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Footwear and insole design features for offloading the diabetic at risk foot—A systematic review and meta‐analyses
Author(s) -
Collings Richard,
Freeman Jennifer,
Latour Jos M.,
Paton Joanne
Publication year - 2021
Publication title -
endocrinology, diabetes and metabolism
Language(s) - English
Resource type - Journals
ISSN - 2398-9238
DOI - 10.1002/edm2.132
Subject(s) - medicine , diabetic foot , meta analysis , foot (prosody) , forefoot , randomized controlled trial , cohort study , cohort , physical therapy , physical medicine and rehabilitation , surgery , diabetes mellitus , complication , endocrinology , linguistics , philosophy
The aim of this systematic review was to identify the best footwear and insole design features for offloading the plantar surface of the foot to prevent foot ulceration in people with diabetic peripheral neuropathy. We searched multiple databases for published and unpublished studies reporting offloading footwear and insoles for people with diabetic neuropathy and nonulcerated feet. Primary outcome was foot ulcer incidence; other outcome measures considered were any standardized kinetic or kinematic measure indicating loading or offloading the plantar foot. Fifty‐four studies, including randomized controlled studies, cohort studies, case‐series, and a case‐controlled and cross‐sectional study were included. Three meta‐analyses were conducted and random‐effects modelling found peak plantar pressure reduction of arch profile (37 kPa (MD, −37.5; 95% CI, −72.29 to −3.61; P  < .03), metatarsal addition (35.96 kPa (MD, −35.96; 95% CI, −57.33 to −14.60; P  < .001) and pressure informed design 75.4 kPa (MD, −75.4 kPa; 95% CI, −127.4 to −23.44 kPa; P  < .004).The remaining data were presented in a narrative form due to heterogeneity. This review highlights the difficulty in differentiating the effect of different insole and footwear features in offloading the neuropathic diabetic foot. However, arch profiles, metatarsal additions and apertures are effective in reducing plantar pressure. The use of pressure analysis to enhance the effectiveness of the design of footwear and insoles, particularly through modification, is recommended.

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