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Typical EPR parameters were as follows: 3510 G center field; 10 G sweep width; 9.852 GHz microwave frequency; 20 mW power; receiver gain varied as needed; modulation frequency of 100 kHz; modulation amplitude of 0.10 G; conversion time of 40.96 ms; and time constant of 20.48 ms with 20 X-scans for each 1024 point spectrum.
For our actual experimental data, we found that using a time window of at least 750 ms and time bins with widths between 250 and 500 ms yields similar optimal performances for the test data sets prediction.
The parameters of the sequence used were: TR=3.3 ms, echo time (TE =1.4 ms, flip angle =8°, k space matrix 100 phase encoding steps × 128 points in the readout direction, inversion time (TI =655 ms, and time between successive inversion pulses (TR0)=3000 ms.
The mechanism accounting for the combined AMPA and NMDA currents had a short-term depression, with a release probability (U) of 0.6, time constant of recovery from depression (D) of 800 ms and time constant of recovery from facilitation (F) of 0 ms (Tsodyks and Markram 1997; Fuhrmann et al. 2002).
A high-resolution saturation-recovery fast low-angle shot sequence was used (field of view read 320 to 400 mm, field of view phase 75%to100%0% of the field of view read, acquired voxel size 1.3 to 1.6 × 1.3 to 1.6, slice thickness 10 mm, flip angle 10°, acquisition duration 295 ms, echo time 1.11 ms, and time from saturation pulse to beginning of imaging 63 ms).
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Z-slices were imaged with an exposure time of approximately 150 ms and time-lapse stacks with 3 5 slices spanning a total depth of 30 50 μm were captured at approximately 1 Hz over a total time of 4 min using an EMCCD camera (Photometrics, Tucson, AZ, United States) and 3i slidebook 5.0 software.
As a measure of dynamic balance, subjects will also walk backwards 6-m and time taken will be assessed using electronic timing gates [ 25].
at a given frequency m and time index n.
Dimension m and time delay t have to be chosen properly prior to analysis.
Finally, the pair (m,n) corresponds to a frequency-time (FT) point with subcarrier index m and time index n.
The latter application required high spatial and temporal resolutions, with computational cells of 0.2 × 0.2 m and time steps as short as 0.6 s to avoid computational instabilities.
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