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使用多频段Look-Locker EPI在多时间点pCASL中进行三倍读出切片

Tripled Readout Slices in Multi Time-Point pCASL Using Multiband Look-Locker EPI.

作者信息

Zhang Ke, Yun Seong Dae, Shah N Jon

机构信息

Institute of Neuroscience and Medicine- 4, Medical Imaging Physics, Forschungszentrum Jülich, Jülich, Germany.

Department of Neurology, Faculty of Medicine, JARA, RWTH Aachen University, Aachen, Germany.

出版信息

PLoS One. 2015 Nov 6;10(11):e0141108. doi: 10.1371/journal.pone.0141108. eCollection 2015.

Abstract

Multi time-point pseudo-continuous arterial spin labelling (pCASL) with a Look-Locker EPI readout can sample the signal curve of blood kinetics at multiple time points after the labelling pulse. However, due to signal relaxation of labelled blood, the number of readout slices is limited. The aim of this study is to employ a multiband excitation technique to triple the number of readout slices in multi time-point pCASL. The multiband technique, along with 2-fold in-plane parallel imaging, was incorporated into the Look-Locker EPI for the multi time-point sampling of blood kinetic behaviour following the pCASL labelling scheme. The performance evaluation of the multiband and the single-band techniques were performed on four healthy subjects using a 32-channel head RF coil at 3T. Quantitative perfusion maps were analysed using a combination of labelling with and without flow suppression gradients. The perfusion maps provided by the multiband accelerated multi time-point pCASL were in good agreement with the conventional single-band technique. Multiband acceleration caused SNR loss but offered quantitative perfusion maps in 6.23 min with 18 slices compared with 6 slices within the same time period for the single-band method. As conclusion, the multiband technique can successfully triple the number of readout slices while achieving comparable perfusion data in the same measurement time as the conventional single-band readout.

摘要

采用Look-Locker EPI读出的多时间点伪连续动脉自旋标记(pCASL)可在标记脉冲后的多个时间点对血液动力学的信号曲线进行采样。然而,由于标记血液的信号弛豫,读出切片的数量受到限制。本研究的目的是采用多频段激发技术,使多时间点pCASL中的读出切片数量增加两倍。将多频段技术与2倍平面内并行成像相结合,纳入Look-Locker EPI,以按照pCASL标记方案对血液动力学行为进行多时间点采样。在3T条件下,使用32通道头部射频线圈对四名健康受试者进行了多频段和单频段技术的性能评估。使用有和没有血流抑制梯度的标记组合分析定量灌注图。多频段加速多时间点pCASL提供的灌注图与传统单频段技术高度吻合。多频段加速导致信噪比损失,但在6.23分钟内提供了18层的定量灌注图,而单频段方法在同一时间段内为6层。结论是,多频段技术可以成功地使读出切片数量增加两倍,同时在与传统单频段读出相同的测量时间内获得可比的灌注数据。

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