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依赖训练的联想学习诱导新皮质结构可塑性:痕迹眨眼条件反射分析

Training-dependent associative learning induced neocortical structural plasticity: a trace eyeblink conditioning analysis.

作者信息

Chau Lily S, Prakapenka Alesia V, Zendeli Liridon, Davis Ashley S, Galvez Roberto

机构信息

Psychology Department, University of Illinois at Urbana-Champaign, Champaign, Illinois, United States of America.

Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, Champaign, Illinois, United States of America.

出版信息

PLoS One. 2014 Apr 23;9(4):e95317. doi: 10.1371/journal.pone.0095317. eCollection 2014.

Abstract

Studies utilizing general learning and memory tasks have suggested the importance of neocortical structural plasticity for memory consolidation. However, these learning tasks typically result in learning of multiple different tasks over several days of training, making it difficult to determine the synaptic time course mediating each learning event. The current study used trace-eyeblink conditioning to determine the time course for neocortical spine modification during learning. With eyeblink conditioning, subjects are presented with a neutral, conditioned stimulus (CS) paired with a salient, unconditioned stimulus (US) to elicit an unconditioned response (UR). With multiple CS-US pairings, subjects learn to associate the CS with the US and exhibit a conditioned response (CR) when presented with the CS. Trace conditioning is when there is a stimulus free interval between the CS and the US. Utilizing trace-eyeblink conditioning with whisker stimulation as the CS (whisker-trace-eyeblink: WTEB), previous findings have shown that primary somatosensory (barrel) cortex is required for both acquisition and retention of the trace-association. Additionally, prior findings demonstrated that WTEB acquisition results in an expansion of the cytochrome oxidase whisker representation and synaptic modification in layer IV of barrel cortex. To further explore these findings and determine the time course for neocortical learning-induced spine modification, the present study utilized WTEB conditioning to examine Golgi-Cox stained neurons in layer IV of barrel cortex. Findings from this study demonstrated a training-dependent spine proliferation in layer IV of barrel cortex during trace associative learning. Furthermore, findings from this study showing that filopodia-like spines exhibited a similar pattern to the overall spine density further suggests that reorganization of synaptic contacts set the foundation for learning-induced neocortical modifications through the different neocortical layers.

摘要

利用一般学习和记忆任务的研究表明,新皮质结构可塑性对记忆巩固很重要。然而,这些学习任务通常会在几天的训练中导致对多种不同任务的学习,这使得难以确定介导每个学习事件的突触时间进程。当前的研究使用痕迹眨眼条件反射来确定学习过程中新皮质棘突修饰的时间进程。在眨眼条件反射中,向受试者呈现一个中性的条件刺激(CS),并与一个显著的非条件刺激(US)配对,以引发非条件反应(UR)。通过多次CS-US配对,受试者学会将CS与US联系起来,并在呈现CS时表现出条件反应(CR)。痕迹条件反射是指CS和US之间存在一个无刺激间隔。利用以胡须刺激作为CS的痕迹眨眼条件反射(胡须-痕迹-眨眼:WTEB),先前的研究结果表明,初级体感(桶状)皮质对于痕迹关联的获得和保持都是必需的。此外,先前的研究结果表明,WTEB的获得会导致细胞色素氧化酶胡须表征的扩展以及桶状皮质IV层的突触修饰。为了进一步探索这些发现并确定新皮质学习诱导的棘突修饰的时间进程,本研究利用WTEB条件反射来检查桶状皮质IV层中经高尔基-考克斯染色的神经元。这项研究的结果表明,在痕迹联想学习过程中,桶状皮质IV层存在训练依赖性的棘突增殖。此外,这项研究的结果表明,丝状伪足样棘突与整体棘突密度呈现出相似的模式,这进一步表明突触接触的重组为通过不同新皮质层的学习诱导的新皮质修饰奠定了基础。

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