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Implementation and Application of PSF-Based EPI Distortion Correction to High Field Animal Imaging

机译:基于PSF的EPI失真校正在高场动物成像中的实现与应用

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摘要

The purpose of this work is to demonstrate the functionality and performance of a PSF-based geometric distortion correction for high-field functional animal EPI. The EPI method was extended to measure the PSF and a postprocessing chain was implemented in Matlab for offline distortion correction. The correction procedure was applied to phantom and in vivo imaging of mice and rats at 9.4T using different SE-EPI and DWI-EPI protocols. Results show the significant improvement in image quality for single- and multishot EPI. Using a reduced FOV in the PSF encoding direction clearly reduced the acquisition time for PSF data by an acceleration factor of 2 or 4, without affecting the correction quality.
机译:这项工作的目的是演示用于高场功能动物EPI的基于PSF的几何失真校正的功能和性能。 EPI方法已扩展到可以测量PSF,并且在Matlab中实现了用于脱机失真校正的后处理链。使用不同的SE-EPI和DWI-EPI方案将校正程序应用于9.4T小鼠和大鼠的幻像和体内成像。结果表明,单次和多次EPI的图像质量都有显着改善。在PSF编码方向上使用减小的FOV可以明显地将PSF数据的获取时间缩短2或4,而不影响校正质量。

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