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首页> 外文期刊>Journal of magnetic resonance >Multi-band frequency encoding method for metabolic imaging with hyperpolarized [1-~(13)C]pyruvate
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Multi-band frequency encoding method for metabolic imaging with hyperpolarized [1-~(13)C]pyruvate

机译:[1-〜(13)C]丙酮酸盐超极化代谢成像的多频带频率编码方法

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摘要

A new method was developed for simultaneous spatial localization and spectral separation of multiple compounds based on a single echo, by designing the acquisition to place individual compounds in separate frequency encoding bands. This method was specially designed for rapid and robust metabolic imaging of hyperpolarized ~(13)C substrates and their metabolic products, and was investigated in phantom studies and studies in normal mice and transgenic models of prostate cancer to provide rapid metabolic imaging of hyperpolarized [1-~(13)C]pyruvate and its metabolic products [1-~(13)C]lactate and [1-~(13)C]alanine at spatial resolutions up to 3 mm in-plane. Elevated pyruvate and lactate signals in the vicinity of prostatic tissues were observed in transgenic tumor mice. The multi-band frequency encoding technique enabled rapid metabolic imaging of hyperpolarized ~(13)C compounds with important advantages over prior approaches, including less complicated acquisition and reconstruction methods.
机译:通过设计将单个化合物放置在单独的频率编码带中的采集,开发了一种基于单个回波的多种化合物同时进行空间定位和光谱分离的新方法。此方法是专为超极化〜(13)C底物及其代谢产物的快速而强健的代谢成像而设计的,并且在幻像研究,正常小鼠和前列腺癌转基因模型中进行了研究,以提供超极化的快速代谢成像[1]。 -〜(13)C]丙酮酸盐及其代谢产物[1-〜(13)C]乳酸盐和[1-〜(13)C]丙氨酸的空间分辨率为平面内最大3 mm。在转基因肿瘤小鼠中观察到前列腺组织附近的丙酮酸和乳酸信号升高。多频带频率编码技术实现了超极化〜(13)C化合物的快速代谢成像,与以前的方法相比,它具有重要的优势,包括不太复杂的采集和重建方法。

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