Stroke Clinical Trial
Official title:
Active Limb Orthosis for Home-Use Stroke Hemiparetic Gait Rehabilitation
| Verified date | August 2020 |
| Source | University of South Florida |
| Contact | n/a |
| Is FDA regulated | No |
| Health authority | |
| Study type | Interventional |
The objective of this research is to test a passive shoe to correct gait in individuals with asymmetric walking patterns. This will be done in a clinic and within their own home. Individuals with central nervous system damage, such as stroke, often have irregular walking patterns and have difficulty walking correctly. Recent research has shown that using a split-belt treadmill can create after-effects that temporarily correct the inefficient walking patterns. However, the corrected walking pattern does not efficiently transfer from the treadmill to walking over ground. The iStride, formerly known as the Gait Enhancing Mobile Shoe (GEMS), may allow a patient to practice walking in many different locations, such as their own home, which we hypothesize will result in a more permanent transfer of learned gait patterns. To enable long-term use, our proposed shoe design is passive and uses the wearer's natural forces exerted while walking to generate the necessary motions.
| Status | Completed |
| Enrollment | 23 |
| Est. completion date | December 9, 2019 |
| Est. primary completion date | December 9, 2019 |
| Accepts healthy volunteers | No |
| Gender | All |
| Age group | 21 Years to 80 Years |
| Eligibility | Inclusion Criteria: - age 21-80 - one or more cerebral strokes, but all strokes on same side - a stroke at least 6 months prior to enrollment - Gait asymmetry, but able to walk independently with or without a cane - Not currently receiving physical therapy - no evidence of severe cognitive impairment that would interfere with understanding the instructions - no evidence of one-sided neglect, affecting ambulation - At least 25 feet of walking space in home (does not need to be a straight line) - Weight does not exceed 250 lbs Exclusion Criteria: - uncontrolled seizures - metal implants (stents, clips, pacemaker) - pregnancy - History of a neurological disorder other than stroke ( Parkinson's, MS) - Chronic Obstructive Pulmonary Disease - Uncontrolled blood pressure - Head injury in the past 90 days - A myocardial infarction within the last 180 days - Cannot rely on a rolling walker for ambulation |
| Country | Name | City | State |
|---|---|---|---|
| United States | homes throughout Burlington, VT | Burlington | Vermont |
| United States | homes throughout Charlotte, NC | Charlotte | North Carolina |
| United States | homes throughout Memphis, TN | Memphis | Tennessee |
| United States | University of South Florida | Tampa | Florida |
| Lead Sponsor | Collaborator |
|---|---|
| University of South Florida | Moterum Technologies, Inc. |
United States,
Handzic I, Barno EM, Vasudevan EV, Reed KB. Design and Pilot Study of a Gait Enhancing Mobile Shoe. Paladyn. 2011 Dec 1;2(4). doi: 10.2478/s13230-012-0010-7. — View Citation
Handzic I, Reed KB. Comparison of the passive dynamics of walking on ground, tied-belt and split-belt treadmills, and via the Gait Enhancing Mobile Shoe (GEMS). IEEE Int Conf Rehabil Robot. 2013 Jun;2013:6650509. doi: 10.1109/ICORR.2013.6650509. — View Citation
Handzic I, Vasudevan E, Reed KB. Developing a Gait Enhancing Mobile Shoe to Alter Over-Ground Walking Coordination. IEEE Int Conf Robot Autom. 2012 May;2012:4124-4129. — View Citation
Kim S, Handzic I, Huizenga D, Edgeworth R, Lozinski M, Ramakrishnan T, & Reed KB,
Kim SH, Huizenga DE, Handzic I, Ditwiler RE, Lazinski M, Ramakrishnan T, Bozeman A, Rose DZ, Reed KB. Relearning functional and symmetric walking after stroke using a wearable device: a feasibility study. J Neuroeng Rehabil. 2019 Aug 28;16(1):106. doi: 10.1186/s12984-019-0569-x. — View Citation
| Type | Measure | Description | Time frame | Safety issue |
|---|---|---|---|---|
| Primary | Change in Ten Minute Walk Test (10MWT) | This test is to also help determine gait velocity/speed. | Difference between baseline assessment at start and one week post | |
| Primary | Change in Timed up and Go (TUG) | This will provide a clinical assessment on gait speed/velocity. This also requires both static and dynamic balance as the participant will rise from a chair and sit down in a chair when the complete the test. The TUG test provides us different score assessments to help determine if a patient can, for example, cross a crosswalk safely. | Difference between baseline assessment at start and one week post | |
| Secondary | Change in Berg Balance Scale | This will provide a clinical assessment on balance using the total Berg Balance Scale. Scores range from 0 (least balance) to 56 (best balance). | Difference between baseline assessment at start and one week post | |
| Secondary | Change in Functional Gait Assessment (FGA) | The FGA measures both balance and walking ability with scores ranging from 0 (least ability) to 30 (highest ability). | Difference between baseline assessment at start and one week post | |
| Secondary | Change in Stroke Specific Quality of Life | Stroke Specific Quality of Life will collect data on the psychosocial aspect of improvement to help look at the overall quality of life. The total score ranges from 49 to 245, with higher scores indicating a better quality of life. | Difference between baseline assessment at start and one week post |
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