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Creation and Analysis of a Respiratory Sensor Using the Screen-Printing Method and the Arduino Platform
by
Skrzetuska, Ewa
, Wojciechowski, Jarosław
in
Arduino
/ Body Fluids
/ Carbon
/ Commercial printing industry
/ Data Analysis
/ Deformation
/ Electric properties
/ Electrodes
/ Embedded systems
/ Humans
/ Methods
/ microcontroller
/ monitor
/ Nanotubes
/ Nanotubes, Carbon
/ Organic chemicals
/ Polymers
/ Printing industry
/ Respiration
/ Respiratory Rate
/ Sensors
/ Skin
/ T-shirt
/ textile actuator
/ Textiles
/ textronic
2023
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Creation and Analysis of a Respiratory Sensor Using the Screen-Printing Method and the Arduino Platform
by
Skrzetuska, Ewa
, Wojciechowski, Jarosław
in
Arduino
/ Body Fluids
/ Carbon
/ Commercial printing industry
/ Data Analysis
/ Deformation
/ Electric properties
/ Electrodes
/ Embedded systems
/ Humans
/ Methods
/ microcontroller
/ monitor
/ Nanotubes
/ Nanotubes, Carbon
/ Organic chemicals
/ Polymers
/ Printing industry
/ Respiration
/ Respiratory Rate
/ Sensors
/ Skin
/ T-shirt
/ textile actuator
/ Textiles
/ textronic
2023
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Do you wish to request the book?
Creation and Analysis of a Respiratory Sensor Using the Screen-Printing Method and the Arduino Platform
by
Skrzetuska, Ewa
, Wojciechowski, Jarosław
in
Arduino
/ Body Fluids
/ Carbon
/ Commercial printing industry
/ Data Analysis
/ Deformation
/ Electric properties
/ Electrodes
/ Embedded systems
/ Humans
/ Methods
/ microcontroller
/ monitor
/ Nanotubes
/ Nanotubes, Carbon
/ Organic chemicals
/ Polymers
/ Printing industry
/ Respiration
/ Respiratory Rate
/ Sensors
/ Skin
/ T-shirt
/ textile actuator
/ Textiles
/ textronic
2023
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Creation and Analysis of a Respiratory Sensor Using the Screen-Printing Method and the Arduino Platform
Journal Article
Creation and Analysis of a Respiratory Sensor Using the Screen-Printing Method and the Arduino Platform
2023
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Overview
The aim of this paper is to present novel highly sensitive and stretchable strain sensors using data analysis to report on human live parameters using the Arduino embedded system as a proof of concept in developing new and innovative solutions for health care. The article introduces the solution of textile sensor origination with electrical resistance measurement using the mobile Arduino microcontroller in the designed/elaborated textile printed sensor. The textile sensor was developed by the screen printing technique based on the water dispersion of carbon nanotubes during printing composition. By stretching and squeezing the T-shirt during breathing, the electrical resistances of the printed sensor were changed. The measured resistance corresponded to the number of breaths of the person wearing the T-shirt. The microcontroller calculated the number of breaths as a number of electrical resistance peaks, which then led to monitoring human live parameters.
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