Improved signaling as a result of randomness in synaptic vesicle release.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 26627245.
- Also identified by DOI 10.1073/pnas.1513160112 and PMC identifier 4672768.
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Abstract
The probabilistic nature of neurotransmitter release in synapses is believed to be one of the most significant sources of noise in the central nervous system. We show how p0, the probability of release per docked vesicle when an action potential arrives, affects the dynamics of the rate of vesicle release in response to changes in the rate of arrival of action potentials. Furthermore, we examine the theoretical capability of a synapse in the estimation of desired signals using information from the stochastic vesicle release events under the framework of optimal linear filter theory. We find that a small p0, such as 0.1, reduces the error in the reconstruction of the input, or in the reconstruction of the time derivative of the input, from the time series of vesicle release events. Our results imply that the probabilistic nature of synaptic vesicle release plays a direct functional role in synaptic transmission.
Medical subject headings
- Models, Neurological
- Synaptic Transmission
- Synaptic Vesicles