IEEE Sensors Journal · 2017 · 32 citations · 28 references
Gait AnalysisSmart TextileWearable SystemEngineeringWarp-knitted TextileMechanical EngineeringWearable TechnologyWearable SensorsBiomedical EngineeringSport TrainingJoint MovementsKinesiologySoft RoboticsCharacterization ProcedureKinematicsRehabilitation EngineeringHealth SciencesMaterials ScienceTextile TestingTextile StructureWearable ElectronicsStructural Health MonitoringTextile FibreMotor Rehabilitation SessionsHuman MovementComfortable Wearable GoniometerWearable Sensor
Long-term and minimally invasive joint angular measurements are required for monitoring everyday activities, motor rehabilitation sessions, and sport training. In this paper, we designed an innovative wearable device composed of a light, comfortable, and low-cost textile strain-resistance sensor. First, we proposed a methodology to characterize and to calibrate a commercial knitted textile. This characterization procedure represents an interesting result per se. It has been conducted on a single material, but its general characteristics make it suitable for analyzing the behavior of any conductive and stretchable fabrics. Second, we developed a wearable sensor (a goniometer) and we validated it using the humanoid robot SABIAN. Dynamic tests demonstrated that our wearable device is suitable for scenarios, where the accuracy of measurements is less relevant than the ability to continuously track joint movements in a not-obtrusive way.
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A stretchable carbon nanotube strain sensor for human-motion detection
Takeo Yamada, Yuhei Hayamizu, Yuki Yamamoto et al. · Nature Nanotechnology · 2011 · 3.2K citations
Sensor for Measuring Strain in Textile
Corinne Mattmann, Frank Clemens, Gerhard Tröster · Sensors · 2008 · 455 citations · Full text