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用于人体 [1-C]丙酮酸极化 MRI 研究的当前方法。

Current methods for hyperpolarized [1-C]pyruvate MRI human studies.

机构信息

Department of Radiology and Biomedical Imaging, University of California, San Francisco, San Francisco, California, USA.

UC Berkeley-UCSF Graduate Program in Bioengineering, University of California, San Francisco, Berkeley, California, USA.

出版信息

Magn Reson Med. 2024 Jun;91(6):2204-2228. doi: 10.1002/mrm.29875. Epub 2024 Mar 5.

Abstract

MRI with hyperpolarized (HP) C agents, also known as HP C MRI, can measure processes such as localized metabolism that is altered in numerous cancers, liver, heart, kidney diseases, and more. It has been translated into human studies during the past 10 years, with recent rapid growth in studies largely based on increasing availability of HP agent preparation methods suitable for use in humans. This paper aims to capture the current successful practices for HP MRI human studies with [1-C]pyruvate-by far the most commonly used agent, which sits at a key metabolic junction in glycolysis. The paper is divided into four major topic areas: (1) HP C-pyruvate preparation; (2) MRI system setup and calibrations; (3) data acquisition and image reconstruction; and (4) data analysis and quantification. In each area, we identified the key components for a successful study, summarized both published studies and current practices, and discuss evidence gaps, strengths, and limitations. This paper is the output of the "HP C MRI Consensus Group" as well as the ISMRM Hyperpolarized Media MR and Hyperpolarized Methods and Equipment study groups. It further aims to provide a comprehensive reference for future consensus, building as the field continues to advance human studies with this metabolic imaging modality.

摘要

磁共振成像(MRI)与高极化(HP)C 试剂,也称为 HP C MRI,可测量局部代谢等过程,这些过程在许多癌症、肝脏、心脏、肾脏疾病等中发生改变。在过去的 10 年中,它已经被转化为人类研究,最近的研究迅速增长,主要基于越来越多的适合人类使用的 HP 试剂制备方法。本文旨在介绍当前使用最广泛的 [1-C]丙酮酸作为 HP MRI 人类研究的成功实践,该试剂位于糖酵解的关键代谢交界处。本文分为四个主要主题领域:(1)HP C-丙酮酸的制备;(2)MRI 系统设置和校准;(3)数据采集和图像重建;以及(4)数据分析和量化。在每个领域,我们确定了成功研究的关键组成部分,总结了已发表的研究和当前的实践,并讨论了证据差距、优势和局限性。本文是“HP C MRI 共识小组”以及 ISMRM 极化媒体磁共振和极化方法和设备研究小组的成果。它进一步旨在为未来的共识提供全面的参考,随着该代谢成像方式在人类研究中的不断推进。

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