Lower Limb Amputation Below Knee (Injury) Clinical Trial
Official title:
Auto Control of Volume Management for Limb Loss
Verified date | April 2023 |
Source | University of Washington |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
The aim of this research is to create a prosthetic system that will automatically adjust the fit of the socket and create a well-fitting prosthesis for people with leg amputations who experience volume fluctuations when using their prosthesis.
Status | Completed |
Enrollment | 104 |
Est. completion date | January 2022 |
Est. primary completion date | September 2021 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 18 Years and older |
Eligibility | Inclusion Criteria: - 18 years of age or older - Unilateral transtibial amputee - At least 6 months post-amputation - Wear prosthesis at least 3 hours per day - Use an elastomeric (i.e. gel) liner - K3 or higher Medicare Functional Classification Level - Able to walk continuously with prosthesis for at least 5 minutes at a time, sit, stand, and step up a height of 5.0 cm. - Residual limb of 9.0 cm or longer - Experience problems with volume fluctuations that affect their prosthetic socket fit Exclusion Criteria: - Participants experiencing skin breakdown on enrollment will be excluded, but can enter after having been free of clinically visually-apparent skin breakdown for two weeks. |
Country | Name | City | State |
---|---|---|---|
United States | University of Washington Bioengineering | Seattle | Washington |
Lead Sponsor | Collaborator |
---|---|
University of Washington |
United States,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Change in Limb Volume | Limb volume fluctuations will be measured in real-time as socket adjustment strategies are tested. This will be accomplished using a portable bioimpedance device with thin sticky electrodes that are placed on the residual limb. Specifically, the change in limb volume will be assessed from a baseline period where no socket adjustments are made to another period within the same test session where socket adjustments are made. | Change from baseline period (non-adjustment) to test period (adjustment), commonly each 1 hour long and separated by a seated period of approximately 30 minutes. | |
Primary | Change in Limb Movement | Limb movement within the socket will be measured as socket adjustment strategies are tested. It will be used as an indicator of how well the socket is fitting (loose, tight, etc). The measurement will be made using an inductance sensor that is placed in the socket which measures the displacement of a sensor patch on the prosthetic liner. Specifically, the change in limb movement will be assessed from a baseline period where no socket adjustments are made to another period within the same test session where socket adjustments are made. | Change from baseline period (non-adjustment) to test period (adjustment), commonly each 1 hour long and separated by a seated period of approximately 30 minutes. | |
Primary | Number of Participants With Increase in Limb Fluid Volume After Panel Pull | Limb volume fluctuations will be measured in real-time as socket adjustment strategies are tested. This will be accomplished using a portable bioimpedance device with thin sticky electrodes that are placed on the residual limb. Specifically, the change in limb volume will be assessed from a baseline period where no socket adjustments are made to another period within the same test session where socket adjustments are made. | Change from baseline period (non-adjustment) to test period (adjustment), commonly each 1 hour long and separated by a seated period of approximately 30 minutes. | |
Primary | Integral of Absolute Error to Maintain Set Point | Clinically acceptable socket volume error as measured by an automatically adjusting prosthetic socket attempting to maintain a set socket volume set point, based on sensed distance (measured in mm). | Over 30 minutes of controlled use of the auto-adjusting socket | |
Secondary | Adjustable Socket Mode Preference | Participants tested the adjustable prosthesis in their home environment in one of three adjustment configurations:
"locked" where panels were kept in position and did not move, similar to their own prosthesis "manual" where panels were able to be adjusted inward or outward radially, by the participant via a phone app "automatic" where panels adjusted inward or outward radially as when the participant walked for a sufficiently continuous amount of time. Participants were also able to manual adjust panels as needed in this mode as well. |
After 3 weeks of use, where each mode was tested for about 1 week |
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