Logo image
A platform based foot pressure/shear sensor
Conference paper

A platform based foot pressure/shear sensor

Chun-Te Chang, Chao Shih Liu, William Soetanto and Wei-Chih Wang
Proceedings of SPIE - The International Society for Optical Engineering, Vol.8348, 83481U
2012

Abstract

Bend loss sensor Fiberoptic sensor Plantar pressure/shear sensor Shear sensor Stagger-structure sensor Electronic Optical and Magnetic Materials Condensed Matter Physics Computer Science Applications Applied Mathematics Electrical and Electronic Engineering
The proposed research is aimed at developing, fabricating and implementing a flexible fiber optic bend loss sensor for the measurement of plantar pressure and shear stress for diabetic patients. The successful development of the sensor will greatly impact the study of diabetic foot ulcers by allowing clinicians to measure a parameter (namely, shear stress) that has been implicated in ulceration, but heretofore, has not been routinely quantified on high risk patients. A full-scale foot pressure/shear sensor involves a tactile sensor array using intersecting optical waveguides is presented. The basic configuration of the optical sensor systems incorporates a mesh that is comprised of two sets of parallel optical waveguide planes; the planes are configured so the parallel rows of waveguides of the top and bottom planes are perpendicular to each other. The planes are sandwiched together creating one sensing sheet. Two-dimensional information is determined by measuring the loss of light from each of the waveguide to map the overall pressure distribution. The shifting of the layers relative to each other allows determination of the shear stress in the plane of the sensor. This paper presents latest development and improvement in the sensors design. Fabrication and results from the latest tests will be described. © 2012 SPIE.

Metrics

1 Record Views

Details

Logo image