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A recording site was classified as responsive if and only if the latter test was significant for at least one series of bin during a given stimulus.
A recording site was considered significant if the average (across patterns and time) firing rate in the dictionary paradigm was larger than the mean plus two standard deviations of the firing rate between −100 ms and 0 ms before the stimulus presentation.
For the sake of comparison, we also examined the same measure of gamma power modulations for a recording site located in the left primary auditory cortex (Heschl's gyrus) (electrode u'4, Talairach coordinates : −43,−27, 11 mm, see Figure 3), an area known to display activations related to lower level processing of auditory stimuli.
Furthermore, the reductions in CV† reflect both the Scn5a+/− genotype, and the choice of RVOT as opposed to RV as a recording site.
We next investigated whether the characteristic frequency (CF) of a recording site influenced the likelihood of the LFP signal discriminating F0 or behavioral choice.
A recording site was considered to have significant gamma oscillations if at least one bin in the frequency range between 30 and 90 Hz showed z-score value greater than 1.96 (95% threshold) for the preferred condition (stimulus condition where component 1 yielded the highest firing rate).
Similar(53)
The ISI distribution for a cortical recording site in response to a range of low repetition rates is illustrated in Figure 1C.
In Figure 10 A (same recording site as in Fig. 1), an example is shown for attention being directed to the component in the front (component 1).
Figure 6 A illustrates the responses evoked at an example recording site by curves with various levels of luminance contrast.
Since 10.8% is smaller than 15%, an LFP recording site was classified as chromatic if the LFP responded more strongly to BY gratings than 15% LD gratings.
Importantly, spot confocal imaging does not alter action potential propagation past the imaging site to a distal extracellular recording site within an NMJ and spot excitation at 643 nm has no effect on baseline neurotransmission (Ford and Davis, 2014).
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