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在 9.4T 下通过整合弛豫增强和子空间成像进行高分辨率 H-MRSI。

High-resolution H-MRSI at 9.4 T by integrating relaxation enhancement and subspace imaging.

机构信息

Department of Bioengineering, University of Illinois Urbana-Champaign, Urbana, Illinois, USA.

Beckman Institute for Advanced Science and Technology, University of Illinois Urbana-Champaign, Urbana, Illinois, USA.

出版信息

NMR Biomed. 2024 Oct;37(10):e5161. doi: 10.1002/nbm.5161. Epub 2024 May 8.

Abstract

Achieving high-resolution and high signal-to-noise ratio (SNR) in vivo metabolic imaging via fast magnetic resonance spectroscopic imaging (MRSI) has been a longstanding challenge. This study combines the methods of relaxation enhancement (RE) and subspace imaging for the first time, enabling high-resolution and high-SNR in vivo MRSI of rodent brains at 9.4 T. Specifically, an RE-based chemical shift imaging sequence, which combines a frequency-selective pulse to excite only the metabolite frequencies with minimum perturbation of the water spins and a pair of adiabatic pulses to spatially localize the slice of interest, is designed and evaluated in vivo. This strategy effectively shortens the apparent T of metabolites, thereby increasing the SNR during relatively short repetition time ((T) compared with acquisitions with only spatially selective wideband excitations, and does not require water suppression. The SNR was further enhanced via a state-of-the-art subspace reconstruction method. A novel subspace learning strategy tailored for 9.4 T and RE acquisitions is developed. In vivo, high-resolution (e.g., voxel size of 0.6 × 0.6 × 1.5 mm) MRSI of both healthy mouse brains and a glioma-bearing mouse brain in 12.5 min has been demonstrated.

摘要

通过快速磁共振波谱成像(MRSI)实现高分辨率和高信噪比(SNR)的体内代谢成像一直是一个长期存在的挑战。本研究首次将弛豫增强(RE)和子空间成像方法相结合,在 9.4T 下实现了啮齿动物大脑的高分辨率和高 SNR 体内 MRSI。具体来说,设计并评估了一种基于 RE 的化学位移成像序列,该序列结合了频率选择脉冲,仅激发代谢物频率,对水自旋的干扰最小,以及一对绝热脉冲,用于对感兴趣的切片进行空间定位。该策略有效地缩短了代谢物的表观 T,从而在相对较短的重复时间 ((T) 期间增加了 SNR,与仅使用空间选择性宽带激发的采集相比,并且不需要水抑制。通过最先进的子空间重建方法进一步提高了 SNR。开发了一种针对 9.4T 和 RE 采集的新型子空间学习策略。在体内,已经在 12.5 分钟内演示了健康小鼠大脑和荷胶质瘤小鼠大脑的高分辨率(例如,体素大小为 0.6×0.6×1.5mm)MRSI。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d071/11469943/c7c500b474fc/nihms-2008345-f0001.jpg

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