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Personalized foot orthoses with embedded temperature sensing: Proof of concept and relationship with activity

Lookup NU author(s): Dr Javier Munguia Valenzuela, Professor Kenneth Dalgarno

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Abstract

Plantar foot surface temperature has been identified as a clinically relevant physiological variable. Embedding sensors in foot orthoses (FOs) may allow long term monitoring of these temperatures, with compliance via the detection of periods of activity being a potential clinical utilization. This study aimed to test novel designs for FOs with embedded sensing that were produced via additive manufacturing and determine if foot temperature measurements could be used to detect periods of increased activity. FOs with embedded temperature sensors were developed and tested in 10 healthy participants over four day wear periods. Activity monitoring was used to estimate energy expenditure during testing. A threshold-based algorithm was developed to identify time periods of high activity from foot temperature data. Group differences in estimated energy expenditure between time periods below and above the threshold were significant in both the training and validation sets (p <0.001). Significant differences were also seen at individual participant level (p <0.001 in all cases). These results demonstrate the feasibility of using FOs with embedded sensing to monitor plantar surface foot temperatures during normal daily activities and for extended periods and show that periods of increased activity can be identified using foot temperature data. (C) 2013 IPEM. Published by Elsevier Ltd. All rights reserved.


Publication metadata

Author(s): Dalgarno K; Munguia J; Telfer S; Pallari J; Steultjens M; Woodburn J

Publication type: Article

Publication status: Published

Journal: Medical Engineering & Physics

Year: 2014

Volume: 36

Issue: 1

Pages: 9-15

Print publication date: 01/01/2014

Online publication date: 24/08/2013

Acceptance date: 04/08/2013

ISSN (print): 1350-4533

ISSN (electronic): 1873-4030

Publisher: Elsevier

URL: http://dx.doi.org/10.1016/j.medengphy.2013.08.002

DOI: 10.1016/j.medengphy.2013.08.002


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