Department of Radiation Sciences, Umeå University, Umeå, Sweden.
J Magn Reson Imaging. 2012 May;35(5):1055-62. doi: 10.1002/jmri.23527. Epub 2011 Dec 14.
To study measurement repeatability and physiological determinants on measurement stability for phase contrast MRI (PC-MRI) measurements of cyclic volume changes (ΔV) of brain arteries, veins, and cerebrospinal fluid (CSF) compartments.
Total cerebral blood flow (tCBF), total internal jugular flow (tJBF) and spinal CSF flow at C2-C3 level and CSF in the aqueduct was measured using five repetitions in 20 healthy subjects. After subtracting net flow, waveforms were integrated to calculate ΔV of arterial, venous, and cerebrospinal fluid compartments. The intraclass correlation coefficient (ICC) was used to measure repeatability. Systematic errors were investigated by a series of phantom measurements.
For ΔV calculated from tCBF, tJBF and both CSF waveforms, the ICC was ≥0.85. ΔV from the tCBF waveform decreased linearly between repetitions (P = 0.012). Summed CSF and venous volume being shifted out from the cranium was correlated with ΔV calculated from the tCBF waveform (r = 0.75; P < 0.001). Systematic errors increased at resolutions <4 pixels per diameter.
Repeatability of ΔV calculated from tCBF, tJBF, and CSF waveforms allows useful interpretations. The subject's time in the MR system and imaging resolution should be considered when interpreting volume changes. Summed CSF and venous volume changes was associated with arterial volume changes.
研究相位对比 MRI(PC-MRI)测量脑动脉、静脉和脑脊液(CSF)腔室周期性容积变化(ΔV)的测量重复性和生理决定因素及其测量稳定性。
在 20 名健康受试者中,使用 5 次重复测量全脑血流量(tCBF)、颈内总血流量(tJBF)和 C2-C3 水平的脊髓 CSF 流量以及导水管中的 CSF。减去净流量后,对波形进行积分,以计算动脉、静脉和 CSF 腔室的ΔV。采用组内相关系数(ICC)来衡量重复性。通过一系列的体模测量来研究系统误差。
对于来自 tCBF、tJBF 和两个 CSF 波形的ΔV,ICC 值均≥0.85。tCBF 波形的ΔV 在重复测量之间呈线性下降(P=0.012)。从颅骨中移出的总和 CSF 和静脉容积与来自 tCBF 波形的ΔV 相关(r=0.75;P<0.001)。在分辨率<4 像素/直径时,系统误差增加。
来自 tCBF、tJBF 和 CSF 波形的ΔV 的重复性允许进行有用的解释。在解释容积变化时,应考虑受试者在磁共振系统中的时间和成像分辨率。总和 CSF 和静脉容积变化与动脉容积变化相关。