Kevin R. Higgins, DPM
San Antonio, Texas, 78217, United States
NCT Number: NCT00499356
We evaluated the feasibility of the GlideSoft™ novel insole to reduce pressure and shear forces on the foot. No commercially available insoles are designed to reduce shear. Although insurance providers spend millions on diabetics' therapeutic insoles, there is no scientific data about shear or pressure reduction. We will evaluate the optimal bonded materials from Phase I compared to the Glidesoft™ design using the same combination of viscoelastic materials. We evaluate 2 patient groups of 150 patients per arm (300 total) in an 18 month trial. The control group patient arm wore a traditional bonded insole whereas another the second arm receive the GlideSoft™. At baseline, and at the end of the 18 month trial, in-shoe gait lab and in vitro biomechanical parameters measured pressure, shear, and material properties as these changed with wear. This Phase II eighteen (18) month clinical trial evaluated the effectiveness of ShearSole™ reducing the incidence of diabetic ulcers. The overall study hypothesis was that GlideSoft™ provides significant shear reduction as compared to traditional insoles without sacrificing pressure reduction characteristics or durability.
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Notify Me18 year–80 year
All sexes
Interventional
Not applicable
San Antonio, Texas, 78217, United States
We measured in-shoe pressures and in-vitro shear forces at the foot-insole interface at the beginning of the study and after patients wore the insole for four months or one "standard cycle of wear". We used the Novel Electronics, Inc. Pedar in-shoe pressure system to measure the interface between the foot and insole and the Shear Force Tester (see Phase I report) to evaluate shear forces. We expected that the GlideSoft would significantly reduce shear forces and provide equivalent reduction in vertical forces at both the day 0 evaluation and day 120 evaluations.
We measured in-shoe pressures and in-vitro shear forces at the foot-insole interface at the beginning of the study and after patients wore the insole for four months or one "standard cycle of wear". We used the Novel Electronics, Inc. Pedar in-shoe pressure system to measure the interface between the foot and insole and the Shear Force Tester (see Phase I report) to evaluate shear forces. We expected that the GlideSoft would significantly reduce shear forces and provide equivalent reduction in vertical forces at both the day 0 evaluation and day 120 evaluations.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Time frame: 15 months
Diabetica Solutions Inc.
Industry
Acronym: GlideSoft
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