TY - GEN
T1 - The use of an Inductive Sensor in the Assessment of Respiratory System Efficiency During Exercise - Preliminary Study
AU - Karpiel, Ilona
AU - Olesz, Kamil
AU - Mysinski, Maciej
AU - Urzeniczok, Mirella
AU - Feige, Daniel
AU - Palus, Monika
AU - Sobotnicki, Aleksander
AU - Czerw, Marek
N1 - Publisher Copyright:
© 2023 Lodz University of Technology.
PY - 2023
Y1 - 2023
N2 - Breath monitoring can be useful for athletes i.e. it can be used to control the intensity of exercise and optimize training. In some sport disciplines such as running, cycling or triathlon, controlling breathing is crucial for maintaining efficiency and achieving better results. The purpose of our research is to check whether a wearable respiratory waveform registration system can be useful for monitoring the activity and efficiency of athletes. The 6 participants took part in various exercises such as: 60-minute fitness classes on trampolines (jumping frog), running on a treadmill, squats, training with barbells, stair climber training and cycling. This measurement shows at what point the participant begins to tire, which stage of the exercise is already tiring enough for the participant, that the breathing needs to be calmed down. That System makes it easy to monitor the course of such an exercise. The device allows one to monitor breathing in real-time, verify fitness during exercise and keep track of a person's efficiency. It allows verification of a person's progress both in real-time and at any time, which can be observed by experts, personal trainers, or doctors.
AB - Breath monitoring can be useful for athletes i.e. it can be used to control the intensity of exercise and optimize training. In some sport disciplines such as running, cycling or triathlon, controlling breathing is crucial for maintaining efficiency and achieving better results. The purpose of our research is to check whether a wearable respiratory waveform registration system can be useful for monitoring the activity and efficiency of athletes. The 6 participants took part in various exercises such as: 60-minute fitness classes on trampolines (jumping frog), running on a treadmill, squats, training with barbells, stair climber training and cycling. This measurement shows at what point the participant begins to tire, which stage of the exercise is already tiring enough for the participant, that the breathing needs to be calmed down. That System makes it easy to monitor the course of such an exercise. The device allows one to monitor breathing in real-time, verify fitness during exercise and keep track of a person's efficiency. It allows verification of a person's progress both in real-time and at any time, which can be observed by experts, personal trainers, or doctors.
KW - biomedical sensors
KW - biomedical signals
KW - respiratory monitoring
KW - telemedicine
UR - https://www.scopus.com/pages/publications/85169475054
U2 - 10.23919/MIXDES58562.2023.10203257
DO - 10.23919/MIXDES58562.2023.10203257
M3 - Conference contribution
AN - SCOPUS:85169475054
T3 - Mixed Design of Integrated Circuits and System, MIXDES 2023
SP - 277
EP - 282
BT - Mixed Design of Integrated Circuits and System, MIXDES 2023
A2 - Tylman, Wojciech
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 30th International Conference on Mixed Design of Integrated Circuits and System, MIXDES 2023
Y2 - 29 June 2022 through 30 June 2022
ER -