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从连续和搏动血流模型获得的磁共振信号强度模式。

Magnetic resonance signal intensity patterns obtained from continuous and pulsatile flow models.

作者信息

George C R, Jacobs G, MacIntyre W J, Lorig R J, Go R T, Nose Y, Meaney T F

出版信息

Radiology. 1984 May;151(2):421-8. doi: 10.1148/radiology.151.2.6709913.

Abstract

The purpose of this investigation was to extend previous steady state flow studies with magnetic resonance (MR) to pulsatile flow measurements obtained with gated cardiac techniques in man with a pulsatile artificial heart device. Bovine blood and a solution of MnCl2 were studied. Correlation was made with complex and time-varying MR signals observed in the descending aorta on cardiac gated images obtained through the midthorax. MR signals from flowing fluids represent velocity distribution as shown in a velocity profile, and laminar flow is distinguished from nonlaminar. At very slow flow rates, signal intensity is lower than background. As the rate is increased, paradoxical enhancement occurs followed by loss of signal, which is complete at 7 liters per minute with fluid and 15 liters per minute with blood. These areas correspond to maximum fluid velocities of 41 and 88 cm/sec, respectively.

摘要

本研究的目的是将先前利用磁共振(MR)进行的稳态血流研究扩展到利用门控心脏技术对植入搏动性人工心脏装置的人体进行搏动血流测量。研究了牛血和氯化锰溶液。通过胸部中部获得的心脏门控图像对降主动脉中观察到的复杂且随时间变化的MR信号进行了相关性分析。流动液体的MR信号表示速度分布,如速度剖面图所示,层流与非层流得以区分。在非常低的流速下,信号强度低于背景。随着流速增加,会出现反常增强,随后信号消失,液体流速为每分钟7升、血流速为每分钟15升时信号完全消失。这些区域分别对应最大液体速度41厘米/秒和88厘米/秒。

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