思想所在:神经元-胶质“弥漫性神经网络”的生理学

Alexei Verkhratsky , Vladimir Parpura , José J. Rodríguez
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引用次数: 81

摘要

构建人脑的极其复杂的细胞网络产生思想的机制构成了自然科学中最具挑战性的问题。我们对大脑功能的理解很大程度上是由神经元学说塑造的,这种学说假设神经元网络是认知的唯一基础。然而,这些神经网络嵌入到由神经胶质形成的更大、可能更复杂的网络中。后者虽然是电沉默的,但采用许多不同的细胞间信号传导机制。星形胶质细胞似乎可以控制突触网络,在这种能力下,它们可能代表了大脑计算能力的一个组成部分,而不仅仅是大脑的“结缔组织”。然而,神经胶质细胞是否参与认知和信息处理的基本问题仍未解决。事实上,区分人脑的神经胶质细胞数量的显著增加可能仅仅是神经网络高度特化的结果,神经网络将所有生存和维持的问题都委托给了神经胶质细胞。与此同时,内部连接的神经胶质网络提供的模拟处理的潜在能力可能代表了参与认知的另一种机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Where the thoughts dwell: The physiology of neuronal–glial “diffuse neural net”

The mechanisms underlying the production of thoughts by exceedingly complex cellular networks that construct the human brain constitute the most challenging problem of natural sciences. Our understanding of the brain function is very much shaped by the neuronal doctrine that assumes that neuronal networks represent the only substrate for cognition. These neuronal networks however are embedded into much larger and probably more complex network formed by neuroglia. The latter, although being electrically silent, employ many different mechanisms for intercellular signalling. It appears that astrocytes can control synaptic networks and in such a capacity they may represent an integral component of the computational power of the brain rather than being just brain “connective tissue”. The fundamental question of whether neuroglia is involved in cognition and information processing remains, however, open. Indeed, a remarkable increase in the number of glial cells that distinguishes the human brain can be simply a result of exceedingly high specialisation of the neuronal networks, which delegated all matters of survival and maintenance to the neuroglia. At the same time potential power of analogue processing offered by internally connected glial networks may represent the alternative mechanism involved in cognition.

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Brain Research Reviews
Brain Research Reviews 医学-神经科学
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