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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Prospective self-gating for swallowing motion: A feasibility study in carotid artery wall MRI using three-dimensional variable-flip-angle turbo spin-echo
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Prospective self-gating for swallowing motion: A feasibility study in carotid artery wall MRI using three-dimensional variable-flip-angle turbo spin-echo

机译:吞咽运动的预期自我门控:使用三维可变翻转角涡轮自旋回波在颈动脉壁MRI中进行可行性研究

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摘要

Three-dimensional black-blood MRI is a promising noninvasive imaging technique for the assessment of atherosclerotic carotid artery disease. However, this technique is inherently susceptible to motion. In particular, swallowing can result in considerable wall motion at the carotid bifurcations, which may induce drastic image degradation or substantial overestimation of wall thickness. Self-gating techniques have previously been shown to be capable of resolving and compensating for cardiac or respiratory motion during MRI. This work presents a self-gating-based prospective motion gating scheme that is combined with a three-dimensional variable-flip-angle turbo spin-echo sequence (SPACE) for detecting swallowing motion. Self-gating signal readouts along the superior-inferior direction during each repetition time period are used to derive the projection profiles of the imaging volume. Based on cross-correlation analysis between the projection profiles and the corresponding reference profiles, swallowing motion can be detected and the motion-contaminated data will subsequently be discarded and reacquired in the next repetition time. The self-gated SPACE sequence was validated on eight healthy volunteers and two patients and, when compared with the conventional SPACE sequence, proved to be more resistant to swallowing motion and significantly improved image quality as well as the sharpness of carotid artery wall boundaries. Magn Reson Med, 2012.
机译:三维黑血MRI是用于评估动脉粥样硬化颈动脉疾病的一种有前途的无创成像技术。但是,该技术固有地易于运动。尤其是,吞咽会导致颈动脉分叉处出现明显的壁运动,这可能会导致图像急剧退化或壁厚明显过高。先前已证明,自门控技术能够解决和补偿MRI期间的心脏或呼吸运动。这项工作提出了一种基于自我门控的预期运动门控方案,该方案与三维可变翻转角涡轮自旋回波序列(SPACE)相结合,用于检测吞咽运动。在每个重复时间段内沿上下方向的自选通信号读数用于得出成像体积的投影轮廓。基于投影轮廓和相应参考轮廓之间的互相关分析,可以检测到吞咽运动,随后将在下一重复时间丢弃并重新获取运动污染的数据。自选门SPACE序列已在八名健康志愿者和两名患者中得到验证,并且与传统的SPACE序列相比,被证明对吞咽运动更具抵抗力,并且显着改善了图像质量以及颈动脉壁边界的清晰度。 Magn Reson Med,2012年。

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