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A new design and rationale for 3D orthogonally oversampled k-space trajectories

机译:3D正交过采样k空间轨迹的新设计和原理

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A novel center-out 3D trajectory for sampling magnetic resonance data is presented. The trajectory set is based on a single Fermat spiral waveform, which is substantially undersampled in the center of k-space. Multiple trajectories are combined in a “stacked cone” configuration to give very uniform sampling throughout a “hub,” which is very efficient in terms of gradient performance and uniform trajectory spacing. The fermat looped, orthogonally encoded trajectories (FLORET) design produces less gradient-efficient trajectories near the poles, so multiple orthogonal hub designs are shown. These multihub designs oversample k-space twice with orthogonal trajectories, which gives unique properties but also doubles the minimum scan time for critical sampling of k-space. The trajectory is shown to be much more efficient than the conventional stack of cones trajectory, and has nearly the same signal-to-noise ratio efficiency (but twice the minimum scan time) as a stack of spirals trajectory. As a center-out trajectory, it provides a shorter minimum echo time than stack of spirals, and its spherical k-space coverage can dramatically reduce Gibbs ringing. Magn Reson Med, 2011. © 2011 Wiley Periodicals, Inc.
机译:提出了一种新颖的中心出3D轨迹,用于采集磁共振数据。轨迹集基于单个Fermat螺旋波形,该波形在k空间中心基本上被欠采样。多个轨迹以“堆叠锥体”配置组合在一起,从而在整个“集线器”中提供非常均匀的采样,这在梯度性能和均匀的轨迹间距方面非常有效。 Fermat环形正交编码轨迹(FLORET)设计在极点附近产生了梯度效率较低的轨迹,因此显示了多个正交轮毂设计。这些多集线器设计使用正交轨迹对k空间进行两次过采样,这不仅具有独特的性能,而且还可以将k空间关键采样的最小扫描时间加倍。所显示的轨迹比传统的圆锥形轨迹轨迹有效得多,并且具有与螺旋形轨迹轨迹几乎相同的信噪比效率(但最小扫描时间的两倍)。作为中心向外的轨迹,它提供的最短回波时间比螺旋形堆栈短,并且其球形k空间覆盖范围可以显着减少吉布斯振铃。 Magn Reson Med,2011年。©2011 Wiley Periodicals,Inc.。

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