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利用体内高场 H 磁共振波谱技术对急性缺血严重程度进行代谢指纹鉴别。

Metabolic fingerprints discriminating severity of acute ischemia using in vivo high-field H magnetic resonance spectroscopy.

机构信息

Animal Imaging and Technology Core (AIT), Center for Biomedical Imaging (CIBM), Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

Centre Hospitalier Universitaire Vaudois (CHUV), Lausanne, Switzerland.

出版信息

J Neurochem. 2020 Jan;152(2):252-262. doi: 10.1111/jnc.14922. Epub 2019 Dec 18.

Abstract

Despite the improving imaging techniques, it remains challenging to produce magnetic resonance (MR) imaging fingerprints depicting severity of acute ischemia. The aim of this study was to evaluate the potential of the overall high-field H MR Spectroscopy ( H-MRS) neurochemical profile as a metabolic signature for acute ischemia severity in rodent brains. We modeled global ischemia with one-stage 4-vessel-occlusion (4VO) in rats. Vascular structures were assessed immediately by magnetic resonance angiography. The neurochemical responses in the bilateral cortex were measured 1 h after stroke onset by H-MRS. Then we used Partial-Least-Squares discriminant analysis on the overall neurochemical profiles to seek metabolic signatures for ischemic severity subgroups. This approach was further tested on neurochemical profiles of mouse striatum 1 h after permanent middle cerebral artery occlusion, where vascular blood flow was monitored by laser Doppler. Magnetic resonance angiography identified successful 4VO from controls and incomplete global ischemia (e.g., 3VO). H-MR spectra of rat cortex after 4VO showed a specific metabolic pattern, distinct from that of respective controls and rats with 3VO. Partial-Least-Squares discriminant analysis on the overall neurochemical profiles revealed metabolic signatures of acute ischemia that may be extended to mice after permanent middle cerebral artery occlusion. Fingerprinting severity of acute ischemia using neurochemical information may improve MR diagnosis in stroke patients.

摘要

尽管成像技术不断提高,但要生成描绘急性缺血严重程度的磁共振(MR)成像指纹仍然具有挑战性。本研究旨在评估整体高场 H 磁共振波谱( H-MRS)神经化学特征作为啮齿动物大脑急性缺血严重程度的代谢特征的潜力。我们通过单阶段 4 血管闭塞(4VO)在大鼠中模拟全脑缺血。血管结构通过磁共振血管造影术立即进行评估。在中风发作后 1 小时通过 H-MRS 测量双侧皮质的神经化学反应。然后,我们使用偏最小二乘判别分析对整体神经化学特征进行分析,以寻找缺血严重程度亚组的代谢特征。这种方法还在永久性大脑中动脉闭塞后 1 小时的小鼠纹状体神经化学特征上进行了测试,其中通过激光多普勒监测血管血流。磁共振血管造影术可将成功的 4VO 与对照组和仅 3VO 的不完全性全脑缺血区分开来。4VO 后大鼠皮质的 H-MR 光谱显示出一种特定的代谢模式,与各自的对照组和 3VO 大鼠的代谢模式明显不同。整体神经化学特征的偏最小二乘判别分析揭示了急性缺血的代谢特征,这些特征可能扩展到永久性大脑中动脉闭塞后的小鼠。使用神经化学信息对急性缺血严重程度进行指纹识别可能会提高中风患者的 MR 诊断水平。

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