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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The Unexplored Territory of Neural Models: Potential Guides for Exploring the Function of Metabotropic Neuromodulation
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The Unexplored Territory of Neural Models: Potential Guides for Exploring the Function of Metabotropic Neuromodulation

机译:神经模型的未开发领土:探索代谢性神经调节功能的潜在指南

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The space of possible neural models is enormous and under-explored. Single cell computational neuroscience models account for a range of dynamical properties of membrane potential, but typically do not address network function. In contrast, most models focused on network function address the dimensions of excitatory weight matrices and firing thresholds without addressing the complexities of metabotropic receptor effects on intrinsic properties. There are many under-explored dimensions of neural parameter space, and the field needs a framework for representing what has been explored and what has not. Possible frameworks include maps of parameter spaces, or efforts to categorize the fundamental elements and molecules of neural circuit function. Here we review dimensions that are under-explored in network models that include the metabotropic modulation of synaptic plasticity and presynaptic inhibition, spike frequency adaptation due to calcium-dependent potassium currents, and afterdepolarization due to calcium-sensitive non-specific cation currents and hyperpolarization activated cation currents. Neuroscience research should more effectively explore possible functional models incorporating under-explored dimensions of neural function. (c) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:可能的神经模型的空间是巨大的,而且还没有得到充分的探索。单细胞计算神经科学模型解释了膜电位的一系列动力学特性,但通常不涉及网络功能。相比之下,大多数侧重于网络功能的模型解决了兴奋性体重矩阵和放电阈值的维度,而没有解决代谢受体对内在特性影响的复杂性。神经参数空间有许多未被探索的维度,该领域需要一个框架来表示哪些已经探索,哪些尚未探索。可能的框架包括参数空间的映射,或对神经回路功能的基本元素和分子进行分类的努力。在这里,我们回顾了网络模型中未充分探索的维度,包括突触可塑性和突触前抑制的代谢调节,钙依赖性钾电流引起的峰频适应,以及钙敏感非特异性阳离子电流和超极化激活阳离子电流引起的后去极化。神经科学研究应该更有效地探索可能的功能模型,包括未充分探索的神经功能维度。(c) 2020年伊布罗。爱思唯尔有限公司出版。版权所有。

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