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Assessment of Flow and Hemodynamics in the Carotid Artery Using a Reduced TE 4D Flow Spiral Phase-Contrast MRI

机译:使用减少的TE 4D流动螺旋相位对比MRI评估颈动脉流动和血流动力学的评估

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4D flow MRI is a powerful technique for quantitative flow assessment and visualization of complex flow patterns and hemodynamics of cardiovascular flows. This technique results in more anatomical information and comprehensive assessment of blood flow. However, conventional 4D PC MRI suffers from a few obstacles for clinical applications. The total scan time is long, especially in large volumes with high spatial resolutions. Inaccuracy of conventional Cartesian PC MRI in the setting of atherosclerosis and in general, disturbed and turbulent blood flow is another important challenge. This inaccuracy is the consequence of signal loss, intravoxel dephasing and flow-related artifact in the presence of disturbed and turbulent flow. Spiral k-space trajectory has valuable attributes which can help overcome some of the problems with 4D flow Cartesian acquisitions. Spiral trajectory benefits from shorter TE and reduces the flow-related artifacts. In addition, short spiral readouts with spiral interleaves can significantly reduce the total scan time, reducing the chances of patient motion which may also corrupt the data in the form of motion artifacts. In this paper, the accuracy of flow assessment and flow visualization with reduced TE 4D Spiral PC was investigated and good agreement was observed between the spiral and conventional technique. The systolic mean velocity, peak flow and the average flow in CCA and ICA of normal volunteers using 4D spiral PC MRI showed errors less than 10% compared to conventional 4D PC MRI. In addition, the scan time using spiral sequence was 3:31 min which is half of the time using conventional sequence.
机译:图4D流动MRI是用于定量流动评估和复杂流动模式和心血管流动血流动力学的可视化的强大技术。这种技术导致更具解剖信息和血流综合评估。然而,传统的4D PC MRI患有临床应用的几个障碍。总扫描时间很长,尤其是具有高空间分辨率的大卷。传统的笛卡尔PC MRI在动脉粥样硬化和一般,令人不安和湍流的血流中的不准确性是另一个重要的挑战。这种不准确性是信号损失,在存在受干扰和湍流的情况下的信号损失,椎间杂志脱离和流动相关的工件的结果。螺旋K空间轨迹具有有价值的属性,可以帮助克服4D流动笛卡尔采集的一些问题。螺旋轨迹受益于较短的TE并减少了与流动相关的工件。此外,具有螺旋交织的短螺旋读数可以显着降低总扫描时间,减少患者运动的机会,这也可能以运动伪影的形式损坏数据。在本文中,研究了流动评估和流量可视化与减少的TE 4D螺旋PC进行了准确性,在螺旋和常规技术之间观察到良好的一致性。与常规4D的4D PC MRI相比,使用4D螺旋PC MRI的CCA和ICA中CCA和ICA的平均流量的收缩式平均速度,峰值流量和ICA的平均流量显示出低于10%的误差。另外,使用螺旋序列的扫描时间为3:31 min,这是使用常规序列的一半。

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