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Towards a unified model of Pavlovian conditioning: A solution to the reconsolidation problem

机译:迈向帕夫洛韦调理的统一模型:重新垄断问题的解决方案

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Memory formation is a complex dynamic process. When memories are formed they are labile at first but gradually become progressively consolidated into stable traces via synthesis of new proteins. Recent rediscoveries show that after reactivation, a consolidated memory can become transiently sensitive to updating, enhancing or disruption and needs to undergo a process of restabilization, known as reconsolidation. The reconsolidation has challenged the classical view of how memories are consolidated over time and stored. The reconsolidation process is not fully understood, and theories about the nature and function of memory reconsolidation remain controversial. To reconcile many of the opposed views on reconsolidation, according to [43], a new theory of memory is required that would have to encompass: (i) the stabilization process after new learning, (ii) the stability of a non-reactivated memory, (iii) the lability of reactivated memory, and (iv) the boundary conditions for reconsolidation. We believe that the Theta-Regulated Attention Theory [62] and the "Neurolocator" model [25] as its implementation, can meet the above requirements. These theory and model are also able to answer the most difficult and unresolved outstanding questions of consolidation/reconsolidation studies.
机译:内存形成是一个复杂的动态过程。当形成记忆时,它们首先是不稳定的,但通过合成新蛋白质逐渐逐渐变成稳定的痕迹。最近的重新发现表明,在重新激活后,综合记忆可能对更新,增强或破坏并且需要进行重新溶解的过程变得瞬时敏感,并且需要被称为重新溶解。重新定位已经挑战了记忆如何随时间巩固和存储的古典观点。重新透镜过程尚未完全理解,并且关于记忆重新透镜的性质和功能的理论仍存在争议。根据[43],根据[43],需要涵盖的新内存理论,必须包括:(i)新学习后的稳定过程,(ii)非重新激活记忆的稳定性(iii)重新激活记忆的宽度,和(iv)重新垄断的边界条件。我们认为,θ调节的注意理论[62]和“神经腐蚀剂”模型[25]作为其实施,可以满足上述要求。这些理论和模型也能够回答最困难和尚未解决的巩固/重新定位研究的未解决问题。

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