Department of Medical Biophysics, Sunnybrook Health Sciences Centre, University of Toronto, Toronto, Ontario, Canada.
Magn Reson Med. 2010 Nov;64(5):1323-31. doi: 10.1002/mrm.22525.
Hyperpolarization of spins via dynamic nuclear polarization (DNP) has been explored as a method to non-invasively study real-time metabolic processes occurring in vivo using (13)C-labeled substrates. Recently, hyperpolarized (13)C pyruvate has been used to characterize in vivo cardiac metabolism in the rat and pig. Conventional 3D spectroscopic imaging methods require in excess of 100 excitations, making it challenging to acquire a full cardiac-gated, breath-held, whole-heart volume. In this article, the development of a rapid multislice cardiac-gated spiral (13)C imaging pulse sequence consisting of a large flip-angle spectral-spatial excitation RF pulse combined with a single-shot spiral k-space trajectory for rapid imaging of cardiac metabolism is described. This sequence permits whole-heart coverage (6 slices, 8.8-mm in-plane resolution) in any plane, allowing imaging of the metabolites of interest, [1-(13)C] pyruvate, [1-(13)C] lactate, and (13)C bicarbonate, within a single breathhold. Pyruvate and bicarbonate cardiac volumes were acquired, while lactate images were not acquired due to low lactate levels in the animal model studied. The sequence was demonstrated with phantom experiments and in vivo testing in a pig model.
通过动态核极化 (DNP) 使自旋超极化已被探索为一种使用(13)C 标记的底物非侵入性地实时研究体内发生的代谢过程的方法。最近,(13)C 丙酮酸已被用于对大鼠和猪的体内心脏代谢进行特征描述。传统的 3D 波谱成像方法需要超过 100 次激发,因此很难采集到完整的心脏门控、屏气、全心容积。在本文中,描述了一种快速的多切片心脏门控螺旋(13)C 成像脉冲序列的开发,该序列由大翻转角的谱-空间激发 RF 脉冲和单次螺旋 k 空间轨迹组成,用于快速成像心脏代谢。该序列允许在任何平面上覆盖整个心脏(6 个切片,平面内分辨率为 8.8mm),允许在单次屏气中对感兴趣的代谢物[1-(13)C]丙酮酸、[1-(13)C]乳酸和(13)C 碳酸氢盐进行成像。采集了丙酮酸和碳酸氢盐的心脏容积,而由于所研究的动物模型中乳酸水平较低,未采集到乳酸图像。该序列在猪模型的体模实验和体内测试中得到了验证。