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定量分析:微观结构与磁共振指纹技术。

Toward Quantification: Microstructure and Magnetic Resonance Fingerprinting.

机构信息

From the Medical Physics, Department of Radiology, Medical Center, Faculty of Medicine, University of Freiburg, Freiburg.

Siemens Healthineers, Erlangen, Germany.

出版信息

Invest Radiol. 2021 Jan;56(1):1-9. doi: 10.1097/RLI.0000000000000738.

Abstract

Quantitative magnetic resonance imaging (MRI) is a long-standing challenge. We advocate that the origin of the problem is the simplification applied in commonly used models of the MRI signal relation to the target parameters of biological tissues. Two research fields are briefly reviewed as ways to respond to the challenge of quantitative MRI, both experiencing an exponential growth right now. Microstructure MRI strives to build physiology-based models from cells to signal and, given the signal, back to the cells again. Magnetic resonance fingerprinting aims at efficient simultaneous determination of multiple signal parameters. The synergy of these yet disjoined approaches promises truly quantitative MRI with specific target-oriented diagnostic tools rather than universal imaging methods.

摘要

定量磁共振成像(MRI)是一个长期存在的挑战。我们认为,问题的根源在于常用的 MRI 信号与生物组织目标参数关系模型中所应用的简化。简要回顾了两个研究领域,它们是应对定量 MRI 挑战的方法,目前都在经历指数级增长。微观结构 MRI 努力从细胞到信号建立基于生理学的模型,并根据信号再次回到细胞。磁共振指纹图谱旨在高效地同时确定多个信号参数。这些尚未结合的方法的协同作用有望实现真正的定量 MRI,并提供具有特定目标导向的诊断工具,而不是通用的成像方法。

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