 2 phantom data acquired with opposite gradient polarities effectively compensated for the effect of TE variation. Preliminary DCE‐MRI results were also presented, showing that RASE could more accurately estimate Gd concentration than FLASH. Conclusion RASE offers a shorter effective TE, having less sensitivity to field inhomogeneity and T 2 * effects, much less Nyquist ghosting or chemical‐shift artifacts than gradient echo EPI (GE‐EPI). We highly anticipate that RASE can be an alternative to GE‐EPI in many applications, particularly those requiring high spatial and temporal resolutions in a broad volume coverage.
机译:目的提出一种新型3D超快梯度回波的MRI方法,配合rase,使用二次相位编码。理论和方法在分析描述了rase的几种特征,包括自旋行为,空间分辨率,SNR和减少易感诱导的信号损失。在二次相位编码方向上提出了一种补偿TE变化的方法。柠檬,体内RAT和小鼠图像中的9.4T,包括DCE-MRI的可行性研究,作为有前途的应用之一。结果通过柠檬和体内大鼠脑成像成功地证明了Rase,表明对现场不均匀性具有良好的稳健性。通过模拟评估了二次阶段在一系列磁性敏感度中增强的二次阶段的贡献。采用具有相反梯度极性获取的2幻像数据的几何平均值,有效地补偿了TE变化的影响。还提出了初步DCE-MRI结果,表明Rase可以更准确地估计GD浓度而不是闪光。结论Rase提供更短的有效TE,对场不均匀性和T 2 *效果的敏感性较小,奈奎斯特重影或化学转移伪像比梯度回声EPI(GE-EPI)更少。我们高度预测,RASE可以是许多应用中GE-EPI的替代方案,特别是那些需要在广泛体积覆盖范围内的高空间和时间分辨率的替代。

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