Department of Radiology, Tokyo Women's Medical University Medical Center East, 2-1-10 Nishiogu, Arakawa-ku, Tokyo, 116-8567, Japan.
Jpn J Radiol. 2009 Nov;27(9):335-41. doi: 10.1007/s11604-009-0349-9. Epub 2009 Nov 27.
We examined the spatial factors influencing magnetic resonance (MR) flow velocity measurements in a small tube phantom and used the same measurements obtained with an intraluminal Doppler guidewire as reference.
We generated constant flow velocities from approximately 40 to 370 cm/s in a tube 4 mm in diameter. We then performed segmented k-space, phase-contrast cine-MR imaging to quantify spatial peak flow velocities of one pixel and of five adjacent pixels as well as spatial mean velocities within regions of interest in a cross section of the phantom. Pixel dimensions ranged from 1.00 x 1.00 mm to 2.50 x 2.50 mm. We compared the MR measurements with the temporally averaged Doppler spectral peak velocities.
For one pixel (r > 0.99: MR flow velocity for pixel dimension 1.00 x 1.00 mm = 1.03x + 9.8 cm/s), the linear correlation was excellent between flow velocities by MR and Doppler guidewire methods. However, for the five adjacent pixels, MR measurements were significantly underestimated using pixels 1.25 x 1.25 mm to 2.50 x 2.50 mm and for mean velocities for all pixel dimensions.
Relatively high spatial resolution allows accurate MR measurement of constant flow velocity in a small tube at spatial peak velocities for one pixel.
我们研究了在小直径管腔模型中影响磁共振(MR)流速测量的空间因素,并使用腔内多普勒导丝获得的相同测量值作为参考。
我们在直径 4mm 的管腔中产生了约 40 至 370cm/s 的恒定流速。然后,我们进行分段 k 空间、相位对比电影-MR 成像,以定量测量模型横截面上一个像素和五个相邻像素的空间峰值流速以及感兴趣区域内的空间平均流速。像素尺寸范围为 1.00x1.00mm 至 2.50x2.50mm。我们将 MR 测量值与时间平均多普勒光谱峰值流速进行了比较。
对于一个像素(r>0.99:像素尺寸为 1.00x1.00mm 的 MR 流速=1.03x+9.8cm/s),MR 和多普勒导丝方法之间的流速线性相关性非常好。然而,对于五个相邻像素,使用 1.25x1.25mm 至 2.50x2.50mm 的像素以及所有像素尺寸的平均流速,MR 测量值显著低估。
相对较高的空间分辨率允许在一个小直径管腔中对一个像素的空间峰值流速进行恒定流速的准确 MR 测量。