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Loosely controlled experimental EEG datasets for higher-order cognitions in design and creativity tasks
Morteza Zangeneh Soroush1, Mengting Zhao1, Wenjun Jia1
1Concordia Institute for Information Systems Engineering, Gina Cody School of Engineering and Computer Science, Concordia University, Montreal, QC H3G 2W1, Canada.
Data in Brief
|December 28, 2023
Summary
This study introduces two novel electroencephalography (EEG) datasets from design and creativity experiments, offering insights into cognitive processes. These publicly available resources facilitate research in neurocognition and experimental methodologies for creativity and design.
Area of Science:
- Neuroscience
- Cognitive Science
- Experimental Psychology
Background:
- Understanding the neural underpinnings of design and creativity is crucial but challenging.
- Existing publicly available datasets in this domain are scarce.
- Novel electroencephalography (EEG) datasets are needed to advance research in design and creativity neurocognition.
Purpose of the Study:
- To present two comprehensive EEG datasets from design and creativity experiments.
- To facilitate research in design and creativity cognition by providing accessible neurophysiological data.
- To introduce and validate a "loosely controlled" experimental approach for cognitive studies.
Main Methods:
- Recorded 64-channel EEG signals at 500 Hz from 27 participants in design tasks and 28 participants in creativity tasks.
- Experiments involved loosely controlled, self-paced cognitive tasks such as idea generation, evaluation, and problem understanding.
- EEG data were pre-processed, artifact-corrected, and segmented according to experimental tasks, stored in .mat format.
Main Results:
- Two distinct EEG datasets (Dataset A: design, Dataset B: creativity) are now publicly available.
- The datasets capture neural activity during various cognitive processes inherent to design and creative thinking.
- A comparative analysis of the datasets offers a holistic view of design and creativity tasks.
Conclusions:
- The presented EEG datasets are a novel and valuable resource for the neuroscience of creativity and design.
- The "loosely controlled" experimental paradigm offers a flexible yet structured approach for future cognitive research.
- These datasets and methodologies will promote further investigation into the neurocognitive mechanisms of human creativity and design processes.
Keywords:
Creativity cognitionDesign creativityDesign neurocognitionEEGHigher order cognitive tasksLoosely controlled experimentsNASA task load index (NASA-TLX)Torrance test of creative thinking (TTCT)
