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首页> 外文期刊>NMR in biomedicine >Parallel imaging in cardiovascular MRI: methods and applications.
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Parallel imaging in cardiovascular MRI: methods and applications.

机译:心血管MRI中的并行成像:方法和应用。

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摘要

Cardiovascular MR imaging (CVMR) has become a valuable modality for the non-invasive detection and characterization of cardiovascular diseases. CVMR requires high imaging speed and efficiency, which is fundamentally limited in conventional cardiovascular MRI studies. With the introduction of parallel imaging, alternative means for increasing acquisition speed beyond these limits have become available. In parallel imaging some image data are acquired simultaneously, using RF detector coil sensitivities to encode simultaneous spatial information that complements the information gleaned from sequential application of magnetic field gradients. The resulting improvements in imaging speed can be used in various ways, including shortening long examinations, improving spatial resolution and/or anatomic coverage, improving temporal resolution, enhancing image quality, overcoming physiological constraints, detecting and correcting for physiologic motion, and streamlining work flow. Examples of each of these strategies will be provided in this review. First, basic principles and key concepts of parallel MR are described. Second, practical considerations such as coil array design, coil sensitivity calibrations, customized pulse sequences and tailored imaging parameters are outlined. Next, cardiovascular applications of parallel MR are reviewed, ranging from cardiac anatomical and functional assessment to myocardial perfusion and viability to MR angiography of the coronary arteries and the large vessels. Finally, current trends and future directions in parallel CVMR are considered.
机译:心血管MR成像(CVMR)已成为无创检测和表征心血管疾病的一种宝贵手段。 CVMR需要很高的成像速度和效率,这在常规心血管MRI研究中基本受到限制。随着并行成像的引入,已经可以使用其他方法来提高采集速度,使其超出这些限制。在并行成像中,使用RF检测器线圈灵敏度来同时采集一些图像数据,以对同时进行的空间信息进行编码,以补充从顺序施加磁场梯度中收集到的信息。由此产生的成像速度提高可以多种方式使用,包括缩短长时间检查,提高空间分辨率和/或解剖覆盖率,提高时间分辨率,增强图像质量,克服生理限制,检测和纠正生理运动以及简化工作流程。本文中将提供每种策略的示例。首先,描述并行MR的基本原理和关键概念。其次,概述了诸如线圈阵列设计,线圈灵敏度校准,定制脉冲序列和定制成像参数等实际考虑因素。接下来,对平行MR的心血管应用进行了回顾,范围从心脏解剖和功能评估到心肌灌注和生存力,再到冠状动脉和大血管的MR血管造影。最后,考虑了并行CVMR中的当前趋势和未来方向。

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