DocumentCode
1380036
Title
In-Shoe Plantar Pressure Measurement and Analysis System Based on Fabric Pressure Sensing Array
Author
Shu, Lin ; Hua, Tao ; Wang, Yangyong ; Li, Qiao ; Feng, David Dagan ; Tao, Xiaoming
Author_Institution
Inst. of Textiles & Clothing, Hong Kong Polytech. Univ., Kowloon, China
Volume
14
Issue
3
fYear
2010
fDate
5/1/2010 12:00:00 AM
Firstpage
767
Lastpage
775
Abstract
Spatial and temporal plantar pressure distributions are important and useful measures in footwear evaluation, athletic training, clinical gait analysis, and pathology foot diagnosis. However, present plantar pressure measurement and analysis systems are more or less uncomfortable to wear and expensive. This paper presents an in-shoe plantar pressure measurement and analysis system based on a textile fabric sensor array, which is soft, light, and has a high-pressure sensitivity and a long service life. The sensors are connected with a soft polymeric board through conductive yarns and integrated into an insole. A stable data acquisition system interfaces with the insole, wirelessly transmits the acquired data to remote receiver through Bluetooth path. Three configuration modes are incorporated to gain connection with desktop, laptop, or smart phone, which can be configured to comfortably work in research laboratories, clinics, sport ground, and other outdoor environments. A real-time display and analysis software is presented to calculate parameters such as mean pressure, peak pressure, center of pressure (COP), and shift speed of COP. Experimental results show that this system has stable performance in both static and dynamic measurements.
Keywords
biomedical communication; footwear; gait analysis; skin; viscoelasticity; wireless sensor networks; analysis software; data acquisition system; fabric pressure sensing array; foot skin; high-pressure sensitivity; plantar pressure; soft polymeric board; textile fabric sensor array; wireless communication; Fabric pressure sensor array; plantar pressure; wireless communication; Adult; Biomechanics; Foot; Humans; Humidity; Male; Middle Aged; Monitoring, Ambulatory; Pressure; Reproducibility of Results; Shoes; Signal Processing, Computer-Assisted; Software; Telemetry; Temperature; Textiles;
fLanguage
English
Journal_Title
Information Technology in Biomedicine, IEEE Transactions on
Publisher
ieee
ISSN
1089-7771
Type
jour
DOI
10.1109/TITB.2009.2038904
Filename
5378500
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