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Robust and high resolution hyperpolarized metabolic imaging of the rat heart at 7 t with 3d spectral-spatial EPI.

机译:具有3d光谱空间EPI的大鼠心脏在7 t时进行的稳健且高分辨率的超极化代谢成像。

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摘要

PURPOSE: Hyperpolarized metabolic imaging has the potential to revolutionize the diagnosis and management of diseases where metabolism is dysregulated, such as heart disease. We investigated the feasibility of imaging rodent myocardial metabolism at high resolution at 7 T. METHODS: We present here a fly-back spectral-spatial radiofrequency pulse that sidestepped maximum gradient strength requirements and enabled high resolution metabolic imaging of the rodent myocardium. A 3D echo-planar imaging readout followed, with centric ordered z-phase encoding. The cardiac gated sequence was used to image metabolism in rodents whose metabolic state had been manipulated by being fasted, fed, or fed and given the pyruvate dehydrogenase kinase inhibitor dichloroacetate. RESULTS: We imaged hyperpolarized metabolites with a spatial resolution of 2×2×3.8 mm(3) and a temporal resolution of 1.8 s in the rat heart at 7 T. Significant differences in myocardial pyruvate dehydrogenase flux were observed between the three groups of animals, concomitant with the known biochemistry. CONCLUSION: The proposed sequence was able to image in vivo metabolism with excellent spatial resolution in the rat heart. The field of view enabled the simultaneous multi-organ acquisition of metabolic information from the rat, which is of great utility for preclinical research in cardiovascular disease. Magn Reson Med 000:000-000, 2015. © 2015 The Authors. Magnetic Resonance in Medicine published by Wiley Periodicals, Inc. on behalf of International Society for Magnetic Resonance in Medicine. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
机译:目的:超极化代谢成像有可能彻底改变对代谢异常的疾病(例如心脏病)的诊断和管理。我们研究了在7 T高分辨率下对啮齿动物心肌代谢进行成像的可行性。方法:在这里,我们提出了一种回扫频谱空间射频脉冲,该脉冲回避了最大梯度强度要求,并实现了对啮齿动物心肌的高分辨率代谢成像。随后进行3D回波平面成像读取,并进行中心有序的z相编码。心脏门控序列用于对啮齿动物的代谢进行成像,这些啮齿动物的代谢状态已被禁食,进食或进食并给予丙酮酸脱氢酶激酶抑制剂二氯乙酸盐控制。结果:我们在7 T处对大鼠心脏中的超极化代谢产物进行了成像,其空间分辨率为2×2×3.8 mm(3),时间分辨率为1.8 s。在三组动物之间观察到心肌丙酮酸脱氢酶通量的显着差异,伴随着已知的生物化学。结论:提出的序列能够在大鼠心脏中以优异的空间分辨率对体内代谢成像。视野使得能够同时从大鼠获取多器官代谢信息,这对于心血管疾病的临床前研究具有很大的实用性。 Magn Reson Med 000:000-000,2015.©2015作者。 Wiley Periodicals,Inc.代表国际医学磁共振学会出版的《医学磁共振》。这是一个基于知识共享署名许可协议的开放访问条款,该条款允许在适当引用原始作品的情况下以任何介质使用,分发和复制。

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