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Clinical Trial Details — Status: Recruiting

Administrative data

NCT number NCT04338815
Other study ID # 0376-19-FB
Secondary ID
Status Recruiting
Phase N/A
First received
Last updated
Start date January 31, 2022
Est. completion date September 1, 2024

Study information

Verified date September 2023
Source University of Nebraska
Contact Philippe Malcolm, PhD
Phone 617-487-1148
Email pmalcolm@unomaha.edu
Is FDA regulated No
Health authority
Study type Interventional

Clinical Trial Summary

The investigators will evaluate a potentially faster and more clinically feasible method to optimize exoskeletons in pilot tests in healthy in preparation for patients with peripheral artery disease.


Description:

This study will test different methods for optimizing exoskeletons. It will consist of an habituation session to the hip exoskeleton, an optimization session to find the optimal actuation settings using an algorithm that converges toward the optimum based on real-time measurements (human-inthe-loop algorithm) and a post-test at the end of optimization session to compare different conditions. The outcomes will be evaluated by surface electromyography (Delsys), exoskeleton sensors (Futek), ground reaction force (Bertec treadmill), walking speed (Bertec treadmill), indirect calorimetry (Cosmed), and motion capture (Vicon).


Recruitment information / eligibility

Status Recruiting
Enrollment 22
Est. completion date September 1, 2024
Est. primary completion date September 1, 2024
Accepts healthy volunteers Accepts Healthy Volunteers
Gender All
Age group 19 Years to 85 Years
Eligibility Inclusion Criteria: - Ability to provide written consent - Chronic claudication history - Ankle-brachial index < 0.90 at rest - Stable blood pressure, lipides, and diabetes for > 6 weeks - Ability to walk on a treadmill for multiple five-minute spans. - Ability to fit in exoskeleton: waist circumference 78 to 92 centimeters, thigh circumference 48 to 60 centimeters, minimal thigh length 28 centimeters. Exclusion Criteria: - Rest pain or tissue loss due to peripheral artery disease (Fontaine stage III and IV). - Foot ulceration. - Acute lower extremity event secondary to thromboembolic disease or acute trauma - Walking capacity limited by diseases which are unrelated to peripheral artery disease such as: Neurological disorders, musculoskeletal disorders (arthritis, scoliosis, stroke, spinal injury, etc.), a history of ankle instability, knee injury, diagnosed joint laxity, lower limb injury, surgery within the past 12 months, joint replacement, pulmonary disease or breathing disorders, cardiovascular disease, or vestibular disorder. This will be determined by verbal questioning from research personnel by verbally asking about conditions limiting their walking, whether subjects are taking medications for those conditions, and physicians' recommendations about limiting activity. - Acute injury or pain in their lower extremity or current illness. - Inability to follow visual cues due to blindness. - Inability to follow auditory cues due to deafness. - Women who are currently pregnant are excluded for safety reasons.

Study Design


Intervention

Other:
Exoskeleton optimization
Participants will walk 10 times of 1 minute duration while an optimization algorithm changes the assistance profile of an exoskeleton.
Endurance evaluation
Participants will walk 2 times at a speed of 1 meter per second until the participant indicates claudication or a maximum duration of 6 minutes.

Locations

Country Name City State
United States University of Nebraska Omaha Omaha Nebraska

Sponsors (1)

Lead Sponsor Collaborator
University of Nebraska

Country where clinical trial is conducted

United States, 

Outcome

Type Measure Description Time frame Safety issue
Primary Time to convergence We will determine when the estimated optimal exoskeleton settings vary less than 10% 10 minutes
Primary Peak extension timing Timing of peak extension moment of exoskeleton (% stride cycle) 20 seconds
Primary Peak flexion timing Timing of peak flexion moment of exoskeleton (% stride cycle) 20 seconds
Primary Largest lyapunov exponent Largest lyapunov exponent of lower limb kinematics 20 seconds
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