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Body diffusion weighted imaging using non-CPMG fast spin echo

机译:使用非CPMG快速自旋回波的身体扩散加权成像

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摘要

SS-FSE is a fast technique that does not suffer from off-resonance distortions to the degree that EPI does. Unlike EPI, SS-FSE is ill-suited to diffusion weighted imaging (DWI) due to the Carr-Purcell-Meiboom-Geill (CPMG) condition. Non-CPMG phase cycling does accommodate SS-FSE and DWI but places constraints on reconstruction, which are resolved here through parallel imaging. Additionally, improved echo stability can be achieved by using short duration and highly selective DIVERSE radiofrequency pulses. Here, signal-to-noise ratio (SNR) comparisons between EPI and nCPMG SS-FSE acquisitions and reconstruction techniques give similar values. Diffusion imaging with nCPMG SS-FSE gives similar SNR to an EPI acquisition, though apparent diffusion coefficient values are higher than seen with EPI. In vivo images have good image quality with little distortion. This method has the ability to capture distortion-free DWI images near areas of significant off-resonance as well as preserve adequate SNR. Parallel imaging and DIVERSE refocusing RF pulses allow shorter ETL compared to previous implementations and thus reduces phase encode direction blur and SAR accumulation.
机译:SS-FSE是一种快速的技术,不会像EPI那样遭受失谐失真的影响。与EPI不同,由于Carr-Purcell-Meiboom-Geill(CPMG)条件,SS-FSE不适合扩散加权成像(DWI)。非CPMG相位循环确实可以容纳SS-FSE和DWI,但是对重建施加了限制,在此可以通过并行成像解决。此外,通过使用短持续时间和高度选择性的DIVERSE射频脉冲,可以提高回波稳定性。在这里,EPI与nCPMG SS-FSE采集和重构技术之间的信噪比(SNR)比较给出了相似的值。使用nCPMG SS-FSE进行的扩散成像可提供与EPI采集相似的SNR,尽管表观的扩散系数值高于使用EPI看到的值。体内图像具有良好的图像质量,几乎没有失真。这种方法具有捕获附近非共振区域附近的无失真DWI图像的能力,并保留足够的SNR。与以前的实现相比,并行成像和DIVERSE重聚焦RF脉冲允许更短的ETL,从而减少了相位编码方向的模糊和SAR积累。

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