Department of Radiology, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Magn Reson Med. 2013 Dec;70(6):1653-61. doi: 10.1002/mrm.24880. Epub 2013 Jul 22.
The multiband (MB) excitation and reconstruction technique was both developed and evaluated for accelerated data acquisition of arterial spin labeling (ASL) to cover whole brain perfusion maps.
MB excitation was incorporated into a pulsed ASL (PASL) technique and compared with conventional single-band excitation PASL from healthy subjects, using a 32-channel head receiver coil at 3 T. The MB de-aliasing performance and effectiveness in perfusion measurement were measured with varying MB acceleration factors and gaps between MB excitations.
The MB PASL perfusion maps were in good agreement with the conventional single-band PASL maps at matched slices. The imaging coverage could be effectively extended with the MB technique by a factor up to 5. A gap as small as 3 cm between MB excitations resulted in a comparable ASL signal loss and temporal-signal-to-noise ratio with single-band PASL.
The MB ASL technique is an effective method to evaluate whole brain perfusion because it minimizes the temporal spread of labeled spins across slices, resulting in more accurate perfusion measurements.
多带(MB)激发和重建技术既被开发又被评估,用于加速动脉自旋标记(ASL)的数据采集,以覆盖全脑灌注图。
MB 激发被整合到脉冲 ASL(PASL)技术中,并与健康受试者的常规单带激发 PASL 进行比较,在 3T 下使用 32 通道头部接收线圈。通过改变 MB 加速因子和 MB 激发之间的间隙,测量 MB 去混叠性能和灌注测量的有效性。
MB PASL 灌注图与匹配切片上的常规单带 PASL 图吻合良好。通过 MB 技术,成像覆盖范围可以有效扩展 5 倍。MB 激发之间的间隙小至 3cm,与单带 PASL 相比,ASL 信号损失和时间信号噪声比相当。
MB ASL 技术是评估全脑灌注的有效方法,因为它最小化了标记自旋在切片之间的时间扩散,从而获得更准确的灌注测量。