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Impact of the activation rate of the hyperpolarization-activated current $I_{\rm h}$ on the neuronal membrane time constant and synaptic potential duration
- Source :
- Repositório Institucional da USP (Biblioteca Digital da Produção Intelectual), Universidade de São Paulo (USP), instacron:USP
- Publication Year :
- 2021
- Publisher :
- arXiv, 2021.
-
Abstract
- The temporal dynamics of membrane voltage changes in neurons is controlled by ionic currents. These currents are characterized by two main properties: conductance and kinetics. The hyperpolarization-activated current ($I_{\rm h}$) strongly modulates subthreshold potential changes by shortening the excitatory postsynaptic potentials and decreasing their temporal summation. Whereas the shortening of the synaptic potentials caused by the $I_{\rm h}$ conductance is well understood, the role of the $I_{\rm h}$ kinetics remains unclear. Here, we use a model of the $I_{\rm h}$ current model with either fast or slow kinetics to determine its influence on the membrane time constant ($\tau_m$) of a CA1 pyramidal cell model. Our simulation results show that the $I_{\rm h}$ with fast kinetics decreases $\tau_m$ and attenuates and shortens the excitatory postsynaptic potentials more than the slow $I_{\rm h}$. We conclude that the $I_{\rm h}$ activation kinetics is able to modulate $\tau_m$ and the temporal properties of excitatory postsynaptic potentials (EPSPs) in CA1 pyramidal cells. In order to elucidate the mechanisms by which $I_{\rm h}$ kinetics controls $\tau_m$, we propose a new concept called "time scaling factor". Our main finding is that the $I_{\rm h}$ kinetics influences $\tau_m$ by modulating the contribution of the $I_{\rm h}$ derivative conductance to $\tau_m$.<br />Comment: 15 pages, 7 figures
- Subjects :
- 0301 basic medicine
Quantitative Biology - Subcellular Processes
Kinetics
General Physics and Astronomy
Quantitative Biology - Quantitative Methods
03 medical and health sciences
0302 clinical medicine
General Materials Science
Physical and Theoretical Chemistry
Subcellular Processes (q-bio.SC)
Quantitative Methods (q-bio.QM)
Synaptic potential
Physics
Membrane potential
CINÉTICA
Time constant
Conductance
Order (ring theory)
Hyperpolarization (biology)
030104 developmental biology
Quantitative Biology - Neurons and Cognition
FOS: Biological sciences
Excitatory postsynaptic potential
Neurons and Cognition (q-bio.NC)
Atomic physics
030217 neurology & neurosurgery
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Repositório Institucional da USP (Biblioteca Digital da Produção Intelectual), Universidade de São Paulo (USP), instacron:USP
- Accession number :
- edsair.doi.dedup.....614a3ed4bf2f23569913ac131afff41c
- Full Text :
- https://doi.org/10.48550/arxiv.2106.03902