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用于7特斯拉人体心脏(31)P-MRS的布洛赫-西格特B1 +映射。

Bloch-Siegert B1+-mapping for human cardiac (31) P-MRS at 7 Tesla.

作者信息

Clarke William T, Robson Matthew D, Rodgers Christopher T

机构信息

Oxford Centre for Clinical Magnetic Resonance Research (OCMR), University of Oxford, Level 0, John Radcliffe Hospital, Oxford, OX3 9DU, United Kingdom.

出版信息

Magn Reson Med. 2016 Oct;76(4):1047-58. doi: 10.1002/mrm.26005. Epub 2015 Oct 28.

Abstract

PURPOSE

Phosphorus MR spectroscopy ((31) P-MRS) is a powerful tool for investigating tissue energetics in vivo. Cardiac (31) P-MRS is typically performed using surface coils that create an inhomogeneous excitation field across the myocardium. Accurate measurements of B1+ (and hence flip angle) are necessary for quantitative analysis of (31) P-MR spectra. We demonstrate a Bloch-Siegert B1+-mapping method for this purpose.

THEORY AND METHODS

We compare acquisition strategies for Bloch-Siegert B1+-mapping when there are several spectral peaks. We optimize a Bloch-Siegert sensitizing (Fermi) pulse for cardiac (31) P-MRS at 7 Tesla (T) and apply it in a three-dimensional (3D) chemical shift imaging sequence. We validate this in phantoms and skeletal muscle (against a dual-TR method) and present the first cardiac (31) P B1+-maps at 7T.

RESULTS

The Bloch-Siegert method correlates strongly (Pearson's r = 0.90 and 0.84) and has bias <25 Hz compared with a multi-TR method in phantoms and dual-TR method in muscle. Cardiac 3D B1+-maps were measured in five normal volunteers. B1+ maps based on phosphocreatine and alpha-adenosine-triphosphate correlated strongly (r = 0.62), confirming that the method is T1 insensitive.

CONCLUSION

The 3D (31) P Bloch-Siegert B1+-mapping is consistent with reference methods in phantoms and skeletal muscle. It is the first method appropriate for (31) P B1+-mapping in the human heart at 7T. Magn Reson Med 76:1047-1058, 2016. © 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.

摘要

目的

磷磁共振波谱((31)P-MRS)是研究体内组织能量代谢的有力工具。心脏(31)P-MRS通常使用表面线圈进行,该线圈会在心肌上产生不均匀的激发场。准确测量B1 +(进而确定翻转角)对于(31)P-MR波谱的定量分析至关重要。我们为此演示了一种布洛赫-西格特B1 +映射方法。

理论与方法

我们比较了存在多个光谱峰时布洛赫-西格特B1 +映射的采集策略。我们为7特斯拉(T)的心脏(31)P-MRS优化了一种布洛赫-西格特敏化(费米)脉冲,并将其应用于三维(3D)化学位移成像序列中。我们在体模和骨骼肌中(与双TR方法对比)对其进行了验证,并展示了7T下首张心脏(31)P B1 +图谱。

结果

与体模中的多TR方法和肌肉中的双TR方法相比,布洛赫-西格特方法具有很强的相关性(皮尔逊r = 0.90和0.84),偏差<25 Hz。在五名正常志愿者中测量了心脏3D B1 +图谱。基于磷酸肌酸和α-三磷酸腺苷的B1 +图谱具有很强的相关性(r = 0.62),证实该方法对T1不敏感。

结论

3D(31)P布洛赫-西格特B1 +映射与体模和骨骼肌中的参考方法一致。它是第一种适用于7T下人体心脏(31)P B1 +映射的方法。《磁共振医学》76:1047 - 1058,2016年。©2015作者。《磁共振医学》由威利期刊公司代表国际磁共振医学学会出版。这是一篇根据知识共享署名许可协议发布的开放获取文章,允许在任何媒介中使用、分发和复制,前提是正确引用原始作品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e13/5102587/8358635b5f7c/MRM-76-1047-g001.jpg

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