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Clinical Trials/NCT03352973
NCT03352973CompletedNot Applicable

Regulation of Craving in Internet Gamers: Neural Mechanisms and tDCS Intervention

Beijing Normal University1 site in 1 country20 target enrollmentStarted: July 20, 2018Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Sponsor
Enrollment
20
Locations
1
Primary Endpoint
Craving in the regulation of craving (ROC) task after the initiation of active and sham tDCS

Study Overview

Brief Summary

This project aims to investigate (1) the behavioral and neural mechanisms of regulation of craving in Internet gamers; (2) effects of tDCS over the dorsal lateral prefrontal cortex (dlPFC) on craving and regulation of craving and aversive emotions in this population. (3) effects of tDCS over dlPFC on attentional bias towards gaming related cues.This project will be conducted in Beijing, China, based on a large sample of Internet gamers.

Detailed Description

As with the experiment about tDCS effects on regulation of craving and aversive emotions, the experiment aims to test whether tDCS over dlPFC will enhance cognitive regulation of craving and aversive emotions. It is a within-subject, sham-controlled, double-blind design. Each participant receive both active and sham tDCS of dlPFC in a randomized order separated by one week. During both active and sham tDCS sessions, participants will perform regulation of craving (ROC) and emotion regulation (ER) tasks. In the ROC task, participants will be asked to downregulate and upregulate craving elicited by gaming pictures using cognitive reappraisal. In the ER task, participants will be asked to downregulate and upregulate aversive feelings elicited by negative pictures using cognitive reappraisal. During these tasks, self-report ratings and skin conductance responses (SCRs) will be recorded. The cognitive regulation ability is indexed by rating and SCRs differences between the up- and downregulation conditions.

As with the experiment about tDCS effects on attentional bias, the experiment aims to test whether tDCS over dlPFC will enhance inhibitory control of attentional bias towards gaming related cues. The inhibitory control of attentional bias will be measured by a cognitive task in which participants will perform a number classification task with gaming pictures and non-gaming pictures being distractors. The experiment is a within-subject, sham-controlled, double-blind design. Each participant will receive both active and sham tDCS of dlPFC in a randomized order separated by one week. After each tDCS session, participants will complete the cognitive task assessing inhibitory control of attentional bias. During the task, reaction times (RTs) wil be recorded. The attentional bias is indexed by RTs differences between trials with gaming pictures and trials with non-gaming pictures.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Crossover
Primary Purpose
Basic Science
Masking
Double (Participant, Investigator)

Masking Description

double blind: both participants and experiment won't know the stimulation condition

Eligibility Criteria

Ages
18 Years to 30 Years (Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • •engagement in a popular Internet game (Arena of Valor) for over 14 hours per week for a minimum of 6 months.

Exclusion Criteria

  • •current or history of use of illegal substances and gambling;
  • •current or history of psychiatric or neurological illness;
  • •current use of psychotropic medications.

Arms & Interventions

active tDCS on the dlPFC

Experimental

tDCS on the DLPFC Dorsolateral prefrontal cortex (DLPFC) target will be identified by the baseline functional magnetic resonance imaging (fMRI) study for regulation of craving using a separate sample. During the intervention, each participant will receive an active transcranial direct current stimulation (tDCS) intervention on this DLPFC region (1.5 mA for 20 minutes).

Intervention: active tDCS on the dlPFC (Other)

sham tDCS on the dlPFC

Sham Comparator

Each participant will also receive a sham tDCS intervention as a controlled condition. The sham tDCS only include a 30-s ramp up and a 30-s ramp down.

Intervention: sham tDCS on the dlPFC (Other)

Outcomes

Primary Outcomes

Craving in the regulation of craving (ROC) task after the initiation of active and sham tDCS

Time Frame: 4 minutes after the initiation of active and sham tDCS for half of the participants

Using the Visual Analog Scale (from 1 = 'not at all' to 9 = 'very much'), craving is assessed in the ROC task. This task lasts 12-13 minutes. Craving in the downregulation condition will be compared between the active and sham tDCS. Craving in the upregulation condition will also be compared between the active and sham tDCS.

Aversive feeling in the emotion regulation (ER) task after the initiation of active and sham tDCS

Time Frame: 16-17 minutes after the initiation of active and sham tDCS

Using the Visual Analog Scale (from 1 = 'not at all' to 9 = 'very much'), aversive feeling is assessed in the ER task. This task lasts 12-13 minutes. Aversive feeling in the downregulation condition will be compared between the active and sham tDCS. Aversive feeling in the upregulation condition will also be compared between the active and sham tDCS.

Reaction times (RTs) in the cognitive task assessing inhibition of attentional bias after the initiation of active and sham tDCS

Time Frame: 45-47 minutes after the initiation of of active and sham tDCS

Using the E-prime software, RTs are recorded in milliseconds in the cognitive task assessing inhibition of attentional bias. The cognitive task lasts 5-6 minutes. RTs difference between the trials including gaming pictures and those including gaming pictures will be calculated and such RTs difference will be compared between the active and sham tDCS.

Secondary Outcomes

  • Background craving after the initiation of active and sham tDCS(38-40 minutes after the the initiation of active and sham tDCS)
  • Skin conductance responses (SCRs) in the ER task after the initiation of active and sham tDCS(16-17 minutes after the initiation of active and sham tDCS ham tDCS)
  • Background craving before the initiation of active and sham tDCS(Approximately 10 minutes before the initiation of active and sham tDCS)
  • Skin conductance responses (SCRs) in the ROC task after the initiation of active and sham tDCS(4 minutes after the initiation of active and sham tDCS)
  • Cue-induced craving before the initiation of active and sham tDCS(Approximately 8 minutes before the initiation of active and sham tDCS)
  • Cue-induced craving after the initiation of active and sham tDCS(40-42 minutes after the the initiation of active and sham tDCS)

Investigators

Sponsor
Beijing Normal University
Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

jintao, zhang

Associated Professor

Beijing Normal University

Study Sites (1)

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