首页> 外文期刊>Magma: Magnetic resonance materials in physics, biology, and medicine >Generalization of three-dimensional golden-angle radial acquisition to reduce eddy current artifacts in bSSFP CMR imaging
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Generalization of three-dimensional golden-angle radial acquisition to reduce eddy current artifacts in bSSFP CMR imaging

机译:三维黄金角径向采集的泛化,以减少bSSFP CMR成像中的涡流伪影

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Purpose We propose a novel generalization of the three-dimensional double-golden-angle profile ordering, which allows for whole-heart volumetric imaging with retrospective binning and reduced eddy current artifacts. Methods A novel theory bridging the gap between the three-dimensional double golden-angle trajectory, and the twodimensional tiny-golden-angle trajectory is presented. This enables a class of double golden-angle profile orderings with a smaller angular distance between successive k-space readouts. The novel profile orderings were evaluated through simulations, phantom experiments, and in vivo imaging. Comparisons were made to the original double-golden-angle trajectory. Image uniformity and off-resonance sensitivity were evaluated using phantom measurements, and qualitative image quality was assessed using in vivo images acquired in a healthy volunteer. Results The proposed theory successfully reduced the angular step while maintaining image uniformity after binning. Simulations revealed a slow degradation with decreasing angular steps and an increasing number of physiological bins. The phantom images showed a definite improvement in image uniformity and increased robustness to off-resonance, and in vivo imaging corroborated those findings. Conclusion Reducing the angular step in cardio-respiratory-binned golden-angle imaging shows potential for overcoming eddy current-induced image artifacts associated with 3D golden-angle radial imaging.
机译:目的 我们提出了一种新的三维双黄金角剖面排序的推广,它允许通过回顾性分档和减少涡流伪影进行全心体积成像。方法 提出一种弥合三维双金角轨迹与二维微小金角轨迹差距的新理论。这实现了一类双金角轮廓排序,连续 k 空间读数之间的角距离更小。通过模拟、幻影实验和体内成像评估了新的轮廓排序。与原始的双金角轨迹进行了比较。使用幻影测量评估图像均匀性和非共振灵敏度,并使用在健康志愿者中获取的体内图像评估定性图像质量。结果 所提理论在分档后保持图像均匀性的同时,成功地减小了角度步长。模拟显示,随着角步进的减少和生理箱数量的增加,降解缓慢。幻影图像显示出图像均匀性的明显改善和对非共振的鲁棒性增加,体内成像证实了这些发现。结论 减少心肺分箱黄金角成像中的角步进显示出克服与三维黄金角径向成像相关的涡流诱导图像伪影的潜力。

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