Dyverfeldt Petter, Gårdhagen Roland, Sigfridsson Andreas, Karlsson Matts, Ebbers Tino
Division of Cardiovascular Medicine, Department of Medical and Health Sciences, Linköping University, Linköping, Sweden.
Magn Reson Imaging. 2009 Sep;27(7):913-22. doi: 10.1016/j.mri.2009.05.004. Epub 2009 Jun 13.
Turbulent flow, characterized by velocity fluctuations, accompanies many forms of cardiovascular disease and may contribute to their progression and hemodynamic consequences. Several studies have investigated the effects of turbulence on the magnetic resonance imaging (MRI) signal. Quantitative MRI turbulence measurements have recently been shown to have great potential for application both in human cardiovascular flow and in engineering flow. In this article, potential pitfalls and sources of error in MRI turbulence measurements are theoretically and numerically investigated. Data acquisition strategies suitable for turbulence quantification are outlined. The results show that the sensitivity of MRI turbulence measurements to intravoxel mean velocity variations is negligible, but that noise may degrade the estimates if the turbulence encoding parameter is set improperly. Different approaches for utilizing a given amount of scan time were shown to influence the dynamic range and the uncertainty in the turbulence estimates due to noise. The findings reported in this work may be valuable for both in vitro and in vivo studies employing MRI methods for turbulence quantification.
湍流以速度波动为特征,伴随多种形式的心血管疾病,并可能促使其发展以及产生血流动力学后果。多项研究探讨了湍流对磁共振成像(MRI)信号的影响。最近已表明,定量MRI湍流测量在人体心血管血流和工程流中都具有巨大的应用潜力。本文从理论和数值方面研究了MRI湍流测量中潜在的陷阱和误差来源。概述了适用于湍流量化的数据采集策略。结果表明,MRI湍流测量对体素内平均速度变化的敏感性可忽略不计,但如果湍流编码参数设置不当,噪声可能会降低估计值。结果表明,利用给定扫描时间的不同方法会影响湍流估计中的动态范围和因噪声导致的不确定性。这项工作中报告的研究结果对于采用MRI方法进行湍流量化的体外和体内研究可能都具有重要价值。