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Filming the glial dreams: real-time imaging of cannabinoid receptor trafficking in astrocytes

机译:拍摄神经胶质的梦想:星形胶质细胞中大麻素受体运输的实时成像

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摘要

How does the brain process incoming information and produce thoughts? These questions represent, to all likelihood, the most challenging matters ever faced by natural sciences, matters which may never be fully comprehended. The evolution of the nervous system that, in about billion of years, brought into existence the human brain progressed through an ever-increasing complexity of neural networks. This evolution began from the diffuse nervous system, in which primordial neurons were able to sense the environmental inputs and convey them to effector organs and to the neighbouring neurons. At the next evolutionary stage the conglomerates of neuronal cell bodies, the ganglia, appeared, thus forming the primitive centralized nervous system. The developments which ensued went through a continuous increase in complexity of neuronal conglomerates, which eventually formed the central nervous system, which attained maximal perfection in mammals. In this issue of ASN NEURO, Osborne et al. have described details of real-time imaging of cannabinoid receptor trafficking in astrocytes, a technique that will help to elucidate the role of these receptors in the ever-increasing complex neural networks.
机译:大脑如何处理传入的信息并产生想法?这些问题很可能代表了自然科学有史以来最具挑战性的问题,这些问题可能永远不会被完全理解。在大约十亿年的时间里,人脑通过不断增长的神经网络复杂性发展了神经系统。这种进化始于弥散性神经系统,在该系统中,原始神经元能够感知环境输入并将其传递给效应器官和邻近的神经元。在下一进化阶段,神经元细胞团神经节出现,从而形成原始的中央神经系统。随后的发展经历了神经元集团的复杂性不断增加,最终形成了中枢神经系统,在哺乳动物中达到了最大的完美。在本期ASN NEURO中,奥斯本等人。已描述了星形胶质细胞中大麻素受体运输的实时成像细节,该技术将有助于阐明这些受体在日益复杂的神经网络中的作用。

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