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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Cine-ASL: A Steady-Pulsed Arterial Spin Labeling Method for Myocardial Perfusion Mapping in Mice. Part II. Theoretical Model and Sensitivity Optimization
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Cine-ASL: A Steady-Pulsed Arterial Spin Labeling Method for Myocardial Perfusion Mapping in Mice. Part II. Theoretical Model and Sensitivity Optimization

机译:Cine-ASL:小鼠心肌灌注图的稳定脉冲自旋标记方法。第二部分理论模型和灵敏度优化

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摘要

In small rodent myocardial perfusion studies, the most widely used method is based on Look-Locker measurements of the magnetization recovery after FAIR preparation, which bears limitations regarding acquisition efficiency due to the pulsed arterial spin labeling nature of the sequence. To improve efficiency, this two-article set proposes a new steady-pulsed arterial spin labeling scheme using a cine readout incorporating one tagging pulse per heart cycle. In this part, we derive a theoretical description of the magnetization time evolution in such a scheme. The combination of steady-pulsed labeling and cine readout drives tissue magnetization into a stationary regime that explicitly depends on perfusion. In comparison with dedicated experiments on the mouse heart, the model is discussed and validated for perfusion quantification. The model predicts that in this regime, signal is independent of irregular dynamics occurring during acquisition, such as heart rate variations or arterial input function. Optimization of the sequence offers the possibility to increase the signal to noise ratio by efficient signal averaging. The sensitivity of this new method is shown to be more than three times larger than previously used techniques.
机译:在小型啮齿动物心肌灌注研究中,最广泛使用的方法是基于对FAIR制备后磁化恢复的Look-Locker测量,由于该序列的脉冲动脉自旋标记性质,其在采集效率方面存在局限性。为了提高效率,该两篇文章提出了一种新的稳定脉冲动脉自旋标记方案,该方法使用了在每个心动周期内结合一个标记脉冲的电影读出。在这一部分中,我们推导了这种方案中磁化时间演变的理论描述。稳定脉冲标记和电影读数的组合将组织磁化强度驱动到一个明确依赖于灌注的固定状态。与在小鼠心脏上进行的专门实验相比,该模型进行了讨论并验证了灌注定量。该模型预测,在这种情况下,信号与采集过程中发生的不规则动力学无关,例如心率变化或动脉输入功能。序列的优化提供了通过有效的信号平均来提高信噪比的可能性。事实证明,这种新方法的灵敏度是以前使用的技术的三倍以上。

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