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Muscarinic Receptors in Amygdala Control Trace Fear Conditioning

机译:在杏仁核控制痕迹恐惧条件反射毒蕈碱受体

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摘要

Intelligent behavior requires transient memory, which entails the ability to retain information over short time periods. A newly-emerging hypothesis posits that endogenous persistent firing (EPF) is the neurophysiological foundation for aspects or types of transient memory. EPF is enabled by the activation of muscarinic acetylcholine receptors (mAChRs) and is triggered by suprathreshold stimulation. EPF occurs in several brain regions, including the lateral amygdala (LA). The present study examined the role of amygdalar mAChRs in trace fear conditioning, a paradigm that requires transient memory. If mAChR-dependent EPF selectively supports transient memory, then blocking amygdalar mAChRs should impair trace conditioning, while sparing delay and context conditioning, which presumably do not rely upon transient memory. To test the EPF hypothesis, LA was bilaterally infused, prior to trace or delay conditioning, with either a mAChR antagonist (scopolamine) or saline. Computerized video analysis quantified the amount of freezing elicited by the cue and by the training context. Scopolamine infusion profoundly reduced freezing in the trace conditioning group but had no significant effect on delay or context conditioning. This pattern of results was uniquely anticipated by the EPF hypothesis. The present findings are discussed in terms of a systems-level theory of how EPF in LA and several other brain regions might help support trace fear conditioning.
机译:智能行为需要瞬态记忆,这需要能够在短时间内保留信息。一种新出现的假设认为,内源性持续放电(EPF)是瞬时记忆各个方面或类型的神经生理基础。 EPF通过毒蕈碱乙酰胆碱受体(mAChRs)的激活而启用,并由阈上刺激触发。 EPF发生在几个大脑区域,包括外侧杏仁核(LA)。本研究检查了杏仁核mAChRs在痕量恐惧调节中的作用,该模型需要短暂记忆。如果依赖于mAChR的EPF有选择地支持瞬态记忆,则阻止杏仁核mAChR会损害痕量条件,同时保留延迟和上下文条件,而后者可能不依赖于瞬态记忆。为了测试EPF假设,在进行微量或延迟调理之前,先向LA两侧灌注mAChR拮抗剂(东pol碱)或生理盐水。计算机视频分析量化了提示和训练环境引起的冻结。东co碱输注可显着降低痕量调理组的冰冻,但对延迟或情境调理没有明显影响。这种结果模式是EPF假设唯一预期的。本研究结果是根据系统级理论来讨论的,该系统级理论是关于LA和其他几个大脑区域中的EPF如何帮助支持痕量恐惧条件的。

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