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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Optimization and validation of methods for mapping of the radiofrequency transmit field at 3T.
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Optimization and validation of methods for mapping of the radiofrequency transmit field at 3T.

机译:对3T处的射频发射场进行映射的方法的优化和验证。

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摘要

MRI techniques such as quantitative imaging and parallel transmit require precise knowledge of the radio-frequency transmit field (B(1) (+)). Three published methods were optimized for robust B(1) (+) mapping at 3T in the human brain: three-dimensional (3D) actual flip angle imaging (AFI), 3D echo-planar imaging (EPI), and two-dimensional (2D) stimulated echo acquisition mode (STEAM). We performed a comprehensive comparison of the methods, focusing on artifacts, reproducibility, and accuracy compared to a reference 2D double angle method. For the 3D AFI method, the addition of flow-compensated gradients for diffusion damping reduced the level of physiological artifacts and improved spoiling of transverse coherences. Correction of susceptibility-induced artifacts alleviated image distortions and improved the accuracy of the 3D EPI imaging method. For the 2D STEAM method, averaging over multiple acquisitions reduced the impact of physiological noise and a new calibration method enhanced the accuracy of the B(1) (+) maps. After optimization, all methods yielded low noise B(1) (+) maps (below 2 percentage units), of the nominal flip angle value (p.u.) with a systematic bias less than 5 p.u. units. Full brain coverage was obtained in less than 5 min. The 3D AFI method required minimal postprocessing and showed little sensitivity to off-resonance and physiological effects. The 3D EPI method showed the highest level of reproducibility. The 2D STEAM method was the most time-efficient technique.
机译:诸如定量成像和并行传输之类的MRI技术需要对射频传输场(B(1)(+))的准确了解。三种已发布的方法针对人脑在3T时的鲁棒B(1)(+)映射进行了优化:三维(3D)实际翻转角成像(AFI),3D回波平面成像(EPI)和二维( 2D)受激回波采集模式(STEAM)。与参考二维双角度方法相比,我们对方法进行了全面的比较,重点是伪影,重现性和准确性。对于3D AFI方法,为弥散阻尼添加流量补偿梯度可减少生理伪影的水平,并改善横向相干性。磁化伪影的校正可以减轻图像失真,并提高3D EPI成像方法的准确性。对于2D STEAM方法,对多次采集进行平均可以减少生理噪声的影响,而新的校准方法则可以提高B(1)(+)映射的准确性。经过优化后,所有方法均产生了标称翻转角度值(p.u.)的低噪声B(1)(+)映射(低于2个百分比单位),系统偏差小于5p.u。单位。不到5分钟即可获得全脑覆盖。 3D AFI方法需要最少的后处理,并且对非共振和生理效应几乎不敏感。 3D EPI方法显示出最高的可重复性。 2D STEAM方法是最省时的技术。

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