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Wayfinding Intervention and Long-Term Memory

Virtual Reality Interventions to Stimulate Capabilities for Learning and Retrieval of High-Fidelity Memory

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05625425
Acronym
Quest-Tablet
Enrollment
200
Registered
2022-11-23
Start date
2024-01-01
Completion date
2027-01-31
Last updated
2026-05-07

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Long-Term Memory Decline, Mild Cognitive Impairment

Keywords

amnestic MCI without dementia, cognitive training, cognitive aging

Brief summary

Therapeutic treatment is yet available for declining memory, which is an impairment affecting the quality of life for many older adults and patients with cognitive impairment. Cognitive training with an immersive video game promises to drive hippocampal-cortical plasticity and associated gains that can restore memory capability or provide therapeutic treatment for memory deficits.

Detailed description

A hallmark of higher cognition is the capability for flexible association of diverse bits of information stored in memory, such that experiences can be remembered in detailed and distinct terms (i.e., high-fidelity long-term memory). Interventions capable of sustaining improved learning and flexible association of new information into long-term memory (LTM) have shown promising pilot results, and further development is expected to find treatments to attenuate the decline of high-fidelity LTM in normal aging or provide therapeutic treatment for patients with cognitive impairment without dementia (i.e., MCI). This project applies a translational neuroscience approach in further development of a cognitive training intervention that targets sustained improvement in capabilities for long-term memory (LTM) and cognitive control. Treatments use commercially available head-mounted display Virtual Reality (VR) technology and tablet computers to present a deeply immersive spatial wayfinding video game. Based on preliminary results, the hypothesis is that immersion in a game to navigate errands through unfamiliar, visually complex neighborhoods (i.e., wayfinding) will be an effective means to environmental enrichment, which refers to a process whereby new and complex experiences bring change to brain and behavior. Research in humans shows that learning a new, enriched environment spurs the healthy function of the hippocampus and supports lifelong neurogenesis. Adult-borne hippocampal neurogenesis has been linked as the neurobiological basis for the formation of new, high-fidelity memories. The significance of this project includes functionality for remote training procedures (i.e., at home). The availability for participants to complete some of the experiment procedures at home will expand enrollment opportunities and prove the practicality of the intervention outside of a clinical setting. The Labyrinth spatial wayfinding game uses 3D and 2.5D computer graphics tools to present dozens of levels of adaptive challenge and deliver a dynamic, engaging experience for participants throughout the training regimen. In this project, participants will effect game movement using hand controllers while playing the game in a seated position. For each participant, pre- and post-training assessments will occur promptly before and after their 15 to 20-hour training regimen. Cognitive outcome measures will assess capabilities for high-fidelity LTM retrieval and control of sustained visual attention, and some measures will include collection of associated functional MRI (fMRI) and structural MRI data. Effectiveness of the wayfinding game intervention will be evidenced by post-training improvements in retrieval of high-fidelity LTM and cognitive control capabilities. FMRI results associated with the measured cognitive improvements will localize changes in functional brain networks that support gains in memory capabilities. Structural MRI measures will assess morphometric and volumetric changes from pre- to post-training assessments.

Interventions

BEHAVIORALLabyrinthVR software

Head-mounted display virtual reality game designed to induce environmental enrichment in an adaptive, highly engaging regimen of wayfinding in novel urban and village neighborhoods.

BEHAVIORALPlacebo Games software

Commercially-available, narrative computer games marketed as cognitively enriching. Can be tablet-based or wireless VR headset-based.

BEHAVIORALLabyrinth Tablet software

Tablet computer playing Labyrinth spatial wayfinding game in 2.5D

BEHAVIORALLabyrinth VR wireless

Wireless head-mounted display virtual reality game designed to induce environmental enrichment in an adaptive, engaging regimen of wayfinding in novel urban and village neighborhoods.

Sponsors

University of California, San Francisco
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
BASIC_SCIENCE
Masking
DOUBLE (Subject, Outcomes Assessor)

Masking description

After recruitment, participants are randomly assigned to treatment arms. Participants and experimenters with whom participants interact during the experiments are blind to the purpose of the randomly-assigned arm. First-level analysis performed blind to participant's treatment arm.

Eligibility

Sex/Gender
ALL
Age
60 Years to 85 Years
Healthy volunteers
Yes

Inclusion criteria

* fluent speakers of English * completed 12 or more years of education * normal or corrected-to-normal vision * dexterity to comfortably operate the scanner-compatible response box * freedom from physical and neurological conditions contra-indicated for fMRI * must confirm physical stamina and comfort for semi-weekly brisk 30-minute walks on level ground

Exclusion criteria

* use of psychotropic medications * history of concussions or dizziness, vestibular or balance problems * significant discomfort with virtual reality experiences

Design outcomes

Primary

MeasureTime frameDescription
Volumetric-based brain morphometry for gray and white mattercollected in association with Outcome 1, at baseline immediately before (T1) and post-assessment immediately after training regimen is completed (T2)Structural MRI T1 data will be analyzed in terms of volumetric-based morphometry, measuring the variables of cortical area.
Task-based cortical functional connectivity associated with mnemonic discrimination capability and in control of sustained visual attentioncollected in association with Outcome 1, at baseline immediately before (T1) and post-assessment immediately after training regimen is completed (T2)functional MRI data will be analyzed in terms of beta-series correlations between co-active cortical regions of interest, measuring the variable of correlation of inter-trial variability across brain regions
MDT change in mnemonic discriminationbaseline immediately before (T1) and post-assessment immediately after training regimen is completed (T2) providing for a composite score T2-T1Training-related change in Mnemonic Discrimination Task (MDT) score. MDT tests recognition memory for pairs of common objects (i.e., targets and lures), measuring the variable of the number of images identified as old (studied) or new (novel), and reports a composite index score (0.00 to 1.00) for accuracy post-training (T2) versus baseline (T1)
TOUR change in recallbaseline immediately before (T1) and post-assessment immediately after training regimen is completed (T2) providing for a composite score T2-T1Training-related change in recall of number of details in autobiographical memory from a narrated urban tour, such that a composite parametric score shows how many specific details were recalled post-training (T2) versus baseline (T1)

Secondary

MeasureTime frameDescription
Remote Cognitive Module (RCM)baseline immediately before training regimen beginsA tablet application using a speech-text interface to administer neuropsychological tests comparable to CVLT-II verbal memory, verbal fluency, digit span and Trail Making Test-B. Measured variables are target words remembered

Countries

United States

Contacts

CONTACTMelissa Arioli
twist.study@ucsf.edu415-502-7321
PRINCIPAL_INVESTIGATORPeter E Wais, PhD

Neuroscape, Department of Neurology

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: May 8, 2026