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T-Hex:用于快速三维成像的倾斜六边形网格。

T-Hex: Tilted hexagonal grids for rapid 3D imaging.

作者信息

Engel Maria, Kasper Lars, Wilm Bertram, Dietrich Benjamin, Vionnet Laetitia, Hennel Franciszek, Reber Jonas, Pruessmann Klaas P

机构信息

Institute for Biomedical Engineering, ETH Zurich and University of Zurich, Zurich, Switzerland.

Translational Neuromodeling Unit, IBT, University of Zurich and ETH Zurich, Zurich, Switzerland.

出版信息

Magn Reson Med. 2021 May;85(5):2507-2523. doi: 10.1002/mrm.28600. Epub 2020 Dec 3.

Abstract

PURPOSE

The purpose of this work is to devise and demonstrate an encoding strategy for 3D MRI that reconciles high speed with flexible segmentation, uniform k-space density, and benign effects.

METHODS

Fast sampling of a 3D k-space is typically accomplished by 2D readouts per shot using EPI trains or spiral readouts. Tilted hexagonal (T-Hex) sampling is a way of acquiring more k-space volume per excitation while maintaining uniform sampling density and a smooth filter. The k-space volume covered per shot is controlled by the tilting angle. Image reconstruction is performed with a 3D extension of the iterative SENSE approach, incorporating actual field dynamics and static off-resonance. T-Hex imaging is compared with established 3D schemes in terms of speed and noise performance.

RESULTS

Tilted hexagonal acquisition is found to achieve greater imaging speed than known alternatives, particularly in combination with spiral trajectories. The interplay of the proposed 3D trajectories, array detection, and off-resonance is successfully addressed by iterative inversion of the full signal model. Enhanced coverage per shot is of greatest utility for high speed in an intermediate resolution regime of 1 to 4 mm. T-Hex EPI combines the benefits of extended coverage per shot with increased robustness against off-resonance effects.

CONCLUSION

Sampling of tilted hexagonal grids is a feasible means of gaining 3D imaging speed with near-optimal SNR efficiency and benign depiction properties. It is a particularly promising technique for time-resolved applications such as fMRI.

摘要

目的

本研究旨在设计并演示一种用于三维磁共振成像(3D MRI)的编码策略,该策略能兼顾高速成像、灵活分割、均匀的k空间密度以及良好的成像效果。

方法

三维k空间的快速采样通常通过使用回波平面成像(EPI)序列逐次进行二维读出或螺旋读出实现。倾斜六边形(T-Hex)采样是一种在每次激发时获取更多k空间容积的方法,同时能保持均匀的采样密度和平滑的滤波器。每次激发所覆盖的k空间容积由倾斜角度控制。图像重建采用迭代灵敏度编码(SENSE)方法的三维扩展,纳入实际场动态和静态失谐信息。将T-Hex成像与已有的三维成像方案在速度和噪声性能方面进行比较。

结果

发现倾斜六边形采集比已知的其他方法能实现更高的成像速度,特别是与螺旋轨迹相结合时。通过对完整信号模型进行迭代反演,成功解决了所提出的三维轨迹、阵列检测和失谐之间的相互作用。每次激发增加的覆盖范围在1至4毫米的中等分辨率区域对高速成像最为有用。T-Hex EPI结合了每次激发增加覆盖范围的优点以及对失谐效应更强的鲁棒性。

结论

倾斜六边形网格采样是一种可行的方法,可在接近最优的信噪比效率和良好的成像特性下提高三维成像速度。对于诸如功能磁共振成像(fMRI)等时间分辨应用,它是一种特别有前景的技术。

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