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Brain control of dual-task walking can be improved in aging and neurological disease
Roee Holtzer
, Jaeun Choi
, Robert W. Motl
, Frederick W. Foley
, Mark E. Wagshul
,
Manuel E. Hernandez
, Meltem Izzetoglu
Biomedical and Translational Sciences
Health and Kinesiology
Bioengineering
Beckman Institute for Advanced Science and Technology
Social & Behavioral Science Institute
Neuroscience Program
Research output
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peer-review
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Keyphrases
Neurological Diseases
100%
Multiple Sclerosis
100%
Age-related Illnesses
100%
Dual-task Walking
100%
Brain Control
100%
Multi-task
71%
Oxyhemoglobin
57%
Prefrontal Cortex
57%
Dual Task
42%
Cognitive Performance
28%
Gait Performance
28%
Walking Performance
28%
Performance Improvement
14%
Older Adults
14%
Health Outcomes
14%
Aging
14%
Patient Demographics
14%
Hemodynamic Response
14%
Response Rate
14%
Multiple Control
14%
Brain Activation
14%
Cognitive Decline
14%
Resource Utilization
14%
Prefrontal Cortex Activation
14%
Task Condition
14%
Activation Efficiency
14%
Single Session
14%
Motoric
14%
Functional Near-infrared Spectroscopy (fNIRS)
14%
Efficiency Improving
14%
Older Age Groups
14%
Neural Resources
14%
Psychology
Prefrontal Cortex
100%
Cognitive Performance
40%
Cognitive Decline
20%
Hemodynamic Response
20%