游泳对照组在空间参考记忆任务中的运动皮层活动分析。

IF 0.8 4区 医学 Q4 NEUROSCIENCES
S Cid-Duarte, A Gutiérrez-Menéndez, C Zorzo, J L Arias, M Méndez
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引用次数: 1

摘要

啮齿类动物的空间参照记忆通常在Morris水迷宫(MWM)中进行。为了减少与学习无关的大脑活动,在这项任务中使用控制组是必不可少的。为了研究选定脑区的功能贡献,我们通过定量细胞色素c氧化酶组织化学评估了神经元的代谢活性。这项技术允许测量负责ATP生产的氧化代谢。我们的目的是分析游泳控制组是否是空间参考记忆任务评价的最佳控制组。为了做到这一点,我们探索MWM的行为和运动皮层及其层的神经元代谢活动,以及海马。实验采用参照记忆组、游泳组和笼内对照组三组Wistar大鼠。行为学结果显示实验组和游泳对照组在象限停留时间和游泳速度上存在显著差异。此外,与两个对照组相比,在实验中发现更高的神经元海马代谢活性(CA1亚场)。然而,在运动皮层神经元代谢活动的组没有差异。因此,我们可以假设游泳对照组有效地隔离了游泳过程中的运动活动,行为结果是由于与学习本身相关的海马活动,而不是在迷宫中进行的身体活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The swimming control group in spatial reference memory task: analysis of its motor cortex activity.

Spatial reference memory in rodents is commonly performed in the Morris Water Maze (MWM). The use of control groups on this task is essential in order to subtract brain activity not related to learning. To study the functional contribution of selected brain areas, we assessed neuronal metabolic activity thorough quantitative cytochrome c oxidase histochemistry. This technique allows the measurement of the oxidative metabolism responsible for ATP production. Our objective is to analyse if the swimming control group is an optimal control for the evaluation of spatial reference memory task. To do so, we explore the behaviour in the MWM and the neuronal metabolic activity of motor cortex and its layers, in addition to hippocampus. For this purpose, three groups of Wistar rats were used: reference memory group, swimming control, and cage control. The behavioural results show significant differences between the experimental group and the swimming control group in time spent in the quadrants and swimming speed. In addition, higher neuronal hippocampal metabolic activity (CA1 subfield) was found in the experimental when compared to both controls. However, there are no differences in the motor cortex neuronal metabolic activity of the groups. Therefore, we can assume that the swimming control group effectively isolates the motor activity during the swim and the behavioural results are due to the hippocampal activity related to learning itself and not the physical activity performed in the labyrinth.

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来源期刊
Archives Italiennes De Biologie
Archives Italiennes De Biologie 医学-神经科学
CiteScore
2.10
自引率
30.00%
发文量
12
审稿时长
>12 weeks
期刊介绍: Archives Italiennes de Biologie - a Journal of Neuroscience- was founded in 1882 and represents one of the oldest neuroscience journals in the world. Archives publishes original contributions in all the fields of neuroscience, including neurophysiology, experimental neuroanatomy and electron microscopy, neurobiology, neurochemistry, molecular biology, genetics, functional brain imaging and behavioral science. Archives Italiennes de Biologie also publishes monographic special issues that collect papers on a specific topic of interest in neuroscience as well as the proceedings of important scientific events. Archives Italiennes de Biologie is published in 4 issues per year and is indexed in the major collections of biomedical journals, including Medline, PubMed, Current Contents, Excerpta Medica.
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