The exercise paradox: Avoiding physical inactivity stimuli requires higher response inhibition
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<strong>Dataset related to the paper on Response inhibition to physical inactivity stimuli using go/no-go tasks. </strong> This dataset includes: <strong>1) A codebook (including the name of the main variables)</strong> --> "code_book_Go_noGo_Miller.xlsx" <strong>2) Raw data of the behavioral outcomes (i.e., reaction times) of the affective go/no-go task</strong> --> "corrected.behavioral.data.csv" --> "correct_Order.csv" <strong>3) Self-reported data </strong> --> "Self_report_data.csv" <strong>3) EEG data </strong> --> "gng_data" <strong>5) R script for the data management (i.e., from the raw data to data ready to be analyzed)</strong> --> "Data_management_Self_report_go_no_go_Miller.R" for the self-reported data (return the file: "Data_SR_final.RData") --> "Data_management_behav_go_no_go_Miller.R" for the behavioral outcomes (return the file: "Data_GNG_behav.RData") --> Data ready to be analyzed "Data_GNG_final_all.RData" <strong>6) Eprime script for the affective go/no-go task ("Go_no_go_task.zip")</strong> --> Images depicting physical activity and physical inactivity stimuli were kindly Share by Kullmann et al. (2014) <strong>7) R script for the models tested</strong> <strong>--> "</strong>Models_GoNogo_Miller_VZenodo.R" for behavioral data --> "Models_EEG_GoNogo.R" for EEG data



