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首页> 外文期刊>The European Journal of Neuroscience >Posterior parietal cortex is critical for the encoding, consolidation, and retrieval of a memory that guides attention for learning
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Posterior parietal cortex is critical for the encoding, consolidation, and retrieval of a memory that guides attention for learning

机译:后棱镜皮质对编码,整合和检索记忆来说至关重要,导向学习的注意力

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摘要

Within most contemporary learning theories, reinforcement prediction error, the difference between the obtained and expected reinforcer value, critically influences associative learning. In some theories, this prediction error determines the momentary effectiveness of the reinforcer itself, such that the same physical event produces more learning when its presentation is surprising than when it is expected. In other theories, prediction error enhances attention to potential cues for that reinforcer by adjusting cue-specific associability parameters, biasing the processing of those stimuli so that they more readily enter into new associations in the future. A unique feature of these latter theories is that such alterations in stimulus associability must be represented in memory in an enduring fashion. Indeed, considerable data indicate that altered associability may be expressed days after its induction. Previous research from our laboratory identified brain circuit elements critical to the enhancement of stimulus associability by the omission of an expected event, and to the subsequent expression of that altered associability in more rapid learning. Here, for the first time, we identified a brain region, the posterior parietal cortex, as a potential site for a memorial representation of altered stimulus associability. In three experiments using rats and a serial prediction task, we found that intact posterior parietal cortex function was essential during the encoding, consolidation, and retrieval of an associability memory enhanced by surprising omissions. We discuss these new results in the context of our previous findings and additional plausible frontoparietal and subcortical networks.
机译:在最具现代的学习理论中,加固预测误差,获得的和预期的加强能价值之间的差异,重点影响联合学习。在一些理论中,这种预测误差决定了加强杆子本身的瞬时效果,使得当其呈现比预期令人惊讶时,相同的物理事件产生更多的学习。在其他理论中,预测误差通过调整提示特定的助理性参数来提高该加强件的潜在提示,使得这些刺激的处理使得它们更容易在未来进入新的协会。这些后者理论的独特特征是,刺激可信用的这种改变必须以持久的方式在记忆中表示。实际上,相当大的数据表明,改变的招募能力可以在其诱导之后表示。以前从我们的实验室确定了对旨在提高刺激员件的脑电路电路元件,通过遗漏预期的事件,以及随后表达在更快速的学习中的这种改变的员工的表达。在此,我们首次识别出后部耳廓皮质的脑区,作为纪念刺激员件的纪念表示的潜在部位。在使用大鼠和串行预测任务的三个实验中,我们发现在编码,整合和通过令人惊讶的遗漏增强的招募性记忆中的编码,整合和检索期间,完整的后视图函数是必不可少的。我们在我们之前的发现和额外的合理的前期和解置网络的背景下讨论这些新结果。

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