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快速哈达玛编码的人脑7T光谱成像

Fast Hadamard-Encoded 7T Spectroscopic Imaging of Human Brain.

作者信息

Moon Chan Hong, Lieberman Frank S, Hetherington Hoby P, Pan Jullie W

机构信息

MR Research Center, Department of Radiology, University of Pittsburgh, 200 Lothrop Street, Pittsburgh, PA 15213, USA.

Hillman Cancer Center, Department of Neurology, University of Pittsburgh, 5115 Centre Ave., Pittsburgh, PA 15232, USA.

出版信息

Tomography. 2025 Jan 13;11(1):7. doi: 10.3390/tomography11010007.

Abstract

: The increased SNR available at 7T combined with fast readout trajectories enables accelerated spectroscopic imaging acquisitions for clinical applications. In this report, we evaluate the performance of a Hadamard slice encoding strategy with a 2D rosette trajectory for multi-slice fast spectroscopic imaging at 7T. : Moderate-TE (~40 ms) spin echo and J-refocused polarization transfer sequences were acquired with simultaneous Hadamard multi-slice excitations and rosette in-plane encoding. The moderate spin echo sequence, which targets singlet compounds (i.e., N-acetyl aspartate, creatine, and choline), uses cascaded multi-slice RF excitation pulses to minimize the chemical shift dispersion error. The J-refocused sequence targets coupled spin systems (i.e., glutamate and myo-inositol) using simultaneous multi-slice excitation to maintain the same TE across all slices. A modified Hadamard slice encoding strategy was used to decrease the peak RF pulse amplitude of the simultaneous multi-slice excitation pulse for the J-refocused acquisition. : The accuracy of multi-slice and single-slice rosette spectroscopic imaging (RSI) is comparable to conventional Cartesian-encoded spectroscopic imaging (CSI). Spectral analyses for the J-refocused studies of glutamate and myo-inositol show that the Cramer Rao lower bounds are not significantly different between the fast RSI and conventional CSI studies. Linear regressions of creatine/N-acetyl aspartate and glutamate/N-acetyl aspartate with tissue gray matter content are consistent with literature values. : With minimal gradient demands and fast acquisition times, the 2.2 min to 9 min for single- to four-slice RSI acquisitions are well tolerated by healthy subjects and tumor patients, and show results that are consistent with clinical outcomes.

摘要

7T时可用的更高信噪比与快速读出轨迹相结合,能够实现用于临床应用的加速磁共振波谱成像采集。在本报告中,我们评估了一种采用二维玫瑰花结轨迹的哈达玛切片编码策略在7T下进行多切片快速磁共振波谱成像的性能。:采用同时哈达玛多切片激发和玫瑰花结平面内编码,采集了中等TE(约40 ms)自旋回波和J重聚焦极化转移序列。针对单重态化合物(即N-乙酰天门冬氨酸、肌酸和胆碱)的中等自旋回波序列,使用级联多切片射频激发脉冲来最小化化学位移分散误差。J重聚焦序列针对耦合自旋系统(即谷氨酸和肌醇),使用同时多切片激发以在所有切片上保持相同的TE。采用一种改进的哈达玛切片编码策略来降低J重聚焦采集中同时多切片激发脉冲的射频脉冲峰值幅度。:多切片和单切片玫瑰花结磁共振波谱成像(RSI)的准确性与传统笛卡尔编码磁共振波谱成像(CSI)相当。对谷氨酸和肌醇的J重聚焦研究的光谱分析表明,快速RSI和传统CSI研究之间的克拉美罗下界没有显著差异。肌酸/N-乙酰天门冬氨酸和谷氨酸/N-乙酰天门冬氨酸与组织灰质含量的线性回归与文献值一致。:由于梯度要求最小且采集时间快,单切片到四切片RSI采集的2.2分钟到9分钟时间,健康受试者和肿瘤患者都能很好地耐受,并且结果与临床结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdbe/11769540/4302d1a8d765/tomography-11-00007-g001.jpg

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