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大鼠岛叶皮层双侧但不对称味觉刺激反应的血氧水平依赖功能磁共振成像

Blood oxygenation level-dependent functional magnetic resonance imaging of bilateral but asymmetrical responses to gustatory stimulation in the rat insular cortex.

机构信息

Integrated Neuroscience Research Team, Tokyo Institute of Psychiatry, Setagaya-ku, Tokyo, Japan.

出版信息

Neuroimage. 2011 Jun 1;56(3):1520-5. doi: 10.1016/j.neuroimage.2011.03.007. Epub 2011 Mar 15.

DOI:10.1016/j.neuroimage.2011.03.007
PMID:21396461
Abstract

Evidence has suggested asymmetrical processing of taste in the human insular cortex, but this phenomenon has not been demonstrated in the rodent brain. Functional magnetic resonance imaging (fMRI) is a powerful tool for studying the functional organization of the brain. In this study, we established a blood oxygenation level-dependent (BOLD) fMRI method at 7 T to investigate the responses to gustatory stimulation in the insular cortex of anesthetized rats (220-310 g, n=15). BOLD signals were observed in the insular cortex in response to 0.5 M sucrose solution as the tastant but not observed in response to distilled water as the control. The reproducibility of the BOLD signals in response to the tastant was confirmed between fMRI runs in the same animal and across animals. The signals were mainly located between 2.3 mm and 0.0 mm anterior to the bregma in the insular cortex. Interestingly, the signals were observed in the insular cortex of both hemispheres, but they were asymmetrical: the anterior and posterior regions to the intersection of the middle cerebral artery and the rhinal fissure as the landmark of the gustatory cortex were dominant in the left and right hemispheres of the insular cortex, respectively. These results suggest that activity in both hemispheres of the insular cortex should be considered to analyze taste processing. We think that BOLD fMRI of taste function in rodents will improve our understanding of taste information processing.

摘要

证据表明,人类脑岛皮层对味觉的处理存在不对称性,但这一现象在啮齿动物大脑中尚未得到证实。功能磁共振成像(fMRI)是研究大脑功能组织的有力工具。在这项研究中,我们建立了一种在 7T 下基于血氧水平依赖(BOLD)的 fMRI 方法,以研究麻醉大鼠(220-310g,n=15)脑岛皮层对味觉刺激的反应。当作为味觉剂的 0.5M 蔗糖溶液刺激时,在脑岛皮层观察到 BOLD 信号,但当作为对照的蒸馏水刺激时则没有观察到。在同一只动物的不同 fMRI 运行之间以及在不同动物之间,对味觉剂的 BOLD 信号的重现性得到了确认。信号主要位于脑岛皮层的前囟前 2.3mm 至 0.0mm 之间。有趣的是,信号在双侧脑岛皮层都可以观察到,但它们是不对称的:以大脑中动脉和嗅裂交汇处为味觉皮层的标志,前、后区域分别在左侧和右侧脑岛皮层占主导地位。这些结果表明,应该考虑分析味觉处理的脑岛皮层的两个半球的活动。我们认为,啮齿动物味觉功能的 BOLD fMRI 将有助于我们理解味觉信息处理。

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