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Using 18FDG dynamic data, slopes of time-activity curves for the first 2, 5 and 30 minutes were calculated.
Furthermore, total, weekday, weekend, school, after school, and evening sedentary bouts lasting 10, 20, and 30 minutes were calculated.
FWT and UF through the small pores (SPUF) at 60 minutes were calculated as we previously described [ 7].
MET minutes were calculated by multiplying the number of minutes of light activity by 2, moderate activity by 4.5, and vigorous activity by 7.5.
Daily time for moderate and vigorous activity in minutes were calculated and then log-transformed to correct for the skewness of the distributions.
Total minutes were calculated by adding minutes in the last week spent walking (continuously for at least 10 minutes), minutes doing moderate physical activity, plus twice the minutes doing vigorous physical activity.
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Next, mean squared displacement (MSD) of the nuclear accumulations during 30 minutes was calculated.
The mean number of spontaneous Ca2+ events per astrocytes (active and inactive) in thirty minutes was calculated to be 1.5±2.3 for L1 and 0.4±1.1 for L2/3 and the difference was significant (p<0.001, t-test).
Release efficiency after 300 minutes was calculated for all 25 formulations (Table 1).
The work rate increment necessary to reach the estimated VO2peak in 10 minutes is calculated.
For one protein, a large difference of 105 minutes was calculated.
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