Computing the local field potential (LFP) from integrate-and-fire network models
收藏DataONE2020-06-30 更新2025-04-19 收录
下载链接:
https://search.dataone.org/view/sha256:7d6dddc8b162ac109665fd9d1b2f251d13ffb2a6b70cc473f405e54e5044ffb4
下载链接
链接失效反馈官方服务:
资源简介:
Leaky integrate-and-fire (LIF) network models are commonly used to study how the spiking dynamics of neural networks changes with stimuli, tasks or dynamic network states. However, neurophysiological studies in vivo often rather measure the mass activity of neuronal microcircuits with the local field potential (LFP). Given that LFPs are generated by spatially separated currents across the neuronal membrane, they cannot be computed directly from quantities defined in models of point-like LIF neurons. Here, we explore the best approximation for predicting the LFP based on standard output from point-neuron LIF networks. To search for this best âLFP proxyâ, we compared LFP predictions from candidate proxies based on LIF network output (e.g, firing rates, membrane potentials, synaptic currents) with âground-truthâ LFP obtained when the LIF network synaptic input currents were injected into an analogous three-dimensional (3D) network model of multi-compartmental neurons with realistic morphol...
创建时间:
2025-04-06



