Institute for Biomedical Engineering, ETH Zurich and University of Zurich, Zurich, Switzerland.
Translational Neuromodeling Unit, IBT, University of Zurich and ETH Zurich, Zurich, Switzerland.
Magn Reson Med. 2022 Jan;87(1):272-280. doi: 10.1002/mrm.28979. Epub 2021 Aug 16.
The aim of this work is the reconciliation of high spatial and temporal resolution for MRI. For this purpose, a novel sampling strategy for 3D encoding is proposed, which provides flexible k-space segmentation along with uniform sampling density and benign filtering effects related to signal decay.
For time-critical MRI applications such as functional MRI (fMRI), 3D k-space is usually sampled by stacking together 2D trajectories such as echo planar imaging (EPI) or spiral readouts, where each shot covers one k-space plane. For very high temporal and medium to low spatial resolution, tilted hexagonal sampling (T-Hex) was recently proposed, which allows the acquisition of a larger k-space volume per excitation than can be covered with a planar readout. Here, T-Hex is described in a modified version where it instead acquires a smaller k-space volume per shot for use with medium temporal and high spatial resolution.
Mono-planar T-Hex sampling provides flexibility in the choice of speed, signal-to-noise ratio (SNR), and contrast for rapid MRI acquisitions. For use with a conventional gradient system, it offers the greatest benefit in a regime of high in-plane resolution <1 mm. The sampling scheme is combined with spirals for high sampling speed as well as with more conventional EPI trajectories.
Mono-planar T-Hex sampling combines fast 3D encoding with SNR efficiency and favorable depiction characteristics regarding noise amplification and filtering effects from decay, thereby providing flexibility in the choice of imaging parameters. It is attractive both for high-resolution time series such as fMRI and for applications that require rapid anatomical imaging.
本研究旨在实现 MRI 空间分辨率和时间分辨率的统一。为此,提出了一种新的 3D 编码采样策略,该策略可提供灵活的 k 空间分段,同时保持均匀的采样密度和与信号衰减相关的良性滤波效果。
对于功能磁共振成像(fMRI)等时间关键型 MRI 应用,3D k 空间通常通过堆叠 2D 轨迹(如回波平面成像(EPI)或螺旋读取)进行采样,其中每个激发覆盖一个 k 空间平面。为了实现更高的时间分辨率和中等至低空间分辨率,最近提出了倾斜六边形采样(T-Hex),它允许在每次激发中采集比平面读取更大的 k 空间体积。本文中,T-Hex 采用了一种改进版本,每次激发采集较小的 k 空间体积,用于中时间分辨率和高空间分辨率。
单平面 T-Hex 采样在快速 MRI 采集中具有速度、信噪比(SNR)和对比度选择的灵活性。对于传统梯度系统,在高平面分辨率 <1mm 的区域,它具有最大的优势。该采样方案与螺旋相结合可实现高采样速度,与更传统的 EPI 轨迹相结合可实现更高的 SNR 效率。
单平面 T-Hex 采样将快速 3D 编码与 SNR 效率以及关于噪声放大和衰减滤波效果的有利描述特征相结合,从而在成像参数选择方面具有灵活性。它既适用于 fMRI 等高分辨率时间序列,也适用于需要快速解剖成像的应用。