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蜜蜂大脑中的振动处理中间神经元。

Vibration-processing interneurons in the honeybee brain.

机构信息

Division of Biology, Department of Earth System Science, Fukuoka University Fukuoka, Japan.

出版信息

Front Syst Neurosci. 2010 Jan 4;3:19. doi: 10.3389/neuro.06.019.2009. eCollection 2010.

Abstract

The afferents of the Johnston's organ (JO) in the honeybee brain send their axons to three distinct areas, the dorsal lobe, the dorsal subesophageal ganglion (DL-dSEG), and the posterior protocerebral lobe (PPL), suggesting that vibratory signals detected by the JO are processed differentially in these primary sensory centers. The morphological and physiological characteristics of interneurons arborizing in these areas were studied by intracellular recording and staining. DL-Int-1 and DL-Int-2 have dense arborizations in the DL-dSEG and respond to vibratory stimulation applied to the JO in either tonic excitatory, on-off-phasic excitatory, or tonic inhibitory patterns. PPL-D-1 has dense arborizations in the PPL, sends axons into the ventral nerve cord (VNC), and responds to vibratory stimulation and olfactory stimulation simultaneously applied to the antennae in long-lasting excitatory pattern. These results show that there are at least two parallel pathways for vibration processing through the DL-dSEG and the PPL. In this study, Honeybee Standard Brain was used as the common reference, and the morphology of two types of interneurons (DL-Int-1 and DL-Int-2) and JO afferents was merged into the standard brain based on the boundary of several neuropiles, greatly supporting the understanding of the spatial relationship between these identified neurons and JO afferents. The visualization of the region where the JO afferents are closely appositioned to these DL interneurons demonstrated the difference in putative synaptic regions between the JO afferents and these DL interneurons (DL-Int-1 and DL-Int-2) in the DL. The neural circuits related to the vibration-processing interneurons are discussed.

摘要

约翰斯顿氏器(JO)传入纤维在蜜蜂脑中投射到三个不同的区域:背叶、背食管下神经节(DL-dSEG)和后原脑叶(PPL),这表明由 JO 检测到的振动信号在这些初级感觉中枢中被不同地处理。通过细胞内记录和染色研究了在这些区域内分支的中间神经元的形态和生理特征。DL-Int-1 和 DL-Int-2 在 DL-dSEG 中具有密集的分支,对施加在 JO 上的振动刺激产生强直兴奋性、开-关相兴奋性或强直抑制性反应。PPL-D-1 在 PPL 中有密集的分支,轴突进入腹神经索(VNC),并对同时施加在触角上的振动刺激和嗅觉刺激产生持久的兴奋性反应。这些结果表明,至少有两条平行的通路通过 DL-dSEG 和 PPL 进行振动处理。在本研究中,使用蜜蜂标准脑作为共同参考,根据几个神经叶的边界,将两种类型的中间神经元(DL-Int-1 和 DL-Int-2)和 JO 传入纤维的形态合并到标准脑中,极大地支持了对这些已识别神经元和 JO 传入纤维之间空间关系的理解。JO 传入纤维与这些 DL 中间神经元紧密接近的区域的可视化显示了在 DL 中,JO 传入纤维和这些 DL 中间神经元(DL-Int-1 和 DL-Int-2)之间假定的突触区域的差异。讨论了与振动处理中间神经元相关的神经回路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e493/2805430/025646f790bc/fnsys-03-019-g001.jpg

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