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As the frequency of a firing neuron cannot be infinite, the maximum firing rate is limited, and thus, the membrane potential is normalized.
established by inhibitory interneurons on principal neurons 0.25 C (nu_{max}) Maximum firing rate of the neural populations (max. of sigmoid fct).
The constant (nu_{max}) denotes the maximum firing rate of the neural population, (v_{0}in mathbb {R}) is the value for which 50% of the maximum firing rate is attained and (r>0) determines the slope of the sigmoid function at (v_{0}).
5 s−1 (v_{0}) Value for which 50% of the maximum firing rate is attained 6 mV r Slope of the sigmoid function at (v_{0}) 0}56 mV−1.
Next, we address this question for the specific activation function [7] f_{i}(x)= textstylebegin{cases} 0, & x< 0, x, & 0leq xleq f_{max}, f_{max}, & x>f_{max}, end{cases} (52) where (f_{max}) denotes the maximum firing rate.
with gain γ and maximum firing rate F 0. (Any threshold can be absorbed into the external inputs I k.) Equation (1) preserves the normalization condition ∑ n 1 ≥ 0 ⋯ ∑ n M ≥ 0 P ( n, t ) = 1 for all t ≥ 0. The master equation given by equations (1) and (2) is a phenomenological representation of stochastic neurodynamics [20, 23].
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As expected from the timing of temporally compressed firings across place cells, the maximum firing rates of place cells during replays (∼80 Hz) were about 10 times faster than typical maximum firing rates during running (∼8 Hz).
As expected from the timing of temporally compressed firings across place cells, the maximum firing rates of place cells during replays (∼80Hz) were about 10 times faster than typical maximum firing rates during running (∼8Hz)." In addition, I have performed an additional analysis to estimate the temporal compression rate of place cell firing in the replays.
Analysis of the latencies of the median value of the maximum firing rates showed that there were significant differences for each comparison (Figure 5B, middle panel; P<0.05).
In Figure 3D, we estimate changes in maximum firing rates (nonnormalized) when the task switched from observation to execution.
(G ) The population of half maximum firing rates increased on deactivation of the contralateral IC. (H ) Changes in half maximum firing rates did not correlate with changes in threshold, indicating that the dominant effect of commissural input on firing rate was at supra-threshold levels.
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