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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Time-resolved 3D quantitative flow MRI of the major intracranial vessels: initial experience and comparative evaluation at 1.5T and 3.0T in combination with parallel imaging.
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Time-resolved 3D quantitative flow MRI of the major intracranial vessels: initial experience and comparative evaluation at 1.5T and 3.0T in combination with parallel imaging.

机译:主要颅内血管的时间分辨3D定量流MRI:1.5T和3.0T时的初步经验和比较评估与并行成像相结合。

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摘要

Exact knowledge of blood flow characteristics in the major cerebral vessels is of great relevance for diagnosing cerebrovascular abnormalities. This involves the assessment of hemodynamically critical areas as well as the derivation of biomechanical parameters such as wall shear stress and pressure gradients. A time-resolved, 3D phase-contrast (PC) MRI method using parallel imaging was implemented to measure blood flow in three dimensions at multiple instances over the cardiac cycle. The 4D velocity data obtained from 14 healthy volunteers were used to investigate dynamic blood flow with the use of multiplanar reformatting, 3D streamlines, and 4D particle tracing. In addition, the effects of magnetic field strength, parallel imaging, and temporal resolution on the data were investigated in a comparative evaluation at 1.5T and 3T using three different parallel imaging reduction factors and three different temporal resolutions in eight of the 14 subjects. Studies were consistently performed faster at 3T than at 1.5T because of better parallel imaging performance. A high temporal resolution (65 ms) was required to follow dynamic processes in the intracranial vessels. The 4D flow measurements provided a high degree of vascular conspicuity. Time-resolved streamline analysis provided features that have not been reported previously for the intracranial vasculature.
机译:准确了解主要脑血管中的血流特征与诊断脑血管异常息息相关。这涉及评估血液动力学关键区域以及推导生物力学参数(例如壁切应力和压力梯度)。实施了使用并行成像的时间分辨3D相衬(PC)MRI方法,以在整个心动周期的多个实例上测量三个维度的血流量。从14名健康志愿者那里获得的4D速度数据用于通过多平面重新格式化,3D流线和4D粒子追踪来研究动态血流。此外,在14个受试者中的8个受试者中,使用三种不同的平行成像缩小因子和三种不同的时间分辨率,在1.5T和3T的比较评估中,研究了磁场强度,平行成像和时间分辨率对数据的影响。由于具有更好的并行成像性能,在3T下进行研究的速度始终比在1.5T下进行的速度更快。颅内血管的动态过程需要高时间分辨率(65 ms)。 4D流量测量提供了高度的血管显眼性。时间分辨的流线分析提供了颅内脉管系统以前尚未报道的功能。

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