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Automated Prescription of an Optimal Imaging Plane for Measurement of Cerebral Blood Flow by Phase Contrast Magnetic Resonance Imaging

机译:通过相衬磁共振成像测量脑血流量的最佳成像平面的自动处方

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摘要

This study describes and evaluates a semiautomated method for prescribing an optimal imaging plane that is located as close as possible to the skull base, and is simultaneously nearly perpendicular to the four arteries leading blood to the brain [internal carotid arteries (ICAs) and vertebral arteries (VAs)]. Such a method will streamline and improve reliability of the measurement of total cerebral blood flow and intracranial pressure by velocity encoding phase-contrast magnetic resonance imaging. The method first extracts the vessels’ centerline from a 2-D time-of-flight magnetic resonance angiogram of the neck by performing distance transformations. An anatomical marker, the V2 segment of the VAs, is then identified to guide the imaging plane to be as close and below the skull base. An imaging plane that is nearly perpendicular to the ICAs and V2 segment of VAs is then identified by minimizing a misalignment value, estimated by a weighted mean of the angles between the plane''s normal and the vessel axes at the vessel–plane intersections. The performance of the semiautomated method was evaluated by comparing manually selected planes to those found semiautomatically in nine magnetic resonance angiogram datasets. The semiautomated method consistently outperformed manual prescription with a significantly smaller misalignment value, 8.6° versus 20.7° (P < 0.001), respectively, and significantly improved reproducibility.
机译:这项研究描述并评估了一种用于确定最佳成像平面的半自动化方法,该成像平面应尽可能靠近头骨底部,并且同时几乎垂直于将血液引导至大脑的四个动脉[内部颈动脉(ICAs)和椎动脉。 (VA)]。通过速度编码相衬磁共振成像,这种方法将简化并提高总脑血流量和颅内压测量的可靠性。该方法首先通过执行距离变换从颈部的二维飞行时间磁共振血管造影图中提取血管的中心线。然后识别解剖标记,即VA的V2段,以引导成像平面靠近颅底并位于颅底以下。然后,通过使未对准值最小化来识别几乎垂直于VA的ICA和V2段的成像平面,该误差是通过平面法线与血管平面交叉点处的血管轴之间的角度的加权平均值来估计的。通过将手动选择的平面与在9个磁共振血管造影数据集中半自动找到的平面进行比较,来评估半自动方法的性能。半自动方法始终优于手动处方,其未对准值分别小得多,分别为8.6°和20.7°(P <0.001),并显着提高了重现性。

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