Insights Imaging. 2015 Apr;6(2):163-5. doi: 10.1007/s13244-015-0403-3. Epub 2015 Mar 24.
Current routine MRI examinations rely on the acquisition of qualitative images that have a contrast "weighted" for a mixture of (magnetic) tissue properties. Recently, a novel approach was introduced, namely MR Fingerprinting (MRF) with a completely different approach to data acquisition, post-processing and visualization. Instead of using a repeated, serial acquisition of data for the characterization of individual parameters of interest, MRF uses a pseudo randomized acquisition that causes the signals from different tissues to have a unique signal evolution or 'fingerprint' that is simultaneously a function of the multiple material properties under investigation. The processing after acquisition involves a pattern recognition algorithm to match the fingerprints to a predefined dictionary of predicted signal evolutions. These can then be translated into quantitative maps of the magnetic parameters of interest. MR Fingerprinting (MRF) is a technique that could theoretically be applied to most traditional qualitative MRI methods and replaces them with acquisition of truly quantitative tissue measures. MRF is, thereby, expected to be much more accurate and reproducible than traditional MRI and should improve multi-center studies and significantly reduce reader bias when diagnostic imaging is performed. Key Points • MR fingerprinting (MRF) is a new approach to data acquisition, post-processing and visualization.• MRF provides highly accurate quantitative maps of T1, T2, proton density, diffusion.• MRF may offer multiparametric imaging with high reproducibility, and high potential for multicenter/ multivendor studies.
当前的常规磁共振成像(MRI)检查依赖于获取定性图像,这些图像的对比度是针对(磁性)组织特性的混合进行“加权”的。最近,一种新方法被引入,即磁共振指纹成像(MRF),它在数据采集、后处理和可视化方面采用了完全不同的方法。与使用重复的串行数据采集来表征感兴趣的各个参数不同,MRF使用伪随机采集,使来自不同组织的信号具有独特的信号演变或“指纹”,这同时是所研究的多种物质特性的函数。采集后的处理涉及一种模式识别算法,用于将指纹与预定义的预测信号演变字典进行匹配。然后可以将这些转换为感兴趣的磁参数的定量图。磁共振指纹成像(MRF)是一种理论上可应用于大多数传统定性MRI方法的技术,并用真正的定量组织测量值采集来取代它们。因此,预计MRF比传统MRI更准确、更可重复,并且在进行诊断成像时应能改善多中心研究并显著减少阅片者偏差。要点 • 磁共振指纹成像(MRF)是一种数据采集、后处理和可视化的新方法。• MRF提供T1、T2、质子密度、扩散的高精度定量图。• MRF可能提供具有高再现性的多参数成像,并且在多中心/多供应商研究方面具有很大潜力。