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首页> 外文期刊>Journal of magnetic resonance >In vivo application of sub-second spiral chemical shift imaging (CSI) to hyperpolarized ~(13)C metabolic imaging: Comparison with phase-encoded CSI
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In vivo application of sub-second spiral chemical shift imaging (CSI) to hyperpolarized ~(13)C metabolic imaging: Comparison with phase-encoded CSI

机译:亚秒螺旋化学位移成像(CSI)在超极化〜(13)C代谢成像中的体内应用:与相位编码CSI的比较

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摘要

A fast spiral chemical shift imaging (CSI) has been developed to address the challenge of the limited acquisition window in hyperpolarized ~(13)C metabolic imaging. The sequence exploits the sparsity of the spectra and prior knowledge of resonance frequencies to reduce the measurement time by undersampling the data in the spectral domain. As a consequence, multiple reconstructions are necessary for any given data set as only frequency components within a selected bandwidth are reconstructed "in-focus" while components outside that band are severely blurred ("spectral tomosynthesis"). A variable-flip-angle scheme was used for optimal use of the longitudinal magnetization. The sequence was applied to sub-second metabolic imaging of the rat in vivo after injection of hyperpolarized [1- ~(13)C]-pyruvate on a clinical 3T MR scanner. The comparison with conventional CSI based on phase encoding showed similar signal-to-noise ratio (SNR) and spatial resolution in metabolic maps for the substrate and its metabolic products lactate, alanine, and bicarbonate, despite a 50-fold reduction in scan time for the spiral CSI acquisition. The presented results demonstrate that dramatic reductions in scan time are feasible in hyperpolarized ~(13)C metabolic imaging without a penalty in SNR or spatial resolution.
机译:快速螺旋化学位移成像(CSI)已被开发来解决在超极化〜(13)C代谢成像中有限的采集窗口的挑战。该序列利用频谱的稀疏性和共振频率的先验知识,通过在频谱域中对数据进行欠采样来减少测量时间。结果,对于任何给定的数据集,都必须进行多次重构,因为只有选定带宽内的频率分量才“聚焦”,而该频带外的分量却被严重模糊(“频谱断层合成”)。可变翻转角方案用于纵向磁化的最佳使用。在临床3T MR扫描仪上注射超极化[1-〜(13)C]-丙酮酸盐后,将该序列应用于大鼠体内的亚秒代谢成像。与传统CSI的基于相位编码的比较显示,在底物及其代谢产物乳酸,丙氨酸和碳酸氢盐的代谢图中,信噪比(SNR)和空间分辨率相似,尽管扫描时间缩短了50倍。螺旋式CSI收购。提出的结果表明,在超极化〜(13)C代谢成像中扫描时间的显着减少是可行的,而不会降低SNR或空间分辨率。

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