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Smart Insoles for Improving Sensation, Balance and Mobility in People with Diabetic Peripheral Neuropathy. (Pathfeel)

W

Walk With Path

Status

Completed

Conditions

Unsteadiness
Diabetes Mellitus
Diabetic Neuropathies

Treatments

Device: Vibration off
Device: Vibration on

Study type

Interventional

Funder types

Other
Industry

Identifiers

Details and patient eligibility

About

The long-term effects of vibrating insoles on improving gait, balance and peripheral sensation in people with diabetic peripheral neuropathy remain unknown. The Pathfeel Clinical Trial will investigate the efficacy of vibratory insoles worn for ten days for enhancing sensory perception, gait quality, balance and physical activity in people with mild to severe diabetic neuropathy. The primary outcome will be changes in gait speed and postural and dynamic balance.

Full description

The Path Feel Clinical Trial will investigate the efficacy of foot sole vibration applied for 10 days during daily life for improving peripheral sensation, balance and mobility in people with diabetic peripheral neuropathy.

Twenty-two people with mild to severe diabetic neuropathy will perform a prospective comparison where they wear an insole system over the course of two interventional periods of 10 days each in a randomised, cross-over design, during which there will be a period where the device provides vibrational stimuli, vs a control condition where the device is worn, but provides no stimuli. Any changes in activity levels, peripheral sensation, quality of life and balance control will be compared between each condition to determine the longer-term effects of foot sole vibration.

Each participant will undertake four study visits with periods of device use between them. Participants will complete a set of questionnaires that will assess quality of life (NeuroQoL) and fear of falling (FES-I). Measurements of the level of peripheral neuropathy will be taken at both feet using non-invasive methods, including a neurothesiometer (i.e., Vibration Perception Threshold) and a composite score (i.e., modified Neuropathy Disability Score). Gait, postural and dynamic balance during daily activities, including walking, stair walking will be assessed through a combination of 3D Motion Capture system and force platforms. Changes in physical activity will be quantified by accelerometry.

Enrollment

19 patients

Sex

All

Ages

18 to 85 years old

Volunteers

No Healthy Volunteers

Inclusion criteria

  • Diagnosis of diabetes type 1 or 2
  • ≥1 palpable foot pulses
  • Presence of mild to moderate diabetic peripheral neuropathy defined by a vibration perception threshold ≥15 Volts and/or mNDS score ≥3.
  • Aged ≥ 18 years
  • Ability to walk unaided for 30 steps
  • Able to understand the study requirements
  • Ability to check their feet regularly (or have another person check).
  • Able to read the study documents
  • Fit shoe size EU 36-47.5 / UK 3.5-13.

Exclusion criteria

• Active foot ulcer

  • Lower limb amputation (anything more than amputation of two lesser toes)
  • Presence of Charcot deformity
  • Dementia or other cognitive impairment
  • Significant cardiopulmonary or other systemic disease limiting the patient's ability to walk 30 steps.
  • Person's with bodyweight greater than 130kg (due to insole device limitations)
  • Presence of implantable neurostimulators
  • Presence of a pacemaker.

Trial design

Primary purpose

Other

Allocation

Randomized

Interventional model

Crossover Assignment

Masking

Single Blind

19 participants in 2 patient groups, including a placebo group

Vibration
Active Comparator group
Description:
Insoles with vibration
Treatment:
Device: Vibration on
No Vibration
Placebo Comparator group
Description:
Insoles without vibration
Treatment:
Device: Vibration off

Trial contacts and locations

1

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Data sourced from clinicaltrials.gov

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