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首页> 外文期刊>NeuroImage >Functional connectivity MRI tracks memory networks after maze learning in rodents
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Functional connectivity MRI tracks memory networks after maze learning in rodents

机译:在老鼠迷宫学习后,功能连接MRI跟踪记忆网络

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摘要

Learning and memory employs a series of cognitive processes which require the coordination of multiple areas across the brain. However in vivo imaging of cognitive function has been challenging in rodents. Since these processes involve synchronous firing among different brain loci we explored functional connectivity imaging with resting-state fMRI. After 5-day training on a hidden platform watermaze task, notable signal correlations were seen between the hippocampal CA3 and other structures, including thalamus, septum and cingulate cortex, compared to swim control or naive animals. The connectivity sustained 7 days after training and was reorganized toward the cortex, consistent with views of memory trace distribution leading to memory consolidation. These data demonstrates that, after a cognitive task, altered functional connectivity can be detected in the subsequently sedated rodent using in vivo imaging. This approach paves the way to understand dynamics of area-dependent distribution processes in animal models of cognition. (C) 2015 Elsevier Inc. All rights reserved.
机译:学习和记忆采用一系列认知过程,这些过程需要大脑中多个区域的协调。然而,在啮齿动物中,认知功能的体内成像一直具有挑战性。由于这些过程涉及不同脑位点之间的同步放电,因此我们探索了具有静止状态功能磁共振成像的功能连接性成像。经过为期5天的隐藏平台水迷宫任务训练后,与游泳对照或幼稚动物相比,在海马CA3与其他结构(包括丘脑,中隔和扣带皮层)之间发现了明显的信号相关性。训练后7天持续保持连接性,并向皮质重新组织,这与导致内存整合的内存迹线分布视图一致。这些数据表明,在进行认知任务之后,可以使用体内成像在随后的镇静啮齿动物中检测到功能连接性改变。这种方法为理解认知动物模型中区域依赖性分布过程的动力学铺平了道路。 (C)2015 Elsevier Inc.保留所有权利。

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