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与痕迹性眨眼条件反射相关的桶状皮层活动。

Activity in Barrel Cortex Related to Trace Eyeblink Conditioning.

机构信息

Werner Reichardt Center for Integrative Neuroscience, Hertie Institute for Clinical Brain Research, Systems Neurophysiology, Eberhard Karls University, Tübingen, Germany.

Werner Reichardt Center for Integrative Neuroscience, Hertie Institute for Clinical Brain Research, Systems Neurophysiology, Eberhard Karls University, Tübingen, Germany

出版信息

eNeuro. 2023 Aug 23;10(8). doi: 10.1523/ENEURO.0206-23.2023. Print 2023 Aug.

Abstract

In mammals several memory systems are responsible for learning and storage of associative memory. Even apparently simple behavioral tasks, like pavlovian conditioning, have been suggested to engage, for instance, implicit and explicit memory processes. Here, we used single-whisker tactile trace eyeblink conditioning (TTEBC) to investigate learning and its neuronal bases in the mouse barrel column, the primary neocortical tactile representation of one whisker. Behavioral analysis showed that conditioned responses (CRs) are spatially highly restricted; they generalize from the principal whisker only to its direct neighbors. Within the respective neural representation, the principal column and its direct neighbors, spike activity showed a learning-related spike rate suppression starting during the late phase of conditioning stimulus (CS) presentation that was sustained throughout the stimulus-free trace period (Trace). Trial-by-trial analysis showed that learning-related activity was independent from the generation of eyelid movements within a trial, and set in around the steepest part of the learning curve. Optogenetic silencing of responses and their learning-related changes during CS and Trace epochs blocked CR acquisition but not its recall after learning. Silencing during the Trace alone, which carried major parts of the learning-related changes, had no effect. In summary, we demonstrate specific barrel column spike rate plasticity during TTEBC that can be partially decoupled from the CR, the learned eye closure, a hallmark of implicit learning. Our results, thus, point to a possible role of the barrel column in contributing to other kinds of memory as well.

摘要

在哺乳动物中,有几个记忆系统负责学习和存储联想记忆。即使是像巴甫洛夫条件反射这样看似简单的行为任务,也被认为涉及到内隐和外显记忆过程。在这里,我们使用单一胡须触觉痕迹眨眼条件反射(TTEBC)来研究学习及其在小鼠桶状柱中的神经基础,桶状柱是一个胡须的主要新皮层触觉代表。行为分析表明,条件反应(CR)在空间上受到高度限制;它们仅从主要胡须扩展到其直接邻居。在各自的神经表示中,主柱及其直接邻居的尖峰活动显示出与学习相关的尖峰率抑制,这种抑制始于条件刺激(CS)呈现的晚期,并在无刺激的痕迹期(Trace)持续。逐次分析表明,与试验内眼睑运动的产生无关,并且在学习曲线的最陡部分开始出现与学习相关的活动。在 CS 和 Trace 时期对反应及其学习相关变化进行光遗传沉默会阻止 CR 的获得,但不会阻止学习后的回忆。仅在 Trace 期间进行沉默,沉默携带了大部分与学习相关的变化,没有效果。总之,我们在 TTEBC 期间证明了特定的桶状柱尖峰率可塑性,它可以部分与 CR 分离,CR 是习得的闭眼,是内隐学习的标志。因此,我们的结果表明,桶状柱可能在其他类型的记忆中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/515b/10449485/6306a0aea26e/ENEURO.0206-23.2023_f001.jpg

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