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Updated: Nov 5, 2025

Author Spotlight: Enhancing Neurorehabilitation Through EEG, Motor Imagery, and Virtual Reality
Published on: May 10, 2024
Multimodal immersive trail making-virtual reality paradigm to study cognitive-motor interactions
Meir Plotnik1,2,3, Oran Ben-Gal4, Glen M Doniger4,5
1Center of Advanced Technologies in Rehabilitation, Sheba Medical Center, Ramat Gan, Israel. Meir.PlotnikPeleg@sheba.health.gov.il.
Virtual reality (VR) versions of the Color-Trails Test (CTT) demonstrate good validity and reliability for assessing executive functions like attention. These VR adaptations offer a promising new method for cognitive-motor interaction research.
Area of Science:
- Neuroscience
- Psychology
- Human-Computer Interaction
Background:
- Traditional neuropsychological tests of executive function lack real-world predictive relevance.
- Virtual reality (VR) offers a potential solution by adapting tests for immersive environments.
- The Color-Trails Test (CTT), a pencil-and-paper executive function assessment, was adapted into two VR versions.
Purpose of the Study:
- To develop and evaluate VR-based versions of the CTT for assessing sustained and divided attention.
- To assess the construct validity, test-retest reliability, and age-related discriminant validity of the VR CTT versions.
- To explore the effects of VR implementation on motor function during cognitive tasks.
Main Methods:
- Developed two VR versions of the CTT: DOME-CTT (large-scale) and HMD-CTT (head-mounted display).
- Administered original CTT and VR versions to 147 healthy adults across three age groups (young, middle-aged, older).
- Collected data on completion times (Trails A and B) and reconstructed upper-limb movement spatiotemporal characteristics using motion capture.
Main Results:
- Moderate correlations confirmed construct validity between original CTT and VR versions (r=0.58-0.71).
- VR versions demonstrated good test-retest reliability (ICC=0.59-0.89) and discriminant validity (AUC=0.70-0.92).
- VR completion times were longer; older adults showed slower movement onset, consistent with higher executive load in Trails B.
Conclusions:
- VR-based CTT versions are feasible and valid, preserving core neuropsychological task features.
- Spatiotemporal analysis of motor movements during VR tasks may enhance ecological validity.
- This approach represents a novel paradigm for studying cognitive-motor interactions.
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