首页> 美国卫生研究院文献>Frontiers in Systems Neuroscience >Spatio-temporal activity patterns of odor-induced synchronized potentials revealed by voltage-sensitive dye imaging and intracellular recording in the antennal lobe of the cockroach
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Spatio-temporal activity patterns of odor-induced synchronized potentials revealed by voltage-sensitive dye imaging and intracellular recording in the antennal lobe of the cockroach

机译:电压敏感染料成像和蟑螂触角细胞内记录揭示了气味诱导的同步电位的时空活动模式。

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摘要

In animals, odor qualities are represented as both spatial activity patterns of glomeruli and temporal patterns of synchronized oscillatory signals in the primary olfactory centers. By optical imaging of a voltage-sensitive dye (VSD) and intracellular recording from secondary olfactory interneurons, we examined possible neural correlates of the spatial and temporal odor representations in the primary olfactory center, the antennal lobe (AL), of the cockroach Periplaneta americana. Voltage-sensitive dye imaging revealed that all used odorants induced odor-specific temporal patterns of depolarizing potentials in specific combinations of anterior glomeruli of the AL. The depolarizing potentials evoked by different odorants were temporally synchronized across glomeruli and were termed “synchronized potentials.” These observations suggest that odor qualities are represented by spatio-temporal activity patterns of the synchronized potentials across glomeruli. We also performed intracellular recordings and stainings from secondary olfactory interneurons, namely projection neurons and local interneurons. We analyzed the temporal structures of enanthic acid-induced action potentials of secondary olfactory interneurons using simultaneous paired intracellular recording from two given neurons. Our results indicated that the multiple local interneurons synchronously fired in response to the olfactory stimulus. In addition, all stained enanthic acid-responsive projection neurons exhibited dendritic arborizations within the glomeruli where the synchronized potentials were evoked. Since multiple local interneurons are known to synapse to a projection neuron in each glomerulus in the cockroach AL, converging inputs from local interneurons to the projection neurons appear to contribute the odorant specific spatio-temporal activity patterns of the synchronized potentials.
机译:在动物中,气味质量既表示肾小球的空间活动模式,又表示主要嗅觉中心的同步振荡信号的时间模式。通过压敏染料(VSD)的光学成像和继发性嗅觉中神经元的细胞内记录,我们检查了美洲Per(Periplaneta americana)初级嗅觉中心,触角(AL)的时空气味表征的可能神经相关性。电压敏感染料成像显示,所有使用的加味剂均会在AL前肾小球的特定组合中引起去极化电势的气味特定时间模式。由不同气味剂引起的去极化电位在肾小球上是暂时同步的,被称为“同步电位”。这些观察表明,气味质量由跨肾小球同步电位的时空活动模式表示。我们还进行了细胞内记录和次级嗅觉中间神经元(即投射神经元和局部中间神经元)的染色。我们使用同时​​配对的两个给定神经元的细胞内记录,分析了庚酸诱导的次级嗅觉中神经元动作电位的时间结构。我们的结果表明,响应刺激刺激,多个局部中间神经元被同步激发。此外,所有染色的庚酸反应投射神经元在肾小球内均表现出树突状的树突状排列,并引起同步电位。由于已知多个局部中间神经元突触到蟑螂AL的每个肾小球中的投射神经元,因此从局部中间神经元到投射神经元的汇聚输入似乎有助于同步电位的气味特异性时空活动模式。

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