Ðǿմ«Ã½ÊÓÆµ Projects

Ðǿմ«Ã½ÊÓÆµ Projects

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Limit-push version of error augmentation

Error-enhanced Learning & Recovery in 2 & 3 Dimensions

a NIH funded grant (James Patton, PI) investigating differences in outcomes using models that describe how a person responds to error during practice, so we can prescribe the best therapeutic training. ?

Ðǿմ«Ã½ÊÓÆµ Project

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Sensitivity of Simulated Grip Strength to Wrist Posture: Poster Presentation

This poster presentation is in virtual attendance to the American Society of Biomechanics conference in 2020

Ðǿմ«Ã½ÊÓÆµ Project

Cognitive-Behavioral Interventions for Chronic Pain: Expanding Access via Telehealth NIDLRR Invited Lectureship by Dawn Ehde main slide banner

Cognitive-Behavioral Interventions for Chronic Pain: Expanding Access via Telehealth NIDLRR Invited Lectureship by Dawn Ehde

Dawn Ehde, PhD, presented on her research on chronic pain in individuals with physical disabilities and the use of telehealth to deliver cognitive-behavioral interventions to support health and independence.

Ðǿմ«Ã½ÊÓÆµ Project

Shirley Ryan Ðǿմ«Ã½ÊÓÆµ Collaborations

C-STAR CORES

Expertise within C-STAR is organized into four Cores: Engineering, Clinical, Outcomes, and Implementation Science and Community Engagement.

Ðǿմ«Ã½ÊÓÆµ Project

RMD data

C-STAR Data Sharing

Access benchmark data from a wide range of diagnostic conditions, as well as resources from the Rehabilitation Measures Database.

Ðǿմ«Ã½ÊÓÆµ Project

C-STAR Collaborative Opportunities

C-STAR Ðǿմ«Ã½ÊÓÆµ Consultation

Ðǿմ«Ã½ÊÓÆµers and clinicians are invited to join our hands-on learning and mentoring program, IdeaLab.

Ðǿմ«Ã½ÊÓÆµ Project

COVID Sensor

COMPLETE: Wearable Sensor to Monitor and Track COVID-19-Like Signs and Symptoms

This study will evaluate use of wearable sensors to gather information on COVID-19 like signs and symptoms.

Ðǿմ«Ã½ÊÓÆµ Project

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Intracortical Inhibition in Humans with Spinal Cord Injury

This study investigates the intracortical inhibition in humans with cervical spinal cord injury. We particularly aim to understand the inhibitory mechanism for the control of upper arm muscles to further promote rehabilitation protocol.

Ðǿմ«Ã½ÊÓÆµ Project

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Spasticity Assessments Ðǿմ«Ã½ÊÓÆµ Project

The purpose of the study was to examine the contribution of passive muscle stiffness and active spinal reflex mechanisms to clinical outcomes of spasticity after SCI.

Ðǿմ«Ã½ÊÓÆµ Project

What EMG Signal may look like!

Using Sensors and EMG Biofeedback to Increase Upper Limb Voluntary Output after Stroke or SCI

We combine sensors with fun, interactive computer games in order to strengthen arm muscles after stroke or SCI! Free program offered by the Perez Lab.

Ðǿմ«Ã½ÊÓÆµ Project