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Rhythmicity and waves in the cortex of single cells

机译:在单细胞的皮质中的节奏和波浪

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摘要

Emergence of dynamic patterns in the form of oscillations and waves on the cortex of single cells is a fascinating and enigmatic phenomenon. Here we outline various theoretical frameworks used to model pattern formation with the goal of reducing complex, heterogeneous patterns into key parameters that are biologically tractable. We also review progress made in recent years on the quantitative and molecular definitions of these terms, which we believe have begun to transform single-cell dynamic patterns from a purely observational and descriptive subject to more mechanistic studies. Specifically, we focus on the nature of local excitable and oscillation events, their spatial couplings leading to propagating waves and the role of active membrane. Instead of arguing for their functional importance, we prefer to consider such patterns as basic properties of dynamic systems. We discuss how knowledge of these patterns could be used to dissect the structure of cellular organization and how the network-centric view could help define cellular functions as transitions between different dynamical states. Last, we speculate on how these patterns could encode temporal and spatial information.
机译:单个细胞皮层的振荡形式的动态模式的出现是一种令人乐趣和神秘的现象。在这里,我们概述了用于模拟模式形成的各种理论框架,其目标是将复杂的异构模式降低到具有生物学上的关键参数。我们还审查了近年来对这些条款的定量和分子定义进行了进展,我们认为已经开始从纯粹的观察和描述性受到更具机制研究的情况下改变单细胞动态模式。具体而言,我们专注于当地易激的振荡事件的性质,它们的空间耦合导致传播波浪和活性膜的作用。我们更愿意考虑这种模式作为动态系统的基本属性,而不是争论它们的功能重要性。我们讨论如何使用这些模式的知识来解析蜂窝组织的结构以及网络以网络为中心的视图如何帮助将蜂窝功能定义为不同动态状态之间的转换。最后,我们推测这些模式如何编码时间和空间信息。

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