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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Phase contrast MRI Quantification of pulsatile volumes of brain arteries, veins, and cerebrospinal fluids compartments: Repeatability and physiological interactions
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Phase contrast MRI Quantification of pulsatile volumes of brain arteries, veins, and cerebrospinal fluids compartments: Repeatability and physiological interactions

机译:相衬核磁共振MRI对脑动脉,静脉和脑脊液室的搏动量的量化:可重复性和生理相互作用

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Purpose: 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. Materials and Methods: 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. Results: For ΔV calculated from tCBF, tJBF and both CSF waveforms, the ICC was ≥0.85. DV 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. Conclusion: 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.
机译:目的:研究相差MRI(PC-MRI)对脑动脉,静脉和脑脊液(CSF)腔室循环体积变化(ΔV)的测量重复性和测量稳定性的生理决定因素。材料和方法:在20例健康受试者中,使用5次重复测量了C2-C3水平的总脑血流量(tCBF),总颈内动脉血流量(tJBF)和导水管中的CSF。减去净流量后,将波形积分以计算动脉,静脉和脑脊髓液室的ΔV。组内相关系数(ICC)用于测量可重复性。通过一系列幻像测量研究了系统误差。结果:对于从tCBF,tJBF和两个CSF波形计算出的ΔV,ICC≥0.85。来自tCBF波形的DV在重复之间线性降低(P = 0.012)。从颅骨中移出的总CSF和静脉体积与从tCBF波形计算出的ΔV相关(r = 0.75; P <0.001)。在每直径<4像素的分辨率下,系统误差会增加。结论:根据tCBF,tJBF和CSF波形计算出的ΔV的重复性可以提供有用的解释。解释体积变化时,应考虑对象在MR系统中的时间和成像分辨率。脑脊液和静脉容积的变化与动脉容积的变化有关。

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