Lotz Joachim, Döker Rolf, Noeske Ralph, Schüttert Meike, Felix Roland, Galanski Michael, Gutberlet Matthias, Meyer Gerd Peter
Department of Diagnostic Radiology, Hannover Medical School, 30625 Hannover, Germany.
J Magn Reson Imaging. 2005 May;21(5):604-10. doi: 10.1002/jmri.20275.
To evaluate the signal-to-noise ratio (SNR), precision, and accuracy of phase-contrast flow measurements at 3 T with the help of an in vitro model and to compare the results with data from two 1.5-T scanners.
Using an identical setup of a laminar flow model and sequence parameters, measurements were done at one 3-T and at two 1.5-T systems. Precision, accuracy, and SNR were obtained for velocity encodings ranging from 55 up to 550 cm(-1). SNRs were calculated from the magnitude as well as the flow encoded images.
Precision and accuracy for the in vitro flow model were similarly high in all scanners with no significant difference. For velocity encodings from 55 cm(-1) up to 550 cm(-1), the SNR in magnitude as well as phase encoded images of the 3-T measurements was approximately 2.5 times higher than the SNR obtained from the two 1.5-T systems.
Even without optimization for the 3-T environment, flow measurements show the same high accuracy and precision as is known from clinical 1.5-T scanners. The superior SNR at 3 T will allow further improvements in temporal and spatial resolution. This will be of interest for small-size vessels like coronary arteries or for slow diastolic flow patterns.
借助体外模型评估3T磁共振成像时相对比血流测量的信噪比(SNR)、精密度和准确性,并将结果与两台1.5T扫描仪的数据进行比较。
使用相同设置的层流模型和序列参数,在一台3T和两台1.5T系统上进行测量。获得了速度编码范围从55至550cm(-1)的精密度、准确性和SNR。SNR根据幅度图像和血流编码图像计算得出。
所有扫描仪对体外血流模型的精密度和准确性同样高,无显著差异。对于速度编码从55cm(-1)至550cm(-1),3T测量的幅度图像和相位编码图像中的SNR比两台1.5T系统获得的SNR高约2.5倍。
即使未针对3T环境进行优化,血流测量也显示出与临床1.5T扫描仪相同的高精度和精密度。3T时更高的SNR将使时间和空间分辨率得到进一步改善。这对于冠状动脉等小血管或舒张期缓慢血流模式将具有重要意义。