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Quantification of turbulence and velocity in stenotic flow using spiral three-dimensional phase-contrast MRI

机译:使用螺旋三维相位对比MRI量化狭窄流中的湍流和速度

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摘要

PurposeEvaluate spiral three-dimensional (3D) phase contrast MRI for the assessment of turbulence and velocity in stenotic flow. MethodsA-stack-of-spirals 3D phase contrast MRI sequence was evaluated in vitro against a conventional Cartesian sequence. Measurements were made in a flow phantom with a 75% stenosis. Both spiral and Cartesian imaging were performed using different scan orientations and flow rates. Volume flow rate, maximum velocity and turbulent kinetic energy (TKE) were computed for both methods. Moreover, the estimated TKE was compared with computational fluid dynamics (CFD) data. ResultsThere was good agreement between the turbulent kinetic energy from the spiral, Cartesian and CFD data. Flow rate and maximum velocity from the spiral data agreed well with Cartesian data. As expected, the short echo time of the spiral sequence resulted in less prominent displacement artifacts compared with the Cartesian sequence. However, both spiral and Cartesian flow rate estimates were sensitive to displacement when the flow was oblique to the encoding directions. ConclusionSpiral 3D phase contrast MRI appears favorable for the assessment of stenotic flow. The spiral sequence was more than three times faster and less sensitive to displacement artifacts when compared with a conventional Cartesian sequence.
机译:目的评估螺旋三维(3D)相衬MRI,以评估狭窄流中的湍流和速度。方法在体外评估了螺旋堆叠的3D相衬MRI序列与常规笛卡尔序列的对比。在狭窄率为75%的流模型中进行测量。螺旋和笛卡尔成像均使用不同的扫描方向和流速进行。两种方法均计算了体积流量,最大速度和湍动能(TKE)。此外,将估计的TKE与计算流体动力学(CFD)数据进行了比较。结果来自螺旋,笛卡尔和CFD数据的湍动能之间有很好的一致性。螺旋数据的流量和最大速度与笛卡尔数据非常吻合。不出所料,与笛卡尔序列相比,螺旋序列的短回波时间导致不太明显的位移伪像。但是,当流量倾斜于编码方向时,螺旋和笛卡尔流量估计值都对位移敏感。结论螺旋3D相衬MRI对评估狭窄流量似乎是有利的。与传统的笛卡尔序列相比,螺旋序列的速度快三倍以上,并且对位移伪影不那么敏感。

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