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Multi-layer Insoles for a Patient-specific Approach to Shear and Pressure Reduction in Diabetes-related Foot Ulcer

Multi-material, Layer, and Density Insoles for a Patient-specific Approach to Shear and Pressure Reduction in the Treatment and Prevention of Diabetes-related Foot Ulcer

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01844479
Enrollment
27
Registered
2013-05-01
Start date
2012-12-31
Completion date
2014-01-31
Last updated
2016-10-06

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Diabetic Foot, Diabetic Foot Ulcer

Keywords

diabetic foot ulcer, diabetic foot

Brief summary

In this pilot study, the first objective is to bench test a novel shear reducing insole and compare it to current standard insoles and shoes. The second objective is to study twenty-seven insensate diabetes patients with pre-ulcerative foot callus to examine for changes in spatial temporal gait including gait initiation, risk of falling, static and dynamic balance, and plantar temperature response to walking and consecutive plantar stress in both footwear conditions.

Detailed description

Device Description: The Dynamic Foot Orthosis (DFO) is designed with a rolling link mechanism at the distal 3rd. It is designed to reduce sliding friction and torque at the metatarsal heads in addition to decreasing compressive forces that is accomplished by the conventional multi-durometer FOs. The relative sliding motion of two compliant surfaces over each other allows some deformation horizontally and lowers frictional resistance. The DFO addresses the friction element by accommodating the normal sliding and rolling motion at the distal 3rd of the foot during gait. Additionally, the DFO has a silicone layer at the metatarsal head and the remainder of the anterior section made of 2 separated orthotic layers that slide over each other. This provides an articulating surface to provide a relative motion between the orthotic segments while transmitting load. Study Objectives: In this pilot study, the first objective is to bench test a novel shear reducing insole and compare it to current standard insoles and shoes. The second objective is to study twenty-seven insensate diabetes patients with pre-ulcerative foot callus to examine for changes in spatial temporal gait including gait initiation, risk of falling, static and dynamic balance, and plantar temperature response to walking and consecutive plantar stress in both footwear conditions. Study Design: This is an interventional study. For objective one, changes in compression stiffness and static coefficients of friction will be measured using a force dynamometer in the lab of Professor Albert Shih. A test platform will be built to evaluate the performance of the shear reduction shoe sole design and characteristic of the force, in two directions parallel (shear) and perpendicular to the ground, and the associated deformation under the steady-state and impulse conditions. For objective two, diabetes patients presenting to the Michigan Orthotics and Prosthetics Center for fabrication and dispensing of diabetic shoes and innersoles will be invited to participate. Twenty-seven insensate diabetes patients with pre-ulcerative foot callus will be enrolled. Patients will wear body worn sensors (LegSys) to measure changes in spatial-temporal gait and static and dynamic balance parameters prior and post usage of the insoles. To reduce the effects of learning from naïve use of novel footwear, the testing sequence between the experimental and standard footwear will be randomized. We will examine increase on foot temperature over 200 steps of continuous walking using the DFO and using standard insoles. We will also examine if the thermal changes are mediated by autonomic neuropathy as measured by sudomotor function. The footwear testing sequence will be randomized and an acclimatization procedure will be followed in an effort to minimize the potential effects of cumulative plantar temperature responses to walking and footwear conditions. We will also examine static balance by measuring center of mass with eyes open and eyes closed condition. Outcome Measures: For objective one, the primary endpoints will be the compression stiffness and static coefficients of friction. For objective two, plantar foot temperature changes in regions-of-interest in response to walking 200 steps will be measured in each footwear condition and compared to baseline. Other outcome measures include gait analysis, including gait initiation, gait speed, double support time, medial and lateral center of mass displacement, and inter-cycle variability under single and dual task conditions. This will be measured during each footwear condition. Static balance will also be measured in each footwear condition. Using the Romberg's test, we will also assess center of mass displacement and reciprocal hip and ankle motion under eyes open and closed conditions. Sudomotor function will be measured by electrical sweat conductance (ESC), as expressed in microSiemens (µS). Safety Evaluation: All subjects who sign the informed consent form and are determined to be eligible for treatment will be included in the analysis of safety. Collection, classification and summary analysis of adverse events will be performed. Duration of Participation: One visit lasting approximately 1 hour. Duration of Study: One year Inclusion Criteria: Patients will be included if they have diabetes and have been referred for diabetic shoes. They will also be insensate with pre-ulcerative plantar callus or previous plantar foot ulcer. Exclusion Criteria: Patients will be excluded if they are unable to independently walk 100 feet, lower extremity prosthesis user, have active cellulitis, foot ulcer, or Charcot foot.

Interventions

DEVICEdiabetic foot orthotic

The Dynamic Foot Orthosis (DFO) is designed with a rolling link mechanism at the distal 3rd to reduce sliding friction at the metatarsal heads in addition to decreasing compressive forces. The relative sliding motion of two compliant surfaces over each other allows some deformation horizontally and lowers frictional resistance. The DFO addresses the friction element by accommodating the normal sliding and rolling motion at the distal 3rd of the foot during gait. Additionally, the DFO has a silicone layer at the metatarsal head and the remainder of the anterior section made of 2 separated orthotic layers that slide over each other. This provides an articulating surface to provide a relative motion between the orthotic segments while transmitting load.

OTHERStandard innersole

Sponsors

University of Michigan
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
PREVENTION
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Patients will be included if they have diabetes and have been referred for diabetic shoes. They will also be insensate with pre-ulcerative plantar callus or previous plantar foot ulcer.

Exclusion criteria

* Patients will be excluded if they are unable to independently walk 100 feet, lower extremity prosthesis user, have active cellulitis, foot ulcer, or Charcot foot.

Design outcomes

Primary

MeasureTime frameDescription
Plantar Foot Temperature Changes in Regions-of-interest in Response to Walkingbaseline and after 200 steps in each condition, this is a single visit study expected to last one hourPlantar foot temperature changes in regions-of-interest in response to walking 200 steps will be measured in each footwear condition and compared to baseline.

Secondary

MeasureTime frameDescription
Gait Initation - Single Taskduring each foot wear condition up to 30 minutesThe number of steps taken to reach steady state walking under single task. Single task means walking without a simultaneous mental task.
Gait Initiation - Dual Taskduring each foot wear condition up to 30 minutesThe number of steps taken to reach steady state walking under dual task. Dual task used a simultaneous mental task while walking.
Stride Velocity - Dual Taskduring each foot wear condition up to 30 minutesStride velocity during steady state dual task. Dual task used a simultaneous mental task while walking.
Double Support Time Single Taskduring each foot where condition up to 30 minutespercentage of stride time spent in double support time during gait initiation. Double support time refers to the time spent with both feet on the ground. Single task means walking without a simultaneous mental task.
Double Support Time Dual Task Gait Initiationduring each foot where condition up to 30 minutespercentage of stride time spent in double support time during dual task conditions and during gait initiation. Double support time refers to the time spent with both feet on the ground. Dual task used a simultaneous mental task while walking.
Gait Speed Variability Single Taskboth footwear conditions up to 30 minutesGait speed variability (estimated using coefficient and variation of stride velocity) Single task means walking without a simultaneous mental task.
Gait Speed Variability Dual TaskBoth footwear conditions up to thirty minutesGait speed variability (estimated using coefficient and variation of stride velocity) Dual task used a simultaneous mental task while walking.
Medial and Lateral Center of Mass Displacement Single Taskunder each foot where condition up to 30 minutesMediolateral (side-to-side) center of mass displacement with displacement in deg2 (degrees squared) under single task gait conditions. Single task means walking without a simultaneous mental task.
Medial and Lateral Center of Mass Displacement Dual Taskboth footwear conditions up to 30 minutesMediolateral (side-to-side) center of mass displacement in deg2 (degrees squared) under dual task gait. Dual task used a simultaneous mental task while walking.

Other

MeasureTime frameDescription
Stride Velocity - Single Taskduring each foot wear condition up to 30 minutesStride velocity steady state gait single task. Single task means walking without a simultaneous mental task.
Sudomotor Functionat baseline, this is a single visit study expected to last one hourSudomotor function will be measured by electrical sweat conductance (ESC), as expressed in microSiemens (µS).

Countries

United States

Participant flow

Participants by arm

ArmCount
All Study Participants
The industry standard diabetic innersole will be used as the active comparator Standard innersole The Dynamic Foot Orthosis (DFO) is designed with a rolling link mechanism at the distal 3rd to reduce sliding friction at the metatarsal heads in addition to decreasing compressive forces. The relative sliding motion of two compliant surfaces over each other allows some deformation horizontally and lowers frictional resistance. The DFO addresses the friction element by accommodating the normal sliding and rolling motion at the distal 3rd of the foot during gait. Additionally, the DFO has a silicone layer at the metatarsal head and the remainder of the anterior section made of 2 separated orthotic layers that slide over each other. This provides an articulating surface to provide a relative motion between the orthotic segments while transmitting load.
27
Total27

Baseline characteristics

CharacteristicAll Study Participants
Age, Continuous65.1 years
Sex: Female, Male
Female
13 Participants
Sex: Female, Male
Male
14 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
0 / 270 / 27
serious
Total, serious adverse events
0 / 270 / 27

Outcome results

Primary

Plantar Foot Temperature Changes in Regions-of-interest in Response to Walking

Plantar foot temperature changes in regions-of-interest in response to walking 200 steps will be measured in each footwear condition and compared to baseline.

Time frame: baseline and after 200 steps in each condition, this is a single visit study expected to last one hour

ArmMeasureValue (MEAN)Dispersion
Standard InnersolePlantar Foot Temperature Changes in Regions-of-interest in Response to Walking0.758 Absolute change in temperature degreesStandard Deviation 1.48
Diabetic Foot OrthoticPlantar Foot Temperature Changes in Regions-of-interest in Response to Walking0.272 Absolute change in temperature degreesStandard Deviation 1.21
Secondary

Double Support Time Dual Task Gait Initiation

percentage of stride time spent in double support time during dual task conditions and during gait initiation. Double support time refers to the time spent with both feet on the ground. Dual task used a simultaneous mental task while walking.

Time frame: during each foot where condition up to 30 minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleDouble Support Time Dual Task Gait Initiation31.5 percentage of stride timeStandard Deviation 2.2
Diabetic Foot OrthoticDouble Support Time Dual Task Gait Initiation29.8 percentage of stride timeStandard Deviation 1.3
Secondary

Double Support Time Single Task

percentage of stride time spent in double support time during gait initiation. Double support time refers to the time spent with both feet on the ground. Single task means walking without a simultaneous mental task.

Time frame: during each foot where condition up to 30 minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleDouble Support Time Single Task31.6 percentage of stride timeStandard Deviation 2.4
Diabetic Foot OrthoticDouble Support Time Single Task28.3 percentage of stride timeStandard Deviation 1.3
Secondary

Gait Initation - Single Task

The number of steps taken to reach steady state walking under single task. Single task means walking without a simultaneous mental task.

Time frame: during each foot wear condition up to 30 minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleGait Initation - Single Task4.53 Number of stepsStandard Deviation 0.63
Diabetic Foot OrthoticGait Initation - Single Task4.32 Number of stepsStandard Deviation 0.58
Secondary

Gait Initiation - Dual Task

The number of steps taken to reach steady state walking under dual task. Dual task used a simultaneous mental task while walking.

Time frame: during each foot wear condition up to 30 minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleGait Initiation - Dual Task3.58 Number of stepsStandard Deviation 0.53
Diabetic Foot OrthoticGait Initiation - Dual Task3.42 Number of stepsStandard Deviation 0.58
Secondary

Gait Speed Variability Dual Task

Gait speed variability (estimated using coefficient and variation of stride velocity) Dual task used a simultaneous mental task while walking.

Time frame: Both footwear conditions up to thirty minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleGait Speed Variability Dual Task7.45 percentage of gaitStandard Deviation 2.69
Diabetic Foot OrthoticGait Speed Variability Dual Task5.08 percentage of gaitStandard Deviation 0.97
Secondary

Gait Speed Variability Single Task

Gait speed variability (estimated using coefficient and variation of stride velocity) Single task means walking without a simultaneous mental task.

Time frame: both footwear conditions up to 30 minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleGait Speed Variability Single Task6.8 percentage of gaitStandard Deviation 2.3
Diabetic Foot OrthoticGait Speed Variability Single Task5.5 percentage of gaitStandard Deviation 2.1
Secondary

Medial and Lateral Center of Mass Displacement Dual Task

Mediolateral (side-to-side) center of mass displacement in deg2 (degrees squared) under dual task gait. Dual task used a simultaneous mental task while walking.

Time frame: both footwear conditions up to 30 minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleMedial and Lateral Center of Mass Displacement Dual Task4.73 deg2Standard Deviation 0.65
Diabetic Foot OrthoticMedial and Lateral Center of Mass Displacement Dual Task3.99 deg2Standard Deviation 0.3
Secondary

Medial and Lateral Center of Mass Displacement Single Task

Mediolateral (side-to-side) center of mass displacement with displacement in deg2 (degrees squared) under single task gait conditions. Single task means walking without a simultaneous mental task.

Time frame: under each foot where condition up to 30 minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleMedial and Lateral Center of Mass Displacement Single Task4.60 deg2Standard Deviation 0.48
Diabetic Foot OrthoticMedial and Lateral Center of Mass Displacement Single Task4.61 deg2Standard Deviation 0.36
Secondary

Stride Velocity - Dual Task

Stride velocity during steady state dual task. Dual task used a simultaneous mental task while walking.

Time frame: during each foot wear condition up to 30 minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleStride Velocity - Dual Task1.01 m/sStandard Deviation 0.05
Diabetic Foot OrthoticStride Velocity - Dual Task1.00 m/sStandard Deviation 0.04
Other Pre-specified

Stride Velocity - Single Task

Stride velocity steady state gait single task. Single task means walking without a simultaneous mental task.

Time frame: during each foot wear condition up to 30 minutes

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleStride Velocity - Single Task1.08 meters/secondStandard Deviation 0.005
Diabetic Foot OrthoticStride Velocity - Single Task1.10 meters/secondStandard Deviation 0.004
Other Pre-specified

Sudomotor Function

Sudomotor function will be measured by electrical sweat conductance (ESC), as expressed in microSiemens (µS).

Time frame: at baseline, this is a single visit study expected to last one hour

ArmMeasureValue (MEAN)Dispersion
Standard InnersoleSudomotor Function70.15 µSStandard Deviation 11.43
Diabetic Foot OrthoticSudomotor Function70.15 µSStandard Deviation 11.43

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026