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首页> 外文期刊>Neuron >Testing odor response stereotypy in the Drosophila mushroom body.
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Testing odor response stereotypy in the Drosophila mushroom body.

机译:测试果蝇蘑菇体内的气味反应定型观念。

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摘要

The mushroom body is an insect brain structure required for olfactory learning. Its principal neurons, the Kenyon cells (KCs), form a large cell population. The neuronal populations from which their olfactory input derives (olfactory sensory and projection neurons) can be identified individually by genetic, anatomical, and physiological criteria. We ask whether KCs are similarly identifiable individually, using genetic markers and whole-cell patch-clamp in vivo. We find that across-animal responses are as diverse within the genetically labeled subset as across all KCs in a larger sample. These results combined with those from a simple model, using projection neuron odor responses as inputs, suggest that the precise circuit specification seen at earlier stages of odor processing is likely absent among the mushroom body KCs.
机译:蘑菇体是嗅觉学习所需的昆虫大脑结构。它的主要神经元Kenyon细胞(KCs)形成大量细胞。嗅觉输入所来自的神经元群体(嗅觉感觉和投射神经元)可以通过遗传,解剖和生理学标准进行单独识别。我们问是否在体内使用遗传标记和全细胞膜片钳可单独识别KC。我们发现,在较大的样本中,跨动物的反应在遗传标记的子集中与在所有KC中一样。这些结果与使用投影神经元气味响应作为输入的简单模型的结果相结合,表明蘑菇体KC中可能缺少气味处理早期阶段所看到的精确电路规格。

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