<p>Upper Figure: 0–5000 min, Lower Figure: 0–20160 min (14 days) The colored lines show the time-course fluctuations of each of the components. Red: Dynamic Synapse; Green: Stable Synapse; Blue: Total Synapse (Dynamic+Stable). The Dynamic/Stable Synapse levels change according to the Dynamic/Stable F-actin levels. The time-course fluctuations of the synapses are similar to those of the Actin dynamics module. All the values in the graphs are normalized with the initial value of each variable, and indicate the relative values compared with the initial condition.</p
<p><b>(A)</b> Temporal evolution of the average excitatory (red) and inhibitory (blue) firing rate. ...
<p>(A) Time series of the mean firing rate of the neural population for deterministic depressing syn...
In a recently proposed, stochastic model of spike-timing-dependent plasticity, we derived general ex...
<p>Upper Figure: 0–5000 min, Lower Figure: 0–20160 min (14 days) The colored lines show time-course ...
<p>Upper Figure: 0–5000 min, Lower Figure: 0–20160 min (14 days) The colored lines show the time-cou...
<p>Each graph shows the response of synaptic maintenance to a fluctuation in a labeled parameter. Th...
<p>Each graph shows the response of synaptic maintenance to a fluctuation in a set of labeled parame...
<p>Synaptic change dynamics during network growth epochs, before stabilization. Change is over entir...
<p>The horizontal axis shows the intervals of each stimulation. The vertical axis shows the ratio of...
<p>(<b>A</b>) Temporal evolution of the average firing rate in the excitatory population for differe...
<p>The axis denotes time steps, while the <i>y</i> axis shows the strength of the synaptic weights....
<p>(a) Black circles: minimum observed ISI for each active cell in network simulations of different ...
<p>A: fraction of existing excitatory-to-excitatory connections recorded over 5 million time steps. ...
<p>Each dot represents a synaptic weight on a linear scale such that white and black correspond to 0...
<p>Hebbian- like LTP plasticity; synaptic change plotted against Δ<i>s<sub>t</sub></i> (defined as t...
<p><b>(A)</b> Temporal evolution of the average excitatory (red) and inhibitory (blue) firing rate. ...
<p>(A) Time series of the mean firing rate of the neural population for deterministic depressing syn...
In a recently proposed, stochastic model of spike-timing-dependent plasticity, we derived general ex...
<p>Upper Figure: 0–5000 min, Lower Figure: 0–20160 min (14 days) The colored lines show time-course ...
<p>Upper Figure: 0–5000 min, Lower Figure: 0–20160 min (14 days) The colored lines show the time-cou...
<p>Each graph shows the response of synaptic maintenance to a fluctuation in a labeled parameter. Th...
<p>Each graph shows the response of synaptic maintenance to a fluctuation in a set of labeled parame...
<p>Synaptic change dynamics during network growth epochs, before stabilization. Change is over entir...
<p>The horizontal axis shows the intervals of each stimulation. The vertical axis shows the ratio of...
<p>(<b>A</b>) Temporal evolution of the average firing rate in the excitatory population for differe...
<p>The axis denotes time steps, while the <i>y</i> axis shows the strength of the synaptic weights....
<p>(a) Black circles: minimum observed ISI for each active cell in network simulations of different ...
<p>A: fraction of existing excitatory-to-excitatory connections recorded over 5 million time steps. ...
<p>Each dot represents a synaptic weight on a linear scale such that white and black correspond to 0...
<p>Hebbian- like LTP plasticity; synaptic change plotted against Δ<i>s<sub>t</sub></i> (defined as t...
<p><b>(A)</b> Temporal evolution of the average excitatory (red) and inhibitory (blue) firing rate. ...
<p>(A) Time series of the mean firing rate of the neural population for deterministic depressing syn...
In a recently proposed, stochastic model of spike-timing-dependent plasticity, we derived general ex...