Lankhaar Jan-Willem, Hofman Mark B M, Marcus J Tim, Zwanenburg Jaco J M, Faes Theo J C, Vonk-Noordegraaf Anton
Department of Physics and Medical Technology, VU University Medical Center, Institute for Cardiovascular Research, Amsterdam, The Netherlands.
J Magn Reson Imaging. 2005 Jul;22(1):73-9. doi: 10.1002/jmri.20361.
To investigate whether an existing method for correction of phase offset errors in phase-contrast velocity quantification is applicable for assessment of main pulmonary artery flow with an MR scanner equipped with a high-power gradient system.
The correction method consists of fitting a surface through the time average of stationary pixels of velocity-encoded phase images, and subtracting this surface from the velocity images. Pixels are regarded as stationary if their time standard deviation falls into the lowest percentile. Flow was measured in the main pulmonary artery of 15 subjects. Each measurement was repeated on a stationary phantom. The phase offset error in the phantom was used as a reference. Correction was applied with varying polynomial surface orders (0-5) and stationarity percentiles (5-50%). The optimal surface order and stationarity percentile were determined by comparing the fitted surface with the phantom.
Using a first-order surface and a (noncritical) 25% percentile, the correction method significantly reduced the phase offset error from 1.1 to 0.35 cm/second (RMS), which is equivalent to a reduction from 11% to 3.3% of mean volume flow. Phase error correction strongly affected stroke volume (range -11 to 26%).
The method significantly reduces phase offset errors in pulmonary artery flow.
研究一种现有的用于校正相位对比速度定量中相位偏移误差的方法,是否适用于配备高功率梯度系统的磁共振扫描仪对主肺动脉血流的评估。
校正方法包括通过对速度编码相位图像中静止像素的时间平均值拟合一个曲面,并从速度图像中减去该曲面。如果像素的时间标准差处于最低百分位数,则将其视为静止像素。对15名受试者的主肺动脉血流进行测量。每次测量均在静止体模上重复进行。将体模中的相位偏移误差用作参考。采用不同的多项式曲面阶数(0 - 5)和平稳性百分位数(5 - 50%)进行校正。通过将拟合曲面与体模进行比较来确定最佳曲面阶数和平稳性百分位数。
使用一阶曲面和(非关键的)25%百分位数时,校正方法显著降低了相位偏移误差,从1.1厘米/秒(均方根值)降至0.35厘米/秒,这相当于平均容积流量从11%降至3.3%。相位误差校正对每搏输出量有强烈影响(范围为 - 11%至26%)。
该方法显著降低了肺动脉血流中的相位偏移误差。