Monte Carlo simulations of transmitter diffusion and its interactions with postsynaptic receptors have been used to study properties of quantal responses at central synapses. Fast synaptic responses characteristic of those recorded at glycinergic junctions on the teleost Mauthner cell (time to peak approximately 0.3–0.4 ms and decay time constant approximately 3–6 ms) served as the initial reference, and smaller contacts with fewer postsynaptic receptors were also modeled. Consistent with experimental findings, diffusion, simulated using a random walk algorithm and assuming a diffusion coefficient of 0.5–1.0 x 10(-5) cm2 s(-1), was sufficiently fast to account for transmitter removal from the synaptic cleft. Transmitter-receptor interaction...
AbstractBuffered diffusion occurs when ligands enter or leave a restricted space, such as a chemical...
A stochastic model of synaptic transmission has been designed on the basis of electro-phy...
In synaptic molecular communication (MC), the activation of postsynaptic receptors by neurotransmitt...
Monte Carlo simulations of transmitter diffusion and its interactions with postsynaptic receptors ha...
AbstractSynaptic transmission starts after the presynaptic neuron has released diffusing neurotransm...
Variation in the amplitude of miniature postsynaptic currents (mPSCs) generated by individual quanta...
A three-dimensional model for release and diffusion of glutamate in the synaptic cleft was developed...
AbstractWe have developed a biophysically realistic model of receptor activation at an idealized cen...
© 2015 Montes et al. Physiological and electron microscope studies have shown that synapses are func...
Binding kinetics of receptor arrays can differ dramatically from that of the isolated receptor. We s...
<div><p>Physiological and electron microscope studies have shown that synapses are functionally and ...
AbstractSynaptic transmission is characterized by a remarkable trial-to-trial variability in the pos...
AbstractThe postsynaptic density (PSD) is a cytoskeletal specialization within the postsynaptic memb...
The postsynaptic density (PSD) is a cytoskeletal specialization within the postsynaptic membrane of ...
Chemical synaptic transmission is a fundamental component of interneuronal communications in the cen...
AbstractBuffered diffusion occurs when ligands enter or leave a restricted space, such as a chemical...
A stochastic model of synaptic transmission has been designed on the basis of electro-phy...
In synaptic molecular communication (MC), the activation of postsynaptic receptors by neurotransmitt...
Monte Carlo simulations of transmitter diffusion and its interactions with postsynaptic receptors ha...
AbstractSynaptic transmission starts after the presynaptic neuron has released diffusing neurotransm...
Variation in the amplitude of miniature postsynaptic currents (mPSCs) generated by individual quanta...
A three-dimensional model for release and diffusion of glutamate in the synaptic cleft was developed...
AbstractWe have developed a biophysically realistic model of receptor activation at an idealized cen...
© 2015 Montes et al. Physiological and electron microscope studies have shown that synapses are func...
Binding kinetics of receptor arrays can differ dramatically from that of the isolated receptor. We s...
<div><p>Physiological and electron microscope studies have shown that synapses are functionally and ...
AbstractSynaptic transmission is characterized by a remarkable trial-to-trial variability in the pos...
AbstractThe postsynaptic density (PSD) is a cytoskeletal specialization within the postsynaptic memb...
The postsynaptic density (PSD) is a cytoskeletal specialization within the postsynaptic membrane of ...
Chemical synaptic transmission is a fundamental component of interneuronal communications in the cen...
AbstractBuffered diffusion occurs when ligands enter or leave a restricted space, such as a chemical...
A stochastic model of synaptic transmission has been designed on the basis of electro-phy...
In synaptic molecular communication (MC), the activation of postsynaptic receptors by neurotransmitt...