Posner Michael I, Weible Aldis P, Voelker Pascale, Rothbart Mary K, Niell Cristopher M
Institute of Neuroscience, University of Oregon, Eugene, OR, United States.
Department of Psychology, University of Oregon, Eugene, OR, United States.
Front Neurosci. 2022 Mar 11;16:834701. doi: 10.3389/fnins.2022.834701. eCollection 2022.
Attention is a necessary component in many forms of human and animal learning. Numerous studies have described how attention and memory interact when confronted with a choice point during skill learning. In both animal and human studies, pathways have been found that connect the executive and orienting networks of attention to the hippocampus. The anterior cingulate cortex, part of the executive attention network, is linked to the hippocampus the nucleus reuniens of the thalamus. The parietal cortex, part of the orienting attention network, accesses the hippocampus the entorhinal cortex. These studies have led to specific predictions concerning the functional role of each pathway in connecting the cortex to the hippocampus. Here, we review some of the predictions arising from these studies. We then discuss potential methods for manipulating the two pathways and assessing the directionality of their functional connection using viral expression techniques in mice. New studies may allow testing of a behavioral model specifying how the two pathways work together during skill learning.
注意力是人类和动物多种学习形式中的必要组成部分。众多研究描述了在技能学习过程中面对选择点时,注意力与记忆是如何相互作用的。在动物和人类研究中,都发现了将注意力的执行网络和定向网络与海马体相连的通路。执行性注意力网络的一部分——前扣带回皮层,与海马体(丘脑的 reunien 核)相连。定向注意力网络的一部分——顶叶皮层,通过内嗅皮层与海马体相连。这些研究对每条通路在连接皮层与海马体中的功能作用做出了具体预测。在此,我们回顾这些研究产生的一些预测。然后,我们讨论在小鼠中使用病毒表达技术操纵这两条通路并评估其功能连接方向性的潜在方法。新的研究可能会对一个行为模型进行测试,该模型明确了这两条通路在技能学习过程中是如何协同工作的。