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Multi-Echo Segmented k-space Imaging: An Optimized Hybrid Sequence for Ultrafast Cardiac Imaging

机译:多回声分段k空间成像:超快心脏成像的优化混合序列。

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摘要

Cardiac magnetic resonance imaging requires high temporal resolution to resolve motion and contrast uptake with low total scan times to avoid breathing artifacts. While spoiled gradient echo (SPGR) imaging is robust and reproducible, it is relatively inefficient and requires long breath-holds to acquire high time resolution movies of the heart. Echo planar imaging (EPI) is highly efficient with excellent signal-to-noise ratio (SNR) behavior; however, it is particularly difficult to use in the heart because of its sensitivity to chemical shift, susceptibility, and motion. EPI may also require reference scans, which are used to measure hardware delays and phase offsets that cause ghosting artifacts; these reference scans are more difficult and less reliable in the heart. Consequently, a hybrid EPI/SPGR sequence is proposed for application to rapid cardiac imaging. A detailed optimization of SNR and echo train length for multi-echo sequences is presented. It is shown that significant reductions in total scan time are possible while maintaining good image quality. This will allow complete motion sampling of the entire heart in one to three breath-holds, necessary for MR cardiac dobutamine stress testing. Improved speed performance also permits sampling of three to six slices every heartbeat for bolus injection perfusion studies.
机译:心脏磁共振成像需要高的时间分辨率,以较低的总扫描时间来解决运动和造影剂摄取,以避免呼吸伪影。尽管损坏的梯度回波(SPGR)成像功能强大且可重现,但效率相对较低,需要屏住呼吸才能获取高分辨率的心脏影像。回波平面成像(EPI)高效,并具有出色的信噪比(SNR)性能。但是,由于其对化学位移,敏感性和运动的敏感性,因此在心脏中使用特别困难。 EPI还可能需要参考扫描,该参考扫描用于测量会导致重影伪影的硬件延迟和相位偏移。这些参考扫描在心脏中更加困难且可靠性较低。因此,提出了一种EPI / SPGR混合序列,用于快速心脏成像。提出了针对多回波序列的SNR和回波列长度的详细优化。结果表明,在保持良好图像质量的同时,可以显着减少总扫描时间。这将允许对整个心脏进行一到三个屏住呼吸的完整运动采样,这是MR心脏多巴酚丁胺压力测试所必需的。改进的速度性能还允许每个心跳采样三到六个切片,以进行推注式灌注研究。

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