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Inter- and Intra-Rater Reliability of Individual Cerebral Blood Flow Measured by Quantitative Vessel-Flow Phase-Contrast MRI

机译:通过定量血管流动相位对比MRI测量的个体脑血流的间间和内部ratter可靠性

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摘要

Vessel flow quantification by two-dimensional (2D) phase-contrast magnetic resonance imaging (PC-MRI) using a three-dimensional (3D) magnetic resonance angiography (MRA) model to measure cerebral blood flow has unclear analytical reliability. The present study aimed to determine the inter- and intra-rater reliability of quantitative vessel-flow PC-MRI and potential factors influencing its consistency. We prospectively recruited 30 Asian participants (aged 20–90 years; 16 women; 22 healthy and 8 stroke patients) for performing 1.5-T MR equipped with a head coil. Each participant was first scanned for time-of-flight magnetic resonance angiography (TOF-MRA) images for localization of intracranial arteries. The 2D PC-MRI for each cerebral artery (total 13 arteries in fixed order) was performed twice by two well-trained operators in optimal position. Using the same 3D MRA as a map and facilitated with the non-invasive optimal vessel analysis (NOVA) system, each scan was taken on a plane perpendicular to the target artery. Two consecutive full 13-artery scans were performed at least 15 min apart after participants were removed from the scanner table and then repositioned. A total of four PC flow images obtained from each target artery were transmitted to a workstation facilitated with the NOVA system. Flow data were calculated semi-automatically by the NOVA system after a few simple steps. Two-way mixed-effect models and standard errors of measurements were used. In 13 cerebral arteries, repeatability, using the intra-rater estimate expressed as the average-measures intraclass correlation coefficient, ranged from 0.641 to 0.954, and reproducibility, using the inter-rater estimate, ranged from 0.672 to 0.977. Except in the middle cerebral artery and the distal segment of the anterior cerebral artery, repeatability and reproducibility were excellent (intraclass correlation coefficient exceeded 0.8). The use of quantitative vessel-flow PC-MRI is a precise means to measure blood flow in most target cerebral arteries. This was evidenced by inter-rater and intra-rater correlations that were good/excellent, indicating good reproducibility and repeatability.
机译:血管流动通过二维(2D)相位对比磁共振成像(PC-MRI)使用三维(3D)磁共振血管造影(MRA)模型来测量脑血流具有不明确的分析可靠性。本研究旨在确定定量血管流动PC-MRI的间间和内部间可靠性和影响其一致性的潜在因素。我们潜在招聘了30名亚洲参与者(20-90岁; 16岁女性; 22例健康和8名卒中患者),用于执行1.5-T配备头部线圈。首先扫描每个参与者以扫描飞行时间磁共振血管造影(TOF-MRA)图像以颅内动脉定位。每个脑动脉的2D PC-MRI(固定订单中总共13个动脉)在最佳位置,两次训练有素的操作员进行两次。使用相同的3D MRA作为地图并促进了非侵入性最佳血管分析(NOVA)系统,每次扫描都在垂直于靶动脉的平面上拍摄。在从扫描仪桌中取出并重新定位后,参与者在参与者中除外至少15分钟进行两个连续的13个动脉扫描。从每个靶动脉获得的总共四个PC流量图像被传递给与Nova系统促进的工作站。在几个简单的步骤之后,Nova系统将自动计算流量数据。使用双向混合效果模型和测量标准误差。在13例脑动脉,可重复性,使用患者的内部估计表达为平均措施的脑内相关系数,使用帧间估计的0.641至0.954,再现性,范围为0.672至0.977。除了中脑动脉和前脑动脉的远端区段外,可重复性和再现性优异(颅内相关系数超过0.8)。定量血管流动PC-MRI的使用是测量大多数靶脑动脉中血流的精确方法。这是通过犯罪者和患者内部相关性的证明,表明良好的可重复性和可重复性。

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