Axonal Conduction Velocity Impacts Neuronal Network Oscillations

03/22/2019
by   Vladimir A. Ivanov, et al.
0

Increasing experimental evidence suggests that axonal action potential conduction velocity is a highly adaptive parameter in the adult central nervous system. Yet, the effects of this newfound plasticity on global brain dynamics is poorly understood. In this work, we analyzed oscillations in biologically plausible neuronal networks with different conduction velocity distributions. Changes of 1-2 (ms) in network mean signal transmission time resulted in substantial network oscillation frequency changes ranging in 0-120 (Hz). Our results suggest that changes in axonal conduction velocity may significantly affect both the frequency and synchrony of brain rhythms, which have well established connections to learning, memory, and other cognitive processes.

READ FULL TEXT
research
02/09/2021

Predictive Factors of Kinematics in Traumatic Brain Injury from Head Impacts Based on Statistical Interpretation

Brain tissue deformation resulting from head impacts is primarily caused...
research
04/19/2021

Classification of head impacts based on the spectral density of measurable kinematics

Traumatic brain injury can be caused by head impacts, but many brain inj...
research
08/18/2022

Steering Action-aware Adaptive Cruise Control for Teleoperated Driving

In this paper, a steering action-aware Adaptive Cruise Control (ACC) app...
research
08/25/2021

Physics-informed neural networks for improving cerebral hemodynamics predictions

Determining brain hemodynamics plays a critical role in the diagnosis an...
research
11/11/2021

Does the Brain Infer Invariance Transformations from Graph Symmetries?

The invariance of natural objects under perceptual changes is possibly e...
research
04/19/2021

Structured regularization based local earthquake tomography for the adaptation to velocity discontinuities

Here we propose a local earthquake tomography method that applies a stru...
research
08/07/2023

Global cognitive graph properties dynamics of hippocampal formation

In the present study we have used a set of methods and metrics to build ...

Please sign up or login with your details

Forgot password? Click here to reset