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The post hoc test of the main time effect showed that sBP was elevated 15 min after intake (P = 0.022).
Regarding the executive functions variables, a main time effect in the intervention period was observed for all variables (Table 2).
Regarding the functional mobility variables, a main time effect was observed for all, while no time by training interaction was found.
*p < =.05; **p < =.01; ***p < =.001 Results for the medical knowledge scale showed a main time effect (p =.01) with significant increase of knowledge from T1 to T2 (Table 2).
A main time effect was observed for two POMS subscales (fatigue/inertia, P< 0·001 and vigour/activity, P< 0·01) and for the Bond and Lader alertness subscale (P< 0·01), but not for the Karolinska sleepiness scale.
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Regarding physical fitness, main time effects were observed for knee flexor and extensor torques, while a time by training interaction emerged for knee flexor torque only (Table 3).
Graphical analysis of the data suggested, that this heterogeneity and baseline differences might have led to significance of some main time effects and non-significance of interaction effects in the analyses.
Besides the pairwise comparisons a two-way analysis of variance was performed to determine treatment main effects, time main effects, and treatment by time interactions.
Presented results from GEE analysis focused on main effects (time trend) and interaction terms with time to highlight within-subject effects between groups.
Results showed no significant main effects [main effect of conditioning, F 1, 9) = 0.83, P = 0.21; main effect of time course within the session, F 1, 9) = 1.52, P = 0.25].
No significant group by time effects were found, but main effects of time were observed within each group.
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