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Template-Based Respiratory Monitoring and Tidal Volume Estimation

  • Hoang Vu Huy
  • , Kevin Albert
  • , Srinivasan Ramachandran
  • , Philippe Jouvet
  • , Rita Noumeir
  • École de technologie supérieure
  • Centre Hospitalier de L'Universite de Montreal
  • University of Petroleum and Energy Studies

Research output: Contribution to journalJournal Articlepeer-review

1 Citation (Scopus)

Abstract

Vision-based monitoring has gained attention as a non-invasive alternative to conventional contact-based methods in intensive care units (ICUs). While prior studies highlight its potential for respiratory monitoring, the approach remains nascent, with challenges such as heuristically defined respiratory-relevant regions. This lack of anatomically consistent definitions can undermine the reliability of volume estimation techniques. Typically, patient-specific calibration data are required to address this limitation, yet such data are frequently unavailable in practical settings. In this study, we introduce a novel method for modeling the torso region to enable precise respiratory monitoring and volume estimation. Using a Kinect camera, we capture the patient's body surface, which is then aligned and registered with a standardized human template for consistent segmentation of the respiration-relevant region. Subsequently, an efficient and accurate volume computation algorithm extracts respiratory parameters and monitors tidal volume. We validated our approach on a cohort of volunteers, benchmarking it against gold-standard spirometry and expert annotations. Overall, the proposed method achieves over 90% accuracy in tidal volume estimation and 95% accuracy in respiratory rate estimation, without relying on patient-specific calibration. These results demonstrate its robustness and suitability for ICU respiratory monitoring.

Original languageEnglish
Pages (from-to)7093-7106
Number of pages14
JournalIEEE Journal of Biomedical and Health Informatics
Volume30
Issue number8
DOIs
Publication statusPublished - 1 Aug 2026

!!!Keywords

  • Biomedical monitoring
  • chest surface reconstruction
  • kinect analysis
  • noninvasive diagnosis
  • spirometry
  • tidal volume estimation

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