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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Auditory DUM neurons in a bush-cricket: inhibited inhibitors
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Auditory DUM neurons in a bush-cricket: inhibited inhibitors

机译:灌木丛中的听觉dum神经元:抑制抑制剂

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Thoracic ganglia of many hearing insects house the first level of auditory processing. In bush-crickets, the largest population of local auditory neurons in the prothoracic processing centre are dorsal unpaired median (DUM) neurons. It has been suggested that DUM neurons are inhibitory using gamma-aminobutyric acid (GABA) as transmitter. Immunohistochemistry reveals a population of about 35-50 GABA-positive somata in the posterior medial cluster of the prothoracic ganglion. Only very few small somata in this cluster remain unstained. At least 10 neurites from 10 neurons can be identified. Intracellularly stained auditory DUM neurons have their soma in the cluster of median GABA positive cells and most of them exhibit GABA-immunoreactivity. Responses of certain DUM neurons show obvious signs of inhibition. Application of picrotoxin (PTX), a chloride-channel blocker in insects, changes the responses of many DUM neurons. They become broader in frequency tuning and broader or narrower in temporal pattern tuning. Furthermore, inhibitory postsynaptic potentials (IPSPs) may be replaced by excitatory postsynaptic potentials. Loss of an IPSP in the rising graded potential after PTX-application leads to a significant reduction of first-spike latency. Therefore, auditory DUM neurons receive effective inhibition and are the best candidates for inhibition in DUM neurons and other auditory interneurons.
机译:许多听力昆虫的胸部神经节屋在第一级听觉处理。在布什蟋蟀中,普罗查加工中心中最大的本地听觉神经元是背部未配对中位数(DUM)神经元。已经提出了Dum神经元使用γ-氨基丁酸(GABA)作为发射器的抑制性。免疫组织化学揭示了孕神经节后内侧簇中的约35-50个GABA阳性躯体的群体。这簇中只有很少的小躯体仍然是未染色的。可以鉴定来自10个神经元的至少10个神经牙。细胞内染色的听觉DUM神经元在中位数阳性细胞中具有躯体,并且它们中的大多数表现出GABA-IMM酸二屈光度。某些DUM神经元的反应显示出明显的抑制迹象。昆虫毒素(PTX)在昆虫中的应用,改变了许多DUM神经元的反应。它们在时间样式调谐中变得更加越来越宽或更窄。此外,抑制突触后潜在(IPSP)可以被兴奋性突触潜力所取代。在PTX应用后,在上升的渐变潜力中丢失IPSP导致首次飙升延迟的显着降低。因此,听觉DUM神经元获得有效的抑制,是DUM神经元和其他听觉中间抑制的最佳候选者。

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