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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Quantitative analysis of adiabatic fast passage for steady laminar and turbulent flows.
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Quantitative analysis of adiabatic fast passage for steady laminar and turbulent flows.

机译:绝热快速通道对稳定层流和湍流的定量分析。

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摘要

Adiabatic fast passage (AFP) is used in noninvasive quantitative perfusion experiments to invert (or label) arterial spins. Continuous arterial spin labeling (CASL) experiments conducted in vivo often assume the inversion efficiency based on the labeling field and steady flow conditions, without direct verification. In practice, the labeling field used in CASL is often amplitude- and duty cycle-limited due to hardware or specific absorption rate constraints. In this study, the effects of the labeling field amplitude and duty cycle, and flow dynamics on the inversion efficiency of AFP were examined under steady flow conditions in a saline flow phantom. The experimental results were in general agreement with models based on Zhernovoi's theory except at high labeling field amplitudes, when the spin inversion times are at least half of the duration of the labeling pulse. The nonlinear relation observed between the inversion efficiency and the labeling duty cycle implies that the practice of linear derating the inversion efficiency with the labeling duty cycle may be prone to significant error. A secondary finding was that the T1 of the flowing fluid could be calculated based on the flow dynamics after varying the flow rate.
机译:绝热快速通道(AFP)用于无创定量灌注实验,以反转(或标记)动脉旋转。在体内进行的连续动脉自旋标记(CASL)实验通常基于标记场和稳定的流动条件来假设反转效率,而无需直接验证。在实践中,由于硬件或特定吸收率的限制,CASL中使用的标记字段通常受到幅度和占空比的限制。在这项研究中,标记场振幅和占空比,以及流动动力学对AFP转化效率的影响在盐水流动模型中在稳定流动条件下进行了研究。实验结果与基于Zhernovoi理论的模型基本一致,除了在高标记场振幅下,当自旋反转时间至少为标记脉冲持续时间的一半时。在反转效率和标记占空比之间观察到的非线性关系表明,随着标记占空比线性降低反转效率的做法可能会产生很大的误差。第二个发现是,在改变流速之后,可以基于流动动力学来计算流动流体的T1。

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