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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >PROPELLER-EPI with parallel imaging using a circularly symmetric phased-array RF coil at 3.0 T: application to high-resolution diffusion tensor imaging.
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PROPELLER-EPI with parallel imaging using a circularly symmetric phased-array RF coil at 3.0 T: application to high-resolution diffusion tensor imaging.

机译:PROPELLER-EPI在3.0 T下使用圆形对称相控阵RF线圈进行并行成像:应用于高分辨率扩散张量成像。

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摘要

A technique integrating multishot periodically rotated overlapping parallel lines with enhanced reconstruction (PROPELLER) and parallel imaging is presented for diffusion echo-planar imaging (EPI) at high spatial resolution. The method combines the advantages of parallel imaging to achieve accelerated sampling along the phase-encoding direction, and PROPELLER acquisition to further decrease the echo train length (ETL) in EPI. With an eight-element circularly symmetric RF coil, a parallel acceleration factor of 4 was applied such that, when combined with PROPELLER acquisition, a reduction of geometric distortions by a factor substantially greater than 4 was achieved. The resulting phantom and human brain images acquired with a 256 x 256 matrix and an ETL of only 16 were visually identical in shape to those acquired using the fast spin-echo (FSE) technique, even without field-map corrections. It is concluded that parallel PROPELLER-EPI is an effective technique that can substantially reduce susceptibility-induced geometric distortions at high field strength.
机译:提出了一种结合多次拍摄的周期性旋转重叠平行线与增强重建(PROPELLER)和平行成像的技术,用于在高空间分辨率下进行扩散回波平面成像(EPI)。该方法结合了并行成像的优势,可以实现沿相位编码方向的加速采样,并具有PROPELLER采集功能,可以进一步减小EPI中的回波列长度(ETL)。对于八元素圆形对称RF线圈,应用了4的平行加速因子,这样,当与PROPELLER采集结合使用时,就可以将几何失真的减小幅度基本上大于4。即使没有进行场图校正,使用256 x 256矩阵和仅16的ETL所获得的幻像和人脑图像在形状上与使用快速自旋回波(FSE)技术所获得的图像相同。结论是,平行PROPELLER-EPI是一种有效的技术,可以在高场强下显着降低磁化率引起的几何变形。

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