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首页> 外文期刊>The Journal of Comparative Neurology >Three‐dimensional atlas of thoracic ganglia in the praying mantis, Tenodera aridifolia Tenodera aridifolia Tenodera aridifolia
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Three‐dimensional atlas of thoracic ganglia in the praying mantis, Tenodera aridifolia Tenodera aridifolia Tenodera aridifolia

机译:Tenodera Aridifolia Tenodera Ariidifolia Tenodera roidifolia王螳螂胸上的胸腔神经节的三维图集

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摘要

Abstract The praying mantis is a good model for the study of motor control, especially for investigating the transformation from sensory signals into motor commands. In insects, thoracic ganglia (TG) play an important role in motor control. To understand the functional organization of TG, an atlas is useful. However, except for the fruitfly, no three‐dimensional atlas of TG has not been reported for insects. In this study, we generated a three‐dimensional atlas of prothoracic, mesothoracic, and metathoracic ganglia in the praying mantis ( Tenodera aridifolia ). First, we observed serial sections of the prothoracic ganglion stained with hematoxylin and eosin to identify longitudinal tracts and transverse commissures. We then visualized neuropil areas by immunostaining whole‐mount TG with an anti‐synapsin antibody. Before labeling each neuropil area, standardization using the iterative shape averaging method was applied to images to make neuropil contours distinct. Neuropil areas in TG were defined based on their shape and relative position to tracts and commissures. Finally, a three‐dimensional atlas was reconstructed from standardized images of the TG. The standard TG are available at the Comparative Neuroscience Platform website ( cns.neuroinf.jp /modules/xoonips/detail.php?item_id=11946) and can be used as a common reference map to combine the anatomical data obtained from different individuals.
机译:摘要祈祷螳螂是研究电机控制的良好模型,尤其是为了研究从感官信号转换到电机命令的转变。在昆虫中,胸部神经节(TG)在电机控制中发挥着重要作用。要了解TG的功能组织,地图集是有用的。然而,除了果蝇外,尚未向昆虫报告TG的三维图集。在这项研究中,我们在祈祷的螳螂(Tenodera Aridifolia)中产生了一种三维地图集,思科,思科神经节的孕激素和婚姻神经节。首先,我们观察了用苏木精和曙红染色的孕酮的序列部分,以鉴定纵向尸体和横向外壳。然后,我们通过用抗Synapsin抗体免疫沉淀的全部绞合Tg来了解神经潜岩区域。在标记每个Neuropil区域之前,应用使用迭代形状平均方法的标准化应用于图像以使神经疏松轮廓不同。基于它们的形状和相对位置到散布和公共区域来定义TG中的神经覆盖区域。最后,从TG的标准化图像重建了三维图集。标准TG可在比较神经科学平台网站(CNS.NEUROINF.JP /Modules/Xoonips/Detail.Php?item_ID=11946)中获得,可以用作共同的参考图,以将从不同的人获得的解剖数据组合。

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