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Low-Cost Sensors and Biological Signals

Low-Cost Sensors and Biological Signals

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Many sensors are currently available at prices lower than USD 100 and cover a wide range of biological signals: motion, muscle activity, heart rate, etc. Such low-cost sensors have metrological features allowing them to be used in everyday life and clinical applications, where gold-standard material is both too expensive and time-consuming to be used. The selected papers present current applications of low-cost sensors in domains such as physiotherapy, rehabilitation, and affective technologies. The results cover various aspects of low-cost sensor technology from hardware design to software optimization.

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Keywords

  • accuracy
  • actigraphy
  • actuation
  • affective technologies
  • Baduanjin
  • biosensing
  • Characterization
  • Compensation
  • concurrent validity
  • Data fusion
  • design toolkits
  • E-Health
  • ecological research
  • eye tracker
  • feasibility
  • force sensitive resistors
  • functional calibration
  • Gait
  • gait analysis
  • head motion measurement
  • head rotation
  • Heart Rate
  • Human-computer interaction
  • IMU
  • inertial measurement unit (IMU)
  • inertial sensor
  • inertial sensor measurement systems
  • inertial sensors
  • Interaction design
  • jumping
  • Kinect
  • kinematics
  • low power
  • MARG
  • motion accuracy
  • Motion Capture
  • motion sensing
  • motor variability
  • n/a
  • outcome assessment
  • photoplethysmography
  • physical education
  • physical rehabilitation
  • Physiotherapy
  • piezoelectric sensors
  • PPG
  • reaching
  • Rehabilitation
  • Reliability
  • self-contained
  • sensor calibration
  • serious videogames
  • smart insole
  • somaesthetics
  • state of the art
  • Technology, engineering, agriculture
  • Technology: general issues
  • telerehabilitation
  • time-domain
  • triaxial accelerometers
  • trunk
  • upper extremity
  • upper limbs
  • validity
  • vertical ground reaction forces
  • video motion capture
  • Wearable Device
  • wearable electronic devices
  • wireless charging
  • wireless connectivity

Links

DOI: 10.3390/books978-3-0365-0843-6

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