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首页> 外文期刊>Invertebrate neuroscience >Neural pathways in the pallial nerve and arm nerve cord revealed by neurobiotin backfilling in the cephalopod mollusk Octopus vulgaris
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Neural pathways in the pallial nerve and arm nerve cord revealed by neurobiotin backfilling in the cephalopod mollusk Octopus vulgaris

机译:痛风的神经途径和神经绳的神经脊髓,透露在Cephalopod Mollusk章鱼章鱼八达通症的神经蛋白回填

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Here, we report the findings after application of neurobiotin tracing to pallial and stellar nerves in the mantle of the cephalopod mollusk Octopus vulgaris and to the axial nerve cord in its arm. Neurobiotin backfilling is a known technique in other molluscs, but it is applied to octopus for the first time to be best of our knowledge. Different neural tracing techniques have been carried out in cephalopods to study the intricate neural connectivity of their nervous system, but mapping the nervous connections in this taxon is still incomplete, mainly due to the absence of a reliable tracing method allowing whole-mount imaging. In our experiments, neurobiotin backfilling allowed: (1) imaging of large/thick samples (larger than 2mm) through optical clearing; (2) additional application of immunohistochemistry on the backfilled tissues, allowing identification of neural structures by coupling of a specific antibody. This work opens a series of future studies aimed to the identification of the neural diagram and connectome of octopus nervous system.
机译:在这里,我们在武器中施用神经蛋白追踪到Cephalopod Mollusk章鱼章鱼壳体的痛苦和恒星神经之后报告了调查结果。 Neurobiotin回填是其他软体动物中的已知技术,但它是第一次应用于章鱼,使我们的知识最好。在Cephalopods中进行了不同的神经追踪技术,以研究其神经系统的复杂神经连接,但是绘制这种分类群中的神经连接仍然不完整,主要是由于没有可靠的追踪方法,允许全挂成像。在我们的实验中,Neurobiotin回填允许:(1)通过光学清洁成像大/厚样品(大于2mm); (2)免疫组织化学在回填组织中的额外施加,允许通过偶联特异性抗体的鉴定神经结构。这项工作开辟了一系列未来的研究,旨在识别章鱼神经系统的神经图和结合。

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