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MultiSlice CAIPIRINHA Using View Angle Tilting Technique (CAIPIVAT)

机译:使用视角倾斜技术(CAIPIVAT)的多层CAIPIRINHA

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摘要

We aim to focus on improving the performance of slice parallel imaging while simultaneously correcting for spatial shift artifacts related to off-resonance. In multislice controlled aliasing in parallel imaging results in higher acceleration (CAIPIRINHA), simultaneously excited slices are shifted along the phase-encoding direction by varying the radiofrequency phase for each slice, thereby obtaining virtually shifted coil sensitivity information. Meanwhile, the view angle tilting (VAT) technique provides additional shifts in the readout direction to further spread an image overlap while correcting for field inhomogeneity-induced spatial misregistration using a compensation gradient. By combining these features of CAIPIRINHA and VAT, named CAIPIVAT, the excited individual slices are shifted along both phase-encoding and readout directions. Consequently, the number of aliased voxels is reduced, and the virtual coil sensitivity information is more effectively used. Blurring due to the compensation gradient in VAT was alleviated by using a constrained least square filter. The advantages of CAIPIVAT are shown by signal-to-noise ratio simulation, phantom experiments, and in vivo experiments. Thus, CAIPIVAT can be useful for multislice parallel imaging while providing the correction of off-resonance-related spatial shift artifact.
机译:我们的目标是专注于提高切片平行成像的性能,同时校正与偏共振有关的空间偏移伪像。在并行成像中的多层控制混叠中,会产生更高的加速度(CAIPIRINHA),同时,通过改变每个切片的射频相位,使激发的切片同时沿相位编码方向移动,从而获得实际上偏移的线圈灵敏度信息。同时,视角倾斜(VAT)技术在读出方向上提供了其他偏移,以进一步扩展图像重叠,同时使用补偿梯度校正场不均匀性引起的空间重合失调。通过组合CAIPIRINHA和名为CAIPIVAT的VAT的这些功能,被激发的单个切片沿相位编码和读出方向移动。因此,减少了混叠体素的数量,并且更有效地使用了虚拟线圈灵敏度信息。通过使用约束最小二乘滤波器,可以减轻由于增值税中的补偿梯度引起的模糊。 CAIPIVAT的优势通过信噪比模拟,体模实验和体内实验得到证明。因此,CAIPIVAT可用于多层并行成像,同时提供与共振无关的空间偏移伪影的校正。

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