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利用氘代谢波谱成像技术在体研究脑出血后的代谢异常。

Exploring Metabolic Aberrations after Intracerebral Hemorrhage In Vivo with Deuterium Metabolic Spectroscopy Imaging.

机构信息

State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Innovation Academy for Precision Measurement Science and Technology, Chinese Academy of Sciences, Wuhan 430071, China.

University of Chinese Academy of Sciences, Beijing 100864, China.

出版信息

Anal Chem. 2024 Oct 1;96(39):15563-15571. doi: 10.1021/acs.analchem.4c01999. Epub 2024 Sep 18.

Abstract

Aberrations in metabolism after intracerebral hemorrhage (ICH), particularly lactate metabolism, play a crucial role in the pathophysiology and patient outcome. To date, the evaluation of metabolism relies heavily on invasive methods such as microdialysis, restricting a comprehensive understanding of the metabolic mechanisms associated with ICH. This study proposes a noninvasive metabolic imaging method based on H magnetic resonance spectroscopy and imaging (H-MRS/MRSI) to detect metabolic changes after ICH in vivo. To overcome the low-sensitivity limitation of H, we designed a new H-H double-resonance coil with H-channel active detuning and proposed chemical shift imaging based on the balanced steady-state free precession method (CSI-bSSFP). Compared with the volume coil, the signal-to-noise ratio (SNR) of the new coil was increased by 4.5 times. In addition, the SNR of CSI-bSSFP was 1.5 times higher than that of conventional CSI. These two technologies were applied to measure lactate metabolic flux at different phases of ICH. The results show a higher lactate concentration in ICH rats than in control rats, which is in line with the increased expression of lactate dehydrogenase measured via immunohistochemistry staining (AUC: control, 0.08 ± 0.02 vs ICH-3d, 0.39 ± 0.05 vs ICH-7d, 0.18 ± 0.02, < 0.01; H-score: control, 126.4 ± 5.03 vs ICH-3d, 168.4 ± 5.71 vs ICH-7d,133.6 ± 7.70, < 0.05). A higher lactate signal also appeared near the ICH region than in normal brain tissue. In conclusion, H-MRS/MRSI shows potential as a useful method for in vivo metabolic imaging and noninvasive assessment of ICH.

摘要

脑出血(ICH)后代谢的改变,特别是乳酸代谢,在病理生理学和患者预后中起着关键作用。迄今为止,代谢的评估主要依赖于微透析等侵入性方法,限制了对与 ICH 相关的代谢机制的全面理解。本研究提出了一种基于 H 磁共振波谱和成像(H-MRS/MRSI)的非侵入性代谢成像方法,用于在体内检测 ICH 后的代谢变化。为了克服 H 的低灵敏度限制,我们设计了一种具有 H 通道主动失谐的新型 H-H 双共振线圈,并提出了基于平衡稳态自由进动方法的化学位移成像(CSI-bSSFP)。与容积线圈相比,新线圈的信噪比(SNR)提高了 4.5 倍。此外,CSI-bSSFP 的 SNR 比传统 CSI 高 1.5 倍。这两种技术都被应用于测量 ICH 不同阶段的乳酸代谢通量。结果表明,ICH 大鼠的乳酸浓度高于对照组,这与免疫组织化学染色测量的乳酸脱氢酶表达增加一致(AUC:对照组,0.08±0.02 比 ICH-3d,0.39±0.05 比 ICH-7d,0.18±0.02, < 0.01;H 评分:对照组,126.4±5.03 比 ICH-3d,168.4±5.71 比 ICH-7d,133.6±7.70, < 0.05)。在 ICH 区域附近也出现了较高的乳酸信号,而在正常脑组织中则没有。总之,H-MRS/MRSI 显示出作为一种有用的体内代谢成像和非侵入性评估 ICH 的方法的潜力。

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