Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.
Neuroscience Institute, Lithuanian University of Health Sciences, Kaunas, Lithuania.
Adv Exp Med Biol. 2022;1359:87-103. doi: 10.1007/978-3-030-89439-9_4.
Recent evidence suggests that glial cells take an active role in a number of brain functions that were previously attributed solely to neurons. For example, astrocytes, one type of glial cells, have been shown to promote coordinated activation of neuronal networks, modulate sensory-evoked neuronal network activity, and influence brain state transitions during development. This reinforces the idea that astrocytes not only provide the "housekeeping" for the neurons, but that they also play a vital role in supporting and expanding the functions of brain circuits and networks. Despite this accumulated knowledge, the field of computational neuroscience has mostly focused on modeling neuronal functions, ignoring the glial cells and the interactions they have with the neurons. In this chapter, we introduce the biology of neuron-glia interactions, summarize the existing computational models and tools, and emphasize the glial properties that may be important in modeling brain functions in the future.
最近的证据表明,神经胶质细胞在许多以前被认为仅由神经元负责的大脑功能中扮演着积极的角色。例如,星形胶质细胞,一种神经胶质细胞,已被证明能促进神经元网络的协调激活、调节感觉诱发的神经元网络活动,并影响发育过程中的大脑状态转变。这进一步证实了星形胶质细胞不仅为神经元提供“日常维护”,而且在支持和扩展大脑回路和网络的功能方面也起着至关重要的作用。尽管有了这些积累的知识,但计算神经科学领域主要侧重于对神经元功能进行建模,而忽略了神经胶质细胞及其与神经元的相互作用。在本章中,我们介绍神经元-神经胶质细胞相互作用的生物学,总结现有的计算模型和工具,并强调在未来对大脑功能建模可能很重要的神经胶质特性。