DocumentCode
1158829
Title
Strain sensing fabric for hand posture and gesture monitoring
Author
Lorussi, Federico ; Scilingo, Enzo Pasquale ; Tesconi, Mario ; Tognetti, Alessandro ; Rossi, Danilo De
Author_Institution
Interdepartmental Res. Center "E. Piaggio", Univ. of Pisa, Italy
Volume
9
Issue
3
fYear
2005
Firstpage
372
Lastpage
381
Abstract
In this paper, we report on a new technology used to implement strain sensors to be integrated in usual garments. A particular conductive mixture based on commercial products is realized and directly spread over a piece of fabric, which shows, after the treatment, piezoresistive properties, i.e., a change in resistance when it is strained. This property is exploited to realize sensorized garments such as gloves, leotards, and seat covers capable of reconstructing and monitoring body shape, posture, and gesture. In general, this technology is a good candidate for adherent wearable systems with excellent mechanical coupling with body surface. Here, we mainly focused on a sensorized glove able to detect posture and movements of the fingers. It could be used in several fields of application. We report on experimental results of a sensorized glove used as movements recorder for rehabilitation therapies and medicine. Furthermore, we describe a dedicated methodology used to read the output sensors which allowed to avoid using metallic wires for the connections. The price to be paid for all these advantages is a nonlinear electric response of the fabric sensor and a too long settling time, that in principle, make these sensors not suitable for real-time applications. Here we propose a hardware and computational solution to overcome this limitation.
Keywords
biomechanics; biomedical transducers; fabrics; patient monitoring; patient rehabilitation; piezoresistance; strain sensors; biomechanics; body shape monitoring; finger movement; gesture monitoring; gloves; hand posture monitoring; leotards; metallic wire; piezoresistive properties; rehabilitation therapy; seat covers; sensorized garment; strain sensing fabric; Biomedical monitoring; Capacitive sensors; Clothing; Fabrics; Fingers; Immune system; Piezoresistance; Shape; Surface reconstruction; Surface resistance; Biomechanics; fabric sensor; sensorized glove; Clothing; Computer-Aided Design; Equipment Design; Equipment Failure Analysis; Gestures; Hand; Humans; Materials Testing; Monitoring, Ambulatory; Posture; Stress, Mechanical; Textiles; Transducers; User-Computer Interface;
fLanguage
English
Journal_Title
Information Technology in Biomedicine, IEEE Transactions on
Publisher
ieee
ISSN
1089-7771
Type
jour
DOI
10.1109/TITB.2005.854510
Filename
1504807
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