• DocumentCode
    741781
  • Title

    Monte-Carlo Simulation and Automated Test Bench for Developing a Multichannel NIR-Based Vital-Signs Monitor

  • Author

    Bruser, Christoph ; Strutz, Nils ; Winter, Stefan ; Leonhardt, Steffen ; Walter, Marian

  • Author_Institution
    Dept. of Med. Inf. Technol., RWTH Aachen Univ., Aachen, Germany
  • Volume
    9
  • Issue
    3
  • fYear
    2015
  • fDate
    6/1/2015 12:00:00 AM
  • Firstpage
    421
  • Lastpage
    430
  • Abstract
    Unobtrusive, long-term monitoring of cardiac (and respiratory) rhythms using only non-invasive vibration sensors mounted in beds promises to unlock new applications in home and low acuity monitoring. This paper presents a novel concept for such a system based on an array of near infrared (NIR) sensors placed underneath a regular bed mattress. We focus on modeling and analyzing the underlying technical measurement principle with the help of a 2D model of a polyurethane foam mattress and Monte-Carlo simulations of the opto-mechanical interaction responsible for signal genesis. Furthermore, a test rig to automatically and repeatably impress mechanical vibrations onto a mattress is introduced and used to identify the properties of a prototype implementation of the proposed measurement principle. Results show that NIR-based sensing is capable of registering miniscule deformations of the mattress with a high spatial specificity. As a final outlook, proof-of-concept measurements with the sensor array are presented which demonstrate that cardiorespiratory movements of the body can be detected and that automatic heart rate estimation at competitive error levels is feasible with the proposed approach.
  • Keywords
    Monte Carlo methods; bioelectric potentials; cardiovascular system; electrocardiography; infrared detectors; lung; medical signal detection; medical signal processing; pneumodynamics; 2D polyurethane foam mattress model; Monte-Carlo simulation; automated test bench; automatic heart rate estimation; cardiac rhythm monitoring; cardiorespiratory movement detection; miniscule deformation registration; multichannel NIR-based vital-sign monitor; near infrared sensor array; noninvasive vibration sensors; opto-mechanical interaction; respiratory rhythm monitoring; Force; Light emitting diodes; Monte Carlo methods; Optical sensors; Photonics; Sensor systems; Ballistocardiography (BCG); Monte-Carlo simulations; mechanocardiograpy (MCG); near infrared (NIR); seismocardiography (SCG); sensor array;
  • fLanguage
    English
  • Journal_Title
    Biomedical Circuits and Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1932-4545
  • Type

    jour

  • DOI
    10.1109/TBCAS.2014.2340703
  • Filename
    6891334