小鼠背齿状回c-Fos表达的行为状态依赖性侧化。

Q4 Neuroscience Neuronal signaling Pub Date : 2019-03-01 Epub Date: 2019-02-27 DOI:10.1042/NS20180206
Jake T Jordan, M Regis Shanley, Carolyn L Pytte
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引用次数: 15

摘要

半球偏侧化是跨双侧对称分类群神经系统的基本组织原则。哺乳动物的海马体在解剖学、生理学和化学上都是偏侧的;然而,功能不对称尚未得到很好的理解。人类的成像研究表明,左右海马体参与了特殊的处理过程。然而,目前尚不清楚啮齿类动物的海马体是否发生侧化活动。动物c-Fos成像提供了单细胞水平分辨率的神经元活动测量。本研究的目的是确定在啮齿类动物海马中是否存在侧化活性依赖的c-Fos表达。为了了解海马加工的功能侧化,我们比较了在车轮上跑步、编码新物体或呆在家里笼子里的小鼠中,齿状回(DG)中c-Fos的半球间表达,DG是一种参与编码新体验的结构。我们发现,车轮运动(WR)在两个半球诱导的DG - c-Fos表达量最大,在两个半球之间没有差异。物体探索(OB)导致DG - c-Fos表达左偏,而对照组(CON)小鼠则没有偏侧。然后,我们试图通过模拟常见的细胞定量方法来确定对半球的不同考虑是否会影响研究的结论。我们发现,不同的方法会得出不同的结论。这些数据证明了小鼠DG中神经元活动的侧化与动物的经验相对应,并表明对半球的不同考虑导致了不同的结论。
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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Behavioral state-dependent lateralization of dorsal dentate gyrus c-Fos expression in mice.

Hemispheric lateralization is a fundamental organizing principle of nervous systems across taxonomic groups with bilateral symmetry. The mammalian hippocampus is lateralized anatomically, physiologically, and chemically; however, functional asymmetries are not yet well understood. Imaging studies in humans have implicated the left and right hippocampus in specialized processing. However, it is not clear if lateralized activity occurs in the rodent hippocampus. c-Fos imaging in animals provides a measure of neuronal activity with a resolution at the level of single cells. The aim of the present study was to determine whether lateralized activity-dependent c-Fos expression occurs in the rodent hippocampus. To understand functional lateralization of hippocampal processing, we compared interhemispheric expression of c-Fos in the dentate gyrus (DG), a structure involved in encoding new experiences, in mice that ran on a wheel, encoded a novel object, or remained in home cages. We found that wheel running (WR) induced the greatest amount of DG c-Fos expression in both hemispheres, with no difference between hemispheres. Object exploration (OB) resulted in left-lateralized DG c-Fos expression, whereas control (CON) mice were not lateralized. We then sought to determine whether differential consideration of hemispheres might influence the conclusions of a study by simulating common cell quantitation methods. We found that different approaches led to different conclusions. These data demonstrate lateralization of neuronal activity in the mouse DG corresponding to the experience of the animal and show that differentially considering hemisphere leads to alternative conclusions.

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4.60
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14 weeks
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