左下丘脑肌醇水平与大麻依赖年轻人更大的认知冲动相关:4T的初步光谱证据。

Yasmin Mashhoon, J Eric Jensen, Jennifer T Sneider, Deborah A Yurgelun-Todd, Marisa M Silveri
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引用次数: 19

摘要

长期使用大麻(MRJ)对神经化学的影响尚未得到很好的表征。此前,全球肌醇(mI)在白质中的浓度和分布的改变与年轻mrj依赖男性的冲动和情绪症状有关。本研究的目的是回顾性检查先前收集的数据,以调查大麻素受体密集的大脑区域代谢物水平的潜在区域特异性。利用二维j分辨质子磁共振光谱成像(MRSI)获得4.0特斯拉的光谱,从感兴趣区域的体素中量化代谢物的整个j耦合光谱表面。对于当前的区域光谱分析,2D-JMRSI网格被定位在中央轴向切片上,并在x和y维度上移动,以在包含丘脑、颞叶和顶枕皮质的区域上最佳地定位体素。与不使用MRJ的参与者相比,MRJ使用者在左丘脑(lThal)的mI水平显著降低,这与认知冲动升高有关。其他地区分析没有发现任何显著的群体差异。目前的研究结果表明,在MRJ使用者中,心肌梗死水平的降低是区域性的。此外,研究结果表明,mI和lThal是导致冲动升高的唯一因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Lower Left Thalamic Myo-Inositol Levels Associated with Greater Cognitive Impulsivity in Marijuana-Dependent Young Men: Preliminary Spectroscopic Evidence at 4T.

The effects of chronic marijuana (MRJ) use on neurochemistry are not well characterized. Previously, altered global myo-Inositol (mI) concentrations and distribution in white matter were associated with impulsivity and mood symptoms in young MRJ-dependent men. The objective of this study was to retrospectively examine previously collected data, to investigate the potential regional specificity of metabolite levels in brain regions densely packed with cannabinoid receptors. Spectra were acquired at 4.0 Tesla using 2D J-resolved proton magnetic resonance spectroscopic imaging (MRSI) to quantify the entire J-coupled spectral surface of metabolites from voxels in regions of interest. For the current regional spectral analyses, a 2D-JMRSI grid was positioned over the central axial slice and shifted in the x and y dimensions to optimally position voxels over regions containing thalamus, temporal lobe, and parieto-occipital cortex. MRJ users exhibited significantly reduced mI levels in the left thalamus (lThal), relative to non-using participants, which were associated with elevated cognitive impulsivity. Other regional analyses did not reveal any significant group differences. The current findings indicate that reduced mI levels are regionally specific to the lThal in MRJ users. Furthermore, findings suggest that mI and the lThal uniquely contribute to elevated impulsivity.

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