Real brains in virtual worlds: Validating a novel oddball paradigm in virtual reality
Kuziek, J. W. P.; Redman, E. X.; Tayem, A. R.; Burrell, J.; Murray, J.; Reinan, J.; Sipolins, A.; Mathewson, K. E.
Show abstract
Electroencephalography (EEG) research is typically conducted in controlled laboratory settings. This limits the generalizability to real-world situations. Virtual reality (VR) sits as a transitional tool that provides tight experimental control with more realistic stimuli. To test the validity of using VR for event-related potential (ERP) research we used a well-established paradigm, the oddball task. For our first study, we compared VR to traditional, monitor-based stimulus presentation using visual and auditory oddball tasks while EEG data was recorded. We were able to measure ERP waveforms typically associated with such oddball tasks, namely the P3 and earlier N2 components, in both conditions. Our results suggest that ERPs collected using VR head mounted displays and typical monitors were comparable on measures of latency, amplitude, and spectral composition. In a second study, we implemented a novel depth-based oddball task and we were able to measure the typical oddball-related ERPs elicited by the presentation of near and far stimuli. Interestingly, we observed significant differences in early ERPs components between near and far stimuli, even after controlling for the effects of the oddball task. Current results suggest that VR can serve as a valid means of stimulus presentation in novel or otherwise inaccessible environments for EEG experimentation. We demonstrated the capability of a depth-based oddball in reliably eliciting a P3 waveform. We also found an interaction between the depth at which objects are presented and early ERP responses. Further research is warranted to better explain this influence of depth on the EEG and ERP activity.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Investigating saccade-onset locked EEG signatures of face perception during free-viewing in a naturalistic virtual environment 98%
- Cross-validating the electrophysiological markers of early face categorization 96%
- Individual Differences in Cognition and Perception Predict Neural Processing of Speech in Noise for Audiometrically Normal Listeners. 96%
Similar papers in this journal
- Optimal Filters for ERP Research I: A General Approach for Selecting Filter Settings 96%
- Using Multivariate Pattern Analysis to Increase Effect Sizes for Event-Related Potential Analyses 96%
- The ecological cocktail party: Measuring brain activity during an auditory oddball task with background noise 96%
Similar papers in this journal
- Naturalistic viewing conditions can increase task engagement and aesthetic preference but have only minimal impact on EEG quality 97%
- Causal role of frontocentral beta oscillation in comprehending linguistic communicative functions 96%
- Early beta oscillations in multisensory association areas underlie crossmodal performance enhancement 96%
Similar papers in this journal
Similar papers in this journal
- To See, Not to See, or to See Poorly: Perceptual Quality and Guess Rate as a Function of Electroencephalography (EEG) Brain Activity in an Orientation Perception Task 97%
- Time-oriented attention improves accuracy in a paced finger tapping task 96%
- Alteration of brain dynamics during natural dual-task walking 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.