Related Experiment Video
Updated: Apr 8, 2026

3D Modeling of Dendritic Spines with Synaptic Plasticity
Published on: May 18, 2020
The influence of synaptic size on AMPA receptor activation: a Monte Carlo model
Jesus Montes1, Jose M Peña1, Javier DeFelipe2
1Departamento de Arquitectura y Tecnología de Sistemas Informáticos, Facultad de Informatica, Universidad Politecnica de Madrid, Madrid, Spain.
Abstract:
Physiological and electron microscope studies have shown that synapses are functionally and morphologically heterogeneous and that variations in size of synaptic junctions are related to characteristics such as release probability and density of postsynaptic AMPA receptors. The present article focuses on how these morphological variations impact synaptic transmission. We based our study on Monte Carlo computational simulations of simplified model synapses whose morphological features have been extracted from hundreds of actual synaptic junctions reconstructed by three-dimensional electron microscopy. We have examined the effects that parameters such as synaptic size or density of AMPA receptors have on the number of receptors that open after release of a single synaptic vesicle. Our results indicate that the maximum number of receptors that will open after the release of a single synaptic vesicle may show a ten-fold variation in the whole population of synapses. When individual synapses are considered, there is also a stochastical variability that is maximal in small synapses with low numbers of receptors. The number of postsynaptic receptors and the size of the synaptic junction are the most influential parameters, while the packing density of receptors or the concentration of extrasynaptic transporters have little or no influence on the opening of AMPA receptors.
More Related Videos
Related Concept Videos
Integration of Synaptic Events
Ligand-Gated Ion Channel Receptor: Gating Mechanism

