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Innovation

Arduino-based noise robust online heart-rate detection

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Pages 170-178 | Received 26 Jul 2016, Accepted 06 Dec 2016, Published online: 12 Jan 2017

References

  • Karvonen J, Vuorimaa T. Heart rate and exercise intensity during sports activities. Practical application. Sports Med. 1988;5:303–311.
  • Centers for Disease Control and Prevention (CDC). State-specific mortality from sudden cardiac death–United States, 1999. MMWR. 2002;51:123.
  • Pan J, Tompkins WJ. A real-time QRS detection algorithm. IEEE Transact Biomed Eng. 1985;32:230–236.
  • Arzeno NM, Deng ZD, Poon CS. Analysis of first-derivative based QRS detection algorithms. IEEE Trans Biomed Eng. 2008;55:478–484.
  • Sun Y, Suppappola S, Wrublewski TA. Microcontroller-based real-time QRS detection. Biomed Instrum Technol. 1991;26:477–484.
  • May C, Hubing N, Hahn AW. Wavelet transforms for electrocardiogram processing. Biomed Sci Instrum. 1996;33:1–6.
  • Zidelmal Z, Amirou A, Adnane M, et al. QRS detection based on wavelet coefficients. Comput Methods Programs Biomed. 2012;107:490–496.
  • Chen SW, Chen HC, Chan HL. A real-time QRS detection method based on moving-averaging incorporating with wavelet denoising. Comput Methods Programs Biomed. 2006;82:187–195.
  • Ieong CI, Vai MI, Mak PU, et al. ECG heart beat detection via mathematical morphology and quadratic spline wavelet transform. Proc IEEE ICCE. 2011;609–610.
  • Bahoura M, Hassani M, Hubin M. DSP implementation of wavelet transform for real time ECG wave forms detection and heart rate analysis. Comput Methods Programs Biomed. 1997;52:35–44.
  • Nakano M, Konishi T, Izumi S, et al. Instantaneous Heart Rate detection using short-time autocorrelation for wearable healthcare systems. In: 2012 Annual International Conference of the IEEE Engineering in Medicine and Biology Society; 2012 Aug 28. p. 6703–6706.
  • Fujii T, Nakano M, Yamashita K, et al. Noise-tolerant instantaneous heart rate and R-peak detection using short-term autocorrelation for wearable healthcare systems. In: 2013 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC); 2013 Jul 3. p. 7330–7333.
  • Wisbeck JO, Barros AK, Ojeda RG. Application of ICA in the separation of breathing artifacts in ECG signals. In: 1998 5th International Conference on Neural Information Processing, (ICONIP '98); 1998 Oct 21–23; Kyushu, Japan. p. 211–214.
  • Berntson GG, Gary G, Stowell JR. ECG artifacts and heart period variability: don't miss a beat! Psychophysiology. 1998;35:127–132.
  • Goldberger AL, Amaral LA, Glass L, et al. Physiobank, physiotoolkit, and physionet components of a new research resource for complex physiologic signals. Circulation. 2000;101:e215–e220.
  • Moody GB, Muldrow W, Mark RG. A noise stress test for arrhythmia detectors. Comput Cardiol. 1984;11:381–384.
  • Behravan V, Glover NE, Farry R, et al. Rate-adaptive compressed-sensing and sparsity variance of biomedical signals. In: 2015 IEEE 12th International Conference on Wearable and Implantable Body Sensor Networks (BSN); 2015 Jun 9. p. 1–6.
  • Bousseljot R, Kreiseler D, Schnabel A. Nutzung der EKG-Signaldatenbank CARDIODAT der PTB über das Internet. Biomedizinische Technik. 1995;40:317. German.
  • Moody GB, Mark RG. The impact of the MIT-BIH arrhythmia database. IEEE Eng Med Biol Mag. 2001;20:45–50.

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