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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Long-term synaptic plasticity in deep layer-originated associational projections to superficial layers of rat entorhinal cortex.
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Long-term synaptic plasticity in deep layer-originated associational projections to superficial layers of rat entorhinal cortex.

机译:在大鼠内嗅皮层表层的深层起源的关联投影中的长期突触可塑性。

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Superficial layers of the entorhinal cortex (EC) relay the majority of cortical input projections to the hippocampus, whereas deep layers of the EC mediate a large portion of hippocampal output projections back to other cortical areas, suggesting a functional segregation between superficial and deep layers of the EC as input and output structures of the hippocampus, respectively. However, deep layers of the EC send associational projections to superficial layers, suggesting a potential interaction between neocortical input and hippocampus-processed output in superficial layers. This possibility was investigated by examining whether deep to superficial EC projections support long-term synaptic plasticity, and whether they interact with other pathways in superficial layers in rat medial EC slice preparations. Synaptic responses of the deep-to-superficial layer projections were verified based on field potential profiles, paired-pulse facilitation, physical separation between superficial and deep layers, and pharmacological manipulation. Long-term potentiation (LTP) was reliably induced in the deep-to-superficial layer projections by burst stimulations that emulated theta or sharp wave electroencephalogram (EEG),and it was blocked by an N-methyl-d-aspartate receptor antagonist (D-2-amino-5-phosphonopentanoic acid) and a calcium channel blocker (nifedipine). Prolonged low frequency stimulation induced long-term depression. A weak stimulation of deep layers, which induced a small degree of LTP by itself, generated a much larger degree of LTP when paired with a strong stimulation of superficial layers, indicating that the deep-to-superficial layer projections cooperate with other pathways in the superficial EC to enhance synaptic weights. Our results suggest that neocortical input and hippocampal output information are integrated in superficial layers of the EC.
机译:内嗅皮质(EC)的浅层将大部分皮质输入投影中继到海马,而EC的深层将大部分海马输出投影介导回其他皮质区域,这表明功能性表皮和深层之间存在功能隔离EC分别作为海马的输入和输出结构。但是,EC的深层将关联投影发送到浅层,这表明新皮质输入和浅层中海马处理的输出之间可能存在相互作用。通过检查深至浅表EC突起是否支持长期的突触可塑性以及它们是否与大鼠内侧EC切片制剂中浅表层的其他途径相互作用来研究这种可能性。基于场电势分布图,成对脉冲促进作用,浅层和深层之间的物理分离以及药理学操作,验证了深层至浅层投影的突触响应。通过模拟theta或尖波脑电图(EEG)的爆发刺激,在深至浅层投影中可靠地诱导了长期增强(LTP),并被N-甲基-d-天冬氨酸受体拮抗剂(D -2-氨基-5-膦基戊酸)和钙通道阻滞剂(硝苯地平)。长时间的低频刺激会导致长期抑郁。深层的弱刺激本身会引起少量的LTP,当与浅层的强烈刺激配对时会产生更大程度的LTP,这表明深层至浅层的投影与水体中的其他途径协同作用浅表EC增强突触重量。我们的结果表明,新皮质输入和海马输出信息被整合在EC的浅层中。

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