Monitoring respiratory rates with a wearable system using a stretchable strain sensor during moderate exercise.

Respiratory rate, a sensitive indicator of respiratory status, is rarely measured during the field walking test. Our objective was to develop and validate a non-invasive, wearable monitoring system using stretchable strain sensors and an accompanying algorithm capable of providing real-time measurem...

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Publicado en:Medical & Biological Engineering & Computing Vol. 57; no. 12; pp. 2741 - 2757
Autores principales: Yamamoto, Akio, Nakamoto, Hiroyuki, Bessho, Yusuke, Watanabe, Yu, Oki, Yutaro, Ono, Kumiko, Fujimoto, Yukari, Terada, Tsutomu, Ishikawa, Akira
Formato: Journal Article
Publicado: Springer Nature Dec2019
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Dec2019
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        10.1007/s11517-019-02062-2
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        atl: Monitoring respiratory rates with a wearable system using a stretchable strain sensor during moderate exercise.
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        au:
          Yamamoto, Akio
          Nakamoto, Hiroyuki
          Bessho, Yusuke
          Watanabe, Yu
          Oki, Yutaro
          Ono, Kumiko
          Fujimoto, Yukari
          Terada, Tsutomu
          Ishikawa, Akira
        affil: Department of Community Health Sciences, Graduate School of Health Sciences, Kobe University, 7-10-2 Tomogaoka, Suma-ku, 654-0142, Kobe-si, Hyogo, Japan
      sug:
        subj:
          Monitoring, Physiologic Equipment and Supplies
          Monitoring, Physiologic Methods
          Exercise
          Respiratory Rate Physiology
          Walking Physiology
          Respiration
          Adult
          Male
          Female
          Heart Rate Physiology
          Young Adult
          Exercise of Self-Care Agency Scale
          Scales
          Adult: 19-44 years
          Male
          Female
      ab: Respiratory rate, a sensitive indicator of respiratory status, is rarely measured during the field walking test. Our objective was to develop and validate a non-invasive, wearable monitoring system using stretchable strain sensors and an accompanying algorithm capable of providing real-time measurements of respiration during exercise. Twenty-four healthy volunteers wore stretchable sensors during a walking test protocol that included standing, sitting, walking, and walking with a stick. Sensors were placed on the ribcage and abdomen. The Bland-Altman method was used to assess the accuracy and precision of breath counts; total respiration time and inspiration time ratio were determined by custom algorithms and compared with measurements obtained with the standard flow sensor. The output signal from the stretchable sensor was highly synchronized with flow signals. The limits of agreement were within 3 breaths/min throughout the test protocol. Differences between sensors for total respiration time and inspiration time ratio were less than 14% and 26%, respectively. The agreement was maintained regardless of respiratory rate or volume. The wearable respiratory monitoring system yielded accurate and precise breath counts and total duration of respiratory cycle during moderate exercise in healthy young individuals, suggesting that it might be useful in clinical practice. Graphical abstract.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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