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首页> 外文期刊>The Journal of Experimental Biology >Neural plasticity of mushroom body-extrinsic neurons in the honeybee brain
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Neural plasticity of mushroom body-extrinsic neurons in the honeybee brain

机译:蜜蜂大脑中蘑菇体外部神经元的神经可塑性

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Central interneurons exiting the alpha lobe of the mushroom bodies were studied with respect to their plasticity by electrically stimulating their presynaptic inputs, the Kenyon cells. Special attention was given to the analysis of a single, identified neuron, the PE1. Three stimulation protocols were tested: double pulses, tetanus (100 Hz for 1 s), and tetanus paired with intracellular de-or hyper-polarization of the recorded cell. Double-pulse stimulations revealed short-term facilitation and depression, tuning the responses of these interneurons to frequencies in the range of 2040 Hz. The tetanus may lead to augmentation of responses to test stimuli lasting for several minutes, or to depression followed by augmentation. Associative long-term potentiation (LTP) was induced in the PE1 neuron by pairing a presynaptic tetanus with depolarization. This is the first time that associative LTP has been found in an interneuron of the insect nervous system. These data are discussed in the context of spike tuning in the output of the mushroom body, and the potential role of associative LTP in olfactory learning. It is concluded that the honeybee mushroom body output neurons are likely to contribute to the formation of olfactory memory.
机译:通过电刺激突触前输入Kenyon细胞,研究了离开蘑菇体α叶的中央中间神经元的可塑性。特别注意了对单个已识别神经元PE1的分析。测试了三种刺激方案:双脉冲,破伤风(100 Hz持续1 s)和破伤风与记录细胞的细胞内去极化或超极化配对。双脉冲刺激显示出短期的促进和抑制,使这些中间神经元对2040 Hz范围内的频率做出响应。破伤风可能会导致对持续数分钟的测试刺激的反应增强,或者导致抑郁,然后增强。通过将突触前破伤风与去极化配对,可在PE1神经元中诱导相关的长期增强(LTP)。这是在昆虫神经系统的中间神经元中首次发现缔合性LTP。这些数据是在蘑菇体输出中的尖峰调整以及关联LTP在嗅觉学习中的潜在作用的背景下讨论的。结论是蜜蜂的蘑菇体输出神经元可能有助于嗅觉记忆的形成。

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