Alegre-Cortés Javier, Mattia Maurizio, Sáez María, Reig Ramón
Instituto de Neurociencias CSIC-UMH, Alicante, Spain.
National Center for Radiation Protection and Computational Physics, Istituto Superiore di Sanità, 00161 Rome, Italy.
iScience. 2025 Jul 25;28(9):113213. doi: 10.1016/j.isci.2025.113213. eCollection 2025 Sep 19.
Explaining the macroscopic activity of a neuronal population from its microscopic properties poses a great challenge, not just because of the many local agents that play a role, but due to the impact of long-range connections from other brain regions. We used a computational model to explore how local and global components of a network shape the slow wave activity (SWA). A sensitivity analysis allowed us to explore how local properties and long-range connections shaped the SWA of a population and its neighbors. We show that while manipulations in the synaptic excitatory/inhibitory balance can create local changes, cellular components that modulate the excitability or adaptation led to changes in neighboring populations too. We also show and how heterogeneities in excitability can determine the directionality of traveling Up states. We expect these results to motivate research exploring and comparing cortical circuits through the analysis of their SWA.
从神经元群体的微观特性解释其宏观活动是一项巨大的挑战,这不仅是因为有许多起作用的局部因素,还因为其他脑区的长程连接的影响。我们使用了一个计算模型来探索网络的局部和全局组件如何塑造慢波活动(SWA)。敏感性分析使我们能够探究局部特性和长程连接如何塑造群体及其相邻区域的SWA。我们表明,虽然突触兴奋性/抑制性平衡的操纵可以产生局部变化,但调节兴奋性或适应性的细胞成分也会导致相邻群体发生变化。我们还展示了兴奋性的异质性如何决定上行状态传播的方向性。我们期望这些结果能激发通过分析慢波活动来探索和比较皮质回路的研究。