Area of research
Physical Therapy, Sports Therapy and Rehabilitation · Neurology
Research interest
Research interests include Balance, Gait, and Falls Prevention, Cerebral Palsy and Movement Disorders, Parkinson's Disease Mechanisms and Treatments, and Motor Control and Adaptation.
Digital gait biomarkers in Parkinson’s disease: susceptibility/risk, progression, response to exercise, and prognosis
Digital Measures of Postural Sway Quantify Balance Deficits in Spinocerebellar Ataxia
Quantitative Gait and Balance Outcomes for Ataxia Trials: Consensus Recommendations by the Ataxia Global Initiative Working Group on Digital-Motor Biomarkers
Study in Parkinson’s disease of exercise phase 3 (SPARX3): study protocol for a randomized controlled trial
Gait Variability in Spinocerebellar Ataxia Assessed Using Wearable Inertial Sensors
Evaluation of movement and brain activity
Exploring persistent complaints of imbalance after mTBI: Oculomotor, peripheral vestibular and central sensory integration function
Prodromal Spinocerebellar Ataxia Type 2 Subjects Have Quantifiable Gait and Postural Sway Deficits
Aging, Vestibular Function, and Balance: Proceedings of a National Institute on Aging/National Institute on Deafness and Other Communication Disorders Workshop
Brain networks associated with anticipatory postural adjustments in Parkinson’s disease patients with freezing of gait
The Sensor Technology and Rehabilitative Timing (START) Protocol: A Randomized Controlled Trial for the Rehabilitation of Mild Traumatic Brain Injury
Inertial Sensor Algorithms to Characterize Turning in Neurological Patients With Turn Hesitations
A roadmap for implementation of patient‐centered digital outcome measures in Parkinson's disease obtained using mobile health technologies
Clinical and methodological challenges for assessing freezing of gait: Future perspectives
Postural sway, falls, and self-reported neuropathy in aging female cancer survivors
Speeding Up Gait in Parkinson’s Disease
Local dynamic stability during long-fatiguing walks in people with multiple sclerosis
Dysfunctional Limbic Circuitry Underlying Freezing of Gait in Parkinson’s Disease
Small effect size leads to reproducibility failure in resting-state fMRI studies
Recovery from Multiple APAs Delays Gait Initiation in Parkinson’s Disease
An fMRI-compatible force measurement system for the evaluation of the neural correlates of step initiation
Technology in Parkinson's disease: Challenges and opportunities
The clinical significance of freezing while turning in Parkinson’s disease
Disability Rating Scales in Parkinson's Disease: Critique and Recommendations
The Effect of Levodopa on Improvements in Protective Stepping in People With Parkinson’s Disease
Velocity dependence of vestibular information for postural control on tilting surfaces
Levodopa <scp>I</scp>s a <scp>D</scp>ouble‐<scp>E</scp>dged <scp>S</scp>word for <scp>B</scp>alance and <scp>G</scp>ait in <scp>P</scp>eople <scp>W</scp>ith <scp>P</scp>arkinson's <scp>D</scp>isease
Association of cognitive domains with postural instability/gait disturbance in Parkinson's disease
Cognitive Contributions to Freezing of Gait in Parkinson Disease: Implications for Physical Rehabilitation