论文标题
代谢物特异性的3D螺旋形BSSFP序列,用于改进超极化[1- $^{13} $ c]丙酮酸在3T临床扫描仪上研究
A Metabolite Specific 3D Stack-of-Spiral bSSFP Sequence for Improved Lactate Imaging in Hyperpolarized [1-$^{13}$C]Pyruvate Studies on a 3T Clinical Scanner
论文作者
论文摘要
目的:以前已经探索过平衡的稳态无动力序列,以提高不可恢复的超极化$^{13} $ c磁化的有效利用,但频谱选择性差和较长的获取时间。这项研究的目的是开发一种新型代谢物特异性的3D BSSFP(“ MS-3DSSFP”)序列,并使用刺激性读数进行堆栈,以改善超极化[1- $^{13} $ C]临床3T Scanner上的超极化[1- $^{13} $ c]丙酮酸研究。 方法:进行模拟以评估MS-3DSSFP序列的光谱响应。进行热$^{13} $ C幻影实验以验证MS-3DSSFP序列。进行了体内超极化[1- $^{13} $ C]丙酮酸研究,以将MS-3DSSFP序列与代谢物特异性梯度回声(“ MS-GRE”)序列进行比较。 结果:模拟,幻影和体内研究表明,MS-3DSSFP序列在乳酸上获得了频谱选择性激发,同时最小化其他代谢产物。与MS-GRE序列相比,MS-3DSSFP序列在大鼠肾脏中的乳酸成像,小鼠模型中的前列腺肿瘤和人类肾脏中的乳酸成像改善约为2.5倍。 结论:使用MS-3DSSFP序列在超极化[1- $^{13} $ C]丙酮酸研究中改善乳酸成像。 MS-3DSSFP序列可用于其他临床应用,例如在大脑中,也可以适用于成像其他代谢产物,例如丙酮酸和碳酸氢盐。
Purpose: The balanced steady-state free precession sequence has been previously explored to improve the efficient use of non-recoverable hyperpolarized $^{13}$C magnetization, but suffers from poor spectral selectivity and long acquisition time. The purpose of this study was to develop a novel metabolite-specific 3D bSSFP ("MS-3DSSFP") sequence with stack-of-spiral readouts for improved lactate imaging in hyperpolarized [1-$^{13}$C]pyruvate studies on a clinical 3T scanner. Methods: Simulations were performed to evaluate the spectral response of the MS-3DSSFP sequence. Thermal $^{13}$C phantom experiments were performed to validate the MS-3DSSFP sequence. In vivo hyperpolarized [1-$^{13}$C]pyruvate studies were performed to compare the MS-3DSSFP sequence with metabolite specific gradient echo ("MS-GRE") sequences for lactate imaging. Results: Simulations, phantom and in vivo studies demonstrate that the MS-3DSSFP sequence achieved spectrally selective excitation on lactate while minimally perturbing other metabolites. Compared with MS-GRE sequences, the MS-3DSSFP sequence showed approximately a 2.5-fold SNR improvement for lactate imaging in rat kidneys, prostate tumors in a mouse model and human kidneys. Conclusions: Improved lactate imaging using the MS-3DSSFP sequence in hyperpolarized [1-$^{13}$C]pyruvate studies was demonstrated in animals and humans. The MS-3DSSFP sequence could be applied for other clinical applications such as in the brain or adapted for imaging other metabolites such as pyruvate and bicarbonate.