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A Brain Atlas of the Long Arm Octopus Octopus minor

机译:长臂章鱼脑图集章鱼小

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摘要

Cephalopods have the most advanced nervous systems and intelligent behavior among all invertebrates. Their brains provide comparative insights for understanding the molecular and functional origins of the human brain. Although brain maps that contain information on the organization of each subregion are necessary for a study on the brain, no whole brain atlas for adult cephalopods has been constructed to date. Here, we obtained sagittal and coronal sections covering the entire brain of adult Octopus minor (Sasaki), which belongs to the genus with the most species in the class Cephalopoda and is commercially available in East Asia throughout the year. Sections were stained using Hematoxylin and Eosin (H&E) to visualize the cellular nuclei and subregions. H&E images of the serial sections were obtained at 30~70-µm intervals for the sagittal plain and at 40~80-µm intervals for the coronal plain. Setting the midline point of the posterior end as the fiducial point, we also established the distance coordinates of each image. We found that the brain had the typical brain structure of the Octopodiformes. A number of subregions were discriminated by a Hematoxylin-positive layer, the thickness and neuronal distribution pattern of which varied markedly depending upon the region. We identified more than 70 sub-regions based on delineations of representative H&E images. This is the first brain atlas, not only for an Octopodiformes species but also among adult cephalopods, and we anticipate that this atlas will provide a valuable resource for comparative neuroscience research.
机译:在所有无脊椎动物中,头足类动物具有最先进的神经系统和聪明的行为。他们的大脑为理解人类大脑的分子和功能起源提供了比较见识。尽管包含有关每个子区域组织信息的大脑图对于进行大脑研究是必要的,但迄今为止,尚未建立成年头足类动物的全脑图集。在这里,我们获得了覆盖成年章鱼(Sasaki)的整个大脑的矢状和冠状切片,该章鱼属于头足类中种类最多的属,并且全年在东亚有售。使用苏木精和曙红(H&E)对切片进行染色,以可视化细胞核和子区域。矢状平原的连续切片H&E图像间隔为30〜70μm,冠状平原的间隔为40〜80μm。将后端的中线点设置为基准点,我们还建立了每个图像的距离坐标。我们发现大脑具有八爪形动物的典型大脑结构。苏木素阳性层可区分许多子区域,其厚度和神经元分布模式取决于该区域。根据代表性的H&E图像,我们确定了70多个子区域。这是第一个大脑图谱,不仅适用于八足动物,而且适用于成年头足类动物。我们预计,该图谱将为比较神经科学研究提供宝贵的资源。

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