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首页> 外文期刊>Journal of Neurophysiology >Convergence of multimodal sensory input onto higher-level neurons of the crayfish olfactory pathway.
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Convergence of multimodal sensory input onto higher-level neurons of the crayfish olfactory pathway.

机译:多峰感觉输入到小龙虾嗅觉途径的更高水平神经元的收敛。

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摘要

Intracellular electrophysiological studies of lateral protocerebral interneurons (LPIs) in the crayfish Procambarus clarkii have revealed convergence of multimodal sensory information onto these higher-level cells of the crustacean central olfactory pathway. Antennular stimulation by odors or electrical shocks generates excitatory-inhibitory sequences in some LPIs as does electrical or hydrodynamic stimulation of the antennae. Photic stimulation of the ipsilateral compound eye generates excitatory responses in LPIs, usually in the form of trains of impulse bursts that are timed to the peaks of the spontaneous oscillatory activity that characterizes these neurons. Focal electrical stimulation of the olfactory lobe, the termination point of antennular afferent input, or the accessory lobe, where higher-level visual and tactile inputs converge, also generates brief excitation and a delayed, prolonged inhibition in LPIs. Both phases of this activity are thought to be transmitted to the lateral protocerebrum via deutocerebral projection neurons, which have extensive dendritic arborizations in the olfactory lobe and the accessory lobe. The excitatory pathway is thought to synapse directly with target LPIs, whereas the inhibitory pathway is probably indirect and mediated through GABAergic interneurons within the lateral protocerebrum. There is evidence that both presynaptic and postsynaptic inhibition suppress activity in LPIs. Preliminary observations suggest that a small cluster of neurons adjacent to the hemi-ellipsoid body are inhibitory to LPI activity. Multimodal inhibitory and excitatory modulation of LPI activity may play a part in the contextual identification of odors in the crayfish olfactory system.
机译:小龙虾Procambarus clarkii中的侧脑前interneurons(LPIs)的细胞内电生理研究表明,多模式感官信息在甲壳纲中央嗅觉途径的这些较高水平的细胞上会聚。与气味的电刺激或水动力刺激一样,气味或电击引起的对角膜的刺激会在某些LPI中产生兴奋性抑制序列。对同侧复眼的光刺激会在LPI中产生兴奋性反应,通常以一系列脉冲爆发的形式出现,这些脉冲爆发被定时到表征这些神经元的自发振荡活动的峰值。嗅觉叶,触角传入输入的终止点或副叶的局部电刺激,在较高水平的视觉和触觉输入汇合处,也会产生短暂的刺激和LPI的延迟,长时间抑制。该活动的两个阶段都被认为是通过十脑投射神经元传递到外侧前脑的,该神经元在嗅叶和副叶中具有广泛的树突状乔化。兴奋性途径被认为直接与目标LPIs发生突触,而抑制性途径可能是间接的,并且是通过外侧原脑内的GABA能神经元介导的。有证据表明突触前和突触后抑制均抑制LPIs的活性。初步观察表明,邻近半椭圆体的一小部分神经元抑制LPI活性。 LPI活性的多峰抑制和兴奋性调节可能在小龙虾嗅觉系统的气味识别中起作用。

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