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Dispersed trees were common in all four landscapes, with mean frequency ranging from 8.0 trees ha−1 in Caňas to 33.4 trees ha−1 in Matiguás.
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Fig. 4 (A) Mean and (B) peak of normalized postsynaptic response values for control and muscarine parameter sets stimulated by Poisson spike trains with mean frequencies ranging from 0.1 to 100 Hz.
Fig. 7 Fixed point normalized postsynaptic response values for the deterministic map stimulated by Poisson spike train with mean frequencies ranging from 0.1 to 100 Hz, compared with the mean of the normalized postsynaptic response values for the computed distribution.
Fig. 5 Measure of information transmission for deterministic model of synapses stimulated by Poisson spike train with mean frequencies ranging from (A) 0.1 to 100 Hz and (B) 0.1 to 1000 Hz for control and muscarine parameter sets.
Fig. 11 Mutual information between normalized postsynaptic response and preceding ISIs for the control and muscarine parameter sets stimulated by Poisson spike train with mean frequencies ranging from 0.1 to 100 Hz.
In the NM group, the mean frequencies ranged from 1.35 to 1.77 in the superficial layer and from 1.61 to 1.79 in the basal layer.
Following nine months of vocal training, significant differences were revealed in the subjects' mean frequency range and minimum vocal intensity across frequency levels.
The difference between the mean minimum and maximum frequencies defined the mean frequency range for each signal.
The mean frequency range computed in MCI subjects considered as a whole are: delta 2.9 4.9 Hz; theta 4.9 6.9 Hz; alpha1 6.9–8.9 Hz; alpha2 8.9–10.9 Hz; alpha3 10.9–12.9 Hz.
A bird vocalization that shared 100% of its mean frequency range with the mean frequency range of a Zammara signal was considered a "complete" overlap; less than 100% to near zero was categorized as "partial," and all others were categorized as "none".
We measured the mean duration, the mean frequency range, the mean central frequency (DFA2) and the first and second dominant frequency bands, as well as the percentage of time of the call in which the 3rd dominant frequency could be identified [ 95].
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