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Diffusion-weighted Line-scan Echo-planar Spectroscopic Imaging Technique to Reduce Motion Artifacts in Metabolite Diffusion Imaging

机译:扩散加权线扫描回波平面光谱成像技术,以减少代谢产物扩散成像中的运动伪像

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Metabolite diffusion is expected to provide more specific microstructural and functional information than water diffusion. However, highly accurate measurement techniques have still not been developed, especially for reducing motion artifacts caused by cardiac pulsation and respiration. We developed a diffusion-weighted line-scan echo-planar spectroscopic imaging (DW-LSEPSI) technique to reduce such motion artifacts in measuring diffusion-weighted images (DWI) of metabolites. Our technique uses line-scan and echo-planar techniques to reduce phase errors induced by such motion during diffusion time. The phase errors are corrected using residual water signals in water suppression for each acquisition and at each spatial pixel specified by combining the line-scan and echo-planar techniques. We apply this technique to a moving phantom and a rat brain in vivo to demonstrate the reduction of motion artifacts in DWI and apparent diffusion coefficient (ADC) maps of metabolites. DW-LSEPSI will be useful for investigating a cellular diffusion environment using metabolites as probes.
机译:与水扩散相比,代谢物扩散有望提供更具体的微观结构和功能信息。但是,尚未开发出高度精确的测量技术,尤其是用于减少由心脏搏动和呼吸引起的运动伪影的技术。我们开发了一种弥散加权线扫描回波平面光谱成像(DW-LSEPSI)技术,以减少测量代谢物的弥散加权图像(DWI)时的此类运动伪影。我们的技术使用线扫描和回波平面技术来减少扩散期间这种运动引起的相位误差。相位误差使用水抑制的残余水信号进行校正,该信号用于每次采集以及通过组合线扫描和回波平面技术在指定的每个空间像素处进行水抑制。我们将此技术应用于运动的幻像和大鼠体内的大脑,以证明DWI中运动伪影的减少和代谢物的表观扩散系数(ADC)图。 DW-LSEPSI可用于研究以代谢产物为探针的细胞扩散环境。

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