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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Magnetization‐prepared shells trajectory with automated gradient waveform design
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Magnetization‐prepared shells trajectory with automated gradient waveform design

机译:磁化制备的壳轨迹,具有自动梯度波形设计

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Purpose To develop a fully automated trajectory and gradient waveform design for the non‐Cartesian shells acquisition, and to develop a magnetization‐prepared (MP) shells acquisition to achieve an efficient three‐dimensional acquisition with improved gray‐to‐white brain matter contrast. Methods After reviewing the shells k‐space trajectory, a novel, fully automated trajectory design is developed that allows for gradient waveforms to be automatically generated for specified acquisition parameters. Designs for two types of shells are introduced, including fully sampled and undersampled/accelerated shells. Using those designs, an MP‐Shells acquisition is developed by adjusting the acquisition order of shells interleaves to synchronize the center of k‐space sampling with the peak of desired gray‐to‐white matter contrast. The feasibility of the proposed design and MP‐Shells is demonstrated using simulation, phantom, and volunteer subject experiments, and the performance of MP‐Shells is compared with a clinical Cartesian magnetization‐prepared rapid gradient echo acquisition. Results Initial experiments show that MP‐Shells produces excellent image quality with higher data acquisition efficiency and improved gray‐to‐white matter contrast‐to‐noise ratio (by 36%) compared with the conventional Cartesian magnetization‐prepared rapid gradient echo acquisition. Conclusion We demonstrated the feasibility of a three‐dimensional MP‐Shells acquisition and an automated trajectory design to achieve an efficient acquisition with improved gray‐to‐white matter contrast. Magn Reson Med 79:2024–2035, 2018. ? 2017 International Society for Magnetic Resonance in Medicine.
机译:目的是为非笛卡尔壳获取开发全自动轨迹和梯度波形设计,并开发磁化制备的(MP)壳采集,以实现具有改进的灰色到白色脑的对比度的高效三维采集。方法在审查外壳K空间轨迹之后,开发了一种新颖的全自动轨迹设计,允许为指定的采集参数自动生成梯度波形。介绍了两种类型的壳的设计,包括完全采样和上采样/加速的壳。使用这些设计,通过调整壳体交织的采集顺序来开发MP-Shell获取,以将K空间采样的中心与所需的灰色到白质对比度的峰值同步。使用仿真,幻像和志愿者进行实验证明了所提出的设计和MP壳的可行性,并将MP-Shell的性能与临床笛卡尔磁化制备的快速梯度回波采集进行比较。结果初始实验表明,与传统的笛卡尔磁化制备的快速梯度回波采集相比,MP-Shell产生具有更高的数据采集效率和改善灰度对比度 - 噪声比(通过36%)的优异图像质量。结论我们证明了三维MP - 壳采集和自动轨迹设计的可行性,以实现有效采集,以改善灰白差对比。 Magn Reson Med 79:2024-2035,2018。 2017年医学磁共振的国际社会。

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