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Mechano-acoustic sensing of physiological processes and body motions via a soft wireless device placed at the suprasternal notch.

Publication ,  Journal Article
Lee, K; Ni, X; Lee, JY; Arafa, H; Pe, DJ; Xu, S; Avila, R; Irie, M; Lee, JH; Easterlin, RL; Kim, DH; Chung, HU; Olabisi, OO; Getaneh, S ...
Published in: Nature biomedical engineering
February 2020

Skin-mounted soft electronics that incorporate high-bandwidth triaxial accelerometers can capture broad classes of physiologically relevant information, including mechano-acoustic signatures of underlying body processes (such as those measured by a stethoscope) and precision kinematics of core-body motions. Here, we describe a wireless device designed to be conformally placed on the suprasternal notch for the continuous measurement of mechano-acoustic signals, from subtle vibrations of the skin at accelerations of around 10-3 m s-2 to large motions of the entire body at about 10 m s-2, and at frequencies up to around 800 Hz. Because the measurements are a complex superposition of signals that arise from locomotion, body orientation, swallowing, respiration, cardiac activity, vocal-fold vibrations and other sources, we exploited frequency-domain analysis and machine learning to obtain-from human subjects during natural daily activities and exercise-real-time recordings of heart rate, respiration rate, energy intensity and other essential vital signs, as well as talking time and cadence, swallow counts and patterns, and other unconventional biomarkers. We also used the device in sleep laboratories and validated the measurements using polysomnography.

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Published In

Nature biomedical engineering

DOI

EISSN

2157-846X

ISSN

2157-846X

Publication Date

February 2020

Volume

4

Issue

2

Start / End Page

148 / 158

Related Subject Headings

  • Wireless Technology
  • Vibration
  • Sleep
  • Skin Physiological Phenomena
  • Signal Processing, Computer-Assisted
  • Physiological Phenomena
  • Monitoring, Physiologic
  • Humans
  • Exercise
  • Equipment Design
 

Citation

APA
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Lee, K., Ni, X., Lee, J. Y., Arafa, H., Pe, D. J., Xu, S., … Rogers, J. A. (2020). Mechano-acoustic sensing of physiological processes and body motions via a soft wireless device placed at the suprasternal notch. Nature Biomedical Engineering, 4(2), 148–158. https://doi.org/10.1038/s41551-019-0480-6
Lee, KunHyuck, Xiaoyue Ni, Jong Yoon Lee, Hany Arafa, David J. Pe, Shuai Xu, Raudel Avila, et al. “Mechano-acoustic sensing of physiological processes and body motions via a soft wireless device placed at the suprasternal notch.Nature Biomedical Engineering 4, no. 2 (February 2020): 148–58. https://doi.org/10.1038/s41551-019-0480-6.
Lee K, Ni X, Lee JY, Arafa H, Pe DJ, Xu S, et al. Mechano-acoustic sensing of physiological processes and body motions via a soft wireless device placed at the suprasternal notch. Nature biomedical engineering. 2020 Feb;4(2):148–58.
Lee, KunHyuck, et al. “Mechano-acoustic sensing of physiological processes and body motions via a soft wireless device placed at the suprasternal notch.Nature Biomedical Engineering, vol. 4, no. 2, Feb. 2020, pp. 148–58. Epmc, doi:10.1038/s41551-019-0480-6.
Lee K, Ni X, Lee JY, Arafa H, Pe DJ, Xu S, Avila R, Irie M, Lee JH, Easterlin RL, Kim DH, Chung HU, Olabisi OO, Getaneh S, Chung E, Hill M, Bell J, Jang H, Liu C, Park JB, Kim J, Kim SB, Mehta S, Pharr M, Tzavelis A, Reeder JT, Huang I, Deng Y, Xie Z, Davies CR, Huang Y, Rogers JA. Mechano-acoustic sensing of physiological processes and body motions via a soft wireless device placed at the suprasternal notch. Nature biomedical engineering. 2020 Feb;4(2):148–158.

Published In

Nature biomedical engineering

DOI

EISSN

2157-846X

ISSN

2157-846X

Publication Date

February 2020

Volume

4

Issue

2

Start / End Page

148 / 158

Related Subject Headings

  • Wireless Technology
  • Vibration
  • Sleep
  • Skin Physiological Phenomena
  • Signal Processing, Computer-Assisted
  • Physiological Phenomena
  • Monitoring, Physiologic
  • Humans
  • Exercise
  • Equipment Design