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PUBLICATION LIST_S.-W. Chen

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Publication List

☀ Refereed Papers (Selected)

  1. H.-L. Chan, Y. Ouyang, C.-C. Lai, M.-A. Lin, Y.-J. Chang, S.-W. Chen, J.-W. Liaw, L.-F. Meng*, “Event-related brain potentials reveal enhancing and compensatory mechanisms during dual neurocognitive and cycling tasks,” BMC Sports Science, Medicine and Rehabilitation, 15:133 (15 pages), Oct 2023. (SCI, IF=1.9, Ranking: 37/68, REHABILITATION)
  2. Y. -H. Chen, C. -W. Lu*, S. -W. Chen*, M. -H. Tsai, S. -Y. Lin and R. -S. Chen, “VLSI implementation of QRS complex detector based on wavelet decomposition,” IEEE Access, doi: 10.1109/ACCESS.2022.3231267, Dec. 2022. (SCI, IF=3.9, Ranking: 100/275, ENGINEERING, ELECTRICAL & ELECTRONIC)
  3. Y.-H. Chen, S.-W. Chen*, P.-J. Chang, H.-T. Hua, S.-Y. Lin, R.-S. Chen, “A VLSI chip for the abnormal heart beat detection using convolutional neural network. Sensors, Sensors 22, 796, Jan. 2022. (SCI, IF=3.9, Ranking: 19/63, INSTRUMENTS & INSTRUMENTATION)
  4. M.-A. Lin, L.-F. Meng, Y. Ouyang, H.-L. Chan*, Y.-J. Chang*, S.-W. Chen, J.-W. Liaw, “Resistance-induced brain activity changes during cycle ergometer exercises,” BMC Sports Science, Medicine and Rehabilitation, 13:27 (13 pages), Mar 2021. (SCI, IF=1.9, Ranking: 37/68, REHABILITATION)
  5. Y. H. Chen, S.-W. Chen*, M.-X. Wei, “A VLSI Implementation of Independent Component Analysis for Biomedical Signal Separation Using CORDIC Engine,” IEEE Transactions on Biomedical Circuits and Systems, 14:2, pp. 373-381, Apr 2020. (SCI, IF=5.1, Ranking: 68/275, ENGINEERING, ELECTRICAL & ELECTRONIC)
  6. G. Kuo, S.-W. Chen, J.-Y. Huang, C.-Y. Wu, C.-M. Fu, C.-H. Chang, S.-H. Liu, Y.-H. Chan, I-W. Wu, H.-Y. Yang*, “Short-term heart rate variability as a predictor of long-term survival in patients with chronic hemodialysis: A prospective cohort study,” Journal of the Formosan Medical Association, 117:12, pp. 1058-1064, Dec 2018. (SCI, IF=3.2, Ranking: 72/169, MEDICINE, GENERAL & INTERNAL)
  7. Y. H. Chen, S.-W. Chen*, Y. Juan, “Very-large-scale integration implementation of the integral pulse frequency modulation model for spectral estimation of heart rate variability,” Electronics Letters, 54:23, pp. 1313-1314, Nov 2018. (SCI, IF=1.1, Ranking: 242/275, ENGINEERING, ELECTRICAL & ELECTRONIC)
  8. J. M. Yang*, J.-H. Yang, S.-C. Tsou, C.-H. Ding, C.-C. Hsu, K.-C. Yang, C.-C. Yang, K.-S. Chen, S.-W. Chen, J.-S. Wang, “Cell proliferation on PVA/sodium alginate and PVA/poly (γ-glutamic acid) electrospun fiber,” Materials Science and Engineering C, 66, pp. 170-177, Sep 2016. (SCI, IF=7.9, Ranking: 9/45, MATERIALS SCIENCE, BIOMATERIALS)
  9. J. M. Yang*, S.-W. Chen*, J.-H. Yang, C.-C. Hsu, J.-S. Wang, “A quantitative cell modeling and wound-healing analysis based on the Electric Cell-substrate Impedance Sensing (ECIS) method,” Computers in Biology and Medicine, 69, pp. 134-143, Feb 2016. (SCI, IF=7.7, Ranking: 4/55, MATHEMATICAL & COMPUTATIONAL BIOLOGY)
  10. S.-W. Chen*, Y.-H. Chen, “Hardware design and implementation of a wavelet de-noising procedure for medical signal preprocessing,” Sensors, 15, pp. 26396-26414. Oct 2015. (SCI, IF=3.9, Ranking: 19/63, INSTRUMENTS & INSTRUMENTATION)
  11. S.-W. Chen*, J.-W. Liaw*, Y.-J. Chang, H.-L. Chan, L.-Y. Chiu, “A cycling movement based system for real-time muscle fatigue and cardiac stress monitoring and analysis,” PLoS One, 10(6): e0130798 (17 pages), Jun 2015. (SCI, IF=3.7, Ranking: 26/73, MULTIDISCIPLINARY SCIENCES)
  12. S.-W. Chen*, J.-W. Liaw, Y.-J. Chang, L.-L. Chuang, C.-T. Chien, “Combined heart rate variability and dynamic measures for quantitatively characterizing the cardiac stress status during cycling exercise,” Computers in Biology and Medicine, 63, pp. 133-142, Aug 2015. (SCI, IF=7.7, Ranking: 4/55, MATHEMATICAL & COMPUTATIONAL BIOLOGY)
  13. S.-W. Chen*, and Y.-C. Lai, “A signal-processing-based technique for P300 evoked potential detection with the applications into automated character recognition,” EURASIP Journal on Advances in Signal Processing, 2014:152 (10 pages), Oct 2014. (SCI, IF=1.759, Ranking: 199/276, ENGINEERING, ELECTRICAL & ELECTRONIC)
  14. S.-W. Chen, J.-W. Liaw*, H.-L. Chan, Y.-J. Chang, C.-H. Ku, “A real-time fatigue monitoring and analysis system for lower extremity muscles with cycling movement,” Sensors, 14, pp. 12410-12424, Jul 2014. (SCI, IF=3.9, Ranking: 19/63, INSTRUMENTS & INSTRUMENTATION)
  15. S.-W. Chen*, S.-C. Chao, “A reweighted l1-minimization based compressed sensing for the spectral estimation of heart rate variability using the unevenly sampled data,” PLoS One, 9(6): e99098 (12 pages), Jun 2014. (SCI, IF=3.7, Ranking: 26/73, MULTIDISCIPLINARY SCIENCES)
  16. S.-W. Chen* and S.-C. Chao, “Compressed sensing technology based spectral estimation of heart rate variability using the integral pulse frequency modulation model,” IEEE Journal of Biomedical and Health Informatics, 18:3, pp. 1081-1090, May 2014. (SCI, IF=7.7, Ranking: 4/55, MATHEMATICAL & COMPUTATIONAL BIOLOGY)
  17. S.-W. Chen, J.-M. Yang*, J.-H. Yang, S. J. Yang, and J.-S. Wang, “A computational modeling and analysis in cell biological dynamics using Electric Cell-substrate Impedance Sensing (ECIS),” Biosensors and Bioelectronics, 33, pp. 196–203, Mar 2012. (SCI, IF=12.6, Ranking: 2/86, CHEMISTRY, ANALYTICAL)
  18. S.-W. Chen* and C.-Y. Chu, “A comparison of 3D cone-beam Computed Tomography (CT) image reconstruction performance on homogeneous multi-core processor and on other processors,” Measurement, 44, pp. 2035–2042, Aug 2011. (SCI, IF=5.6, Ranking: 9/63, INSTRUMENTS & INSTRUMENTATION)
  19. H.-L. Chan*, Y.-C. Siao, S.-W. Chen, and S.-F. Yu, “Wavelet-based ECG compression by bit-field preserving and running length encoding,” Computer Methods and Programs in Biomedicine, 90, pp. 1-8, Apr 2008. (SCI, IF=6.1, Ranking: 15/111, COMPUTER SCIENCE, THEORY & METHODS)
  20. S.-W. Chen*, “A nonlinear trimmed moving averaging-based system with its application to real-time QRS beat classification,” Journal of Medical Engineering and Technology, 31:6, pp. 443-449, Nov/Dec 2007. (EI)
  21. S.-W. Chen*, “A new algorithm developed based on a mixture of spectral and nonlinear techniques for the analysis of heart rate variability,” Journal of Medical Engineering and Technology, 31:3, pp. 210-219, May/Jun 2007. (EI)
  22. S.-W. Chen*, “Complexity measure based sequential hypothesis testing for real-time detection of lethal cardiac arrhythmias,” EURASIP Journal on Advances in Signal Processing, 2007:20957 (8 pages), 2007. (SCI, IF=1.9, Ranking: 193/275, ENGINEERING, ELECTRICAL & ELECTRONIC)
  23. S.-W. Chen*, H.-C. Chen and H.-L. Chan, “A real-time QRS detection method based on moving-averaging incorporating with wavelet denoising,” Computer Methods and Programs in Biomedicine, 82, pp. 187-195, Jun 2006. (SCI, IF=6.1, Ranking: 15/111, COMPUTER SCIENCE, THEORY & METHODS)
  24. H.-L. Chan*, W.-S. Chou, S.-W. Chen, S.-C. Fang, C.-S. Liou and Y.-S. Hwang, “Continuous and online analysis of heart rate variability,” Journal of Medical Engineering and Technology, vol. 29, no. 5, pp. 227-234, Sep/Oct 2005. (EI)
  25. S.-W. Chen*, “A wavelet-based heart rate variability analysis for the study of nonsustained ventricular tachycardia,” IEEE Transactions on Biomedical Engineering, 49:7, pp. 736-742, Jul 2002. (SCI, IF=4.6, Ranking: 34/96, ENGINEERING, BIOMEDICAL)
  26. S.-W. Chen*, “A two stage discrimination of cardiac arrhythmias using a total least squares-based Prony modeling algorithm,” IEEE Transactions on Biomedical Engineering, 47:10, pp.1317-1327, Oct 2000. (SCI, IF=4.6, Ranking: 34/96, ENGINEERING, BIOMEDICAL)
  27. S.-W. Chen*, “A study of the relationship between autonomic functions and precipitation of nonsustained ventricular tachycardia using a novel wavelet-based heart rate variability analysis,” The Journal of China Association for Medical Informatics, 10, pp. 41-57, Dec 1999
  28. S.-W. Chen*, P. M. Clarkson and Q. Fan, “A robust sequential detection algorithm for cardiac arrhythmia classification,” IEEE Transactions on Biomedical Engineering, 43:11, pp. 1120-1125, Nov 1996. (SCI, IF=4.6, Ranking: 34/96, ENGINEERING, BIOMEDICAL)

☀ Conference Papers (Selected)

  1. S.-W. Chen, Y.-H. Lin and M. Tu, “An Image Processing-Based Motion Tracking System for Real-Time Velocity Evaluation in Microfluidic Flow Monitoring,” in IEEE Proceedings of the 41st Annual International Conference of the IEEE EMBS, 2019 (41st Annual International Conference of the IEEE EMBS, 23–27 Jul 2019, Berlin, Germany)
  2. S.-W. Chen, J.-W. Liaw and B. Chang, “Heart rate dynamics with the applications into a quantitative evaluation of improvements on cardiac stress endurance after high intensity interval training in healthy men,” 2017 Computing in Cardiology (CinC), Rennes, 2017, pp. 1–4. DOI: 10.22489/CinC.2017.147-470.
  3. S.-W. Chen, S.-C. Chao, and H.-Y. Teng, “A reweighted l1-minimization based compressed sensing method with the applications into heart rate variability spectral estimation of unevenly sampled data,” in Proceedings of 2013 BMES Annual Meeting, 2013 (2013 BMES Annual Meeting, Seattle, Washington USA, 25–28 Sep 2013).
  4. H.-L. Chan, M.-H. Hsu, W.-Y. Hsu, W.-K. Hsu, S.-W. Chen, “Integrating physical activity detection in heart rate variability and cardiac arrhythmia analysis,” in Proc. of the 9th International Conference on Information, Communications and Signal Processing (ICICS 2013), pp. 1–3, Dec 2013.
  5. S.-W. Chen, and S.-C. Chao, “Compressed sensing for Integral Pulse Frequency Modulation (IPFM)-based heart rate variability spectral estimation,” in IEEE Proceedings of the 34th Annual International Conference of the IEEE EMBS, pp. 5626–5629, 2012 (34th Annual International Conference of the IEEE EMBS, 28 Aug–1 Sep 2012, San Diego, CA USA).
  6. C.-H. Lu, T.-F. Lee, S.-W. Chen, S.-Y. Lin, C.-C. Tuan, “Evaluation of the opposition ability for hand intrinsic damage using a simple selfconstructing electromyography,” in Proc. of the 2012 6th International Conference on Genetic and Evolutionary Computing (ICGEC 2012), pp. 229–232, Aug 2012.
  7. J.-M. Yang, S.-W. Chen, J.-H. Yang, and J.-S. Wang, “Computational modeling analysis for cell growth using Electric Cell-substrate Impedance Sensing (ECIS) based time series data,” in IEEE Proceesings of the 4th International Conference on Biomedical Engineering and Informatics (BMEI), pp. 938–941, October 2011 (4th International Conference on Biomedical Engineering and Informatics, 15–17 October, 2011, Shanghai, China).
  8. S.-W. Chen and C.-Y. Chu, “Graphic Processing Unit (GPU) based hardware acceleration for high speed 3D cone-beam Computed Tomography (CT) reconstruction,” in IFMBE Proceedings, vol. 37, pp. 567–570, 2011 (5th European Conference of the International Federation for Medical and Biological Engineering, 14–18 Sep 2011, Budapest, Hungary).
  9. C.-Y. Chu and S.-W. Chen, “Parallel implementation for cone-beam based 3D Computed Tomography (CT) medical image reconstruction on multi-core processors,” in IFMBE proceedings, vol. 25/IV, pp. 2066–2069, 2009 (World Congress on Medical Physics and Biomedical Engineering, 7–12 Sep 2009, Munich, Germany).
  10. C.-C. Lin and S.-W. Chen, "Development of a multirate signal processing architecture with its applications to the SPIHT-based medical image compression," in Proceedings of Biomedical Engineering 2008 Annual Symposium (BMES 2008), page(s): 4, 12–13 Dec 2008.
  11. C.-Y. Chuang and S.-W. Chen, “Development of an embedded system based remote, multifunctional baby care module,” in Proceedings of Biomedical Engineering 2008 Annual Symposium (BMES 2008), page(s): 4, 12–13 Dec 2008.
  12. Y.-C. Lai and S.-W. Chen, “Development of a signal processing-based technique for Brain Computer Interface (BCI) system with the applications to automated character recognition,” in Proceedings of Biomedical Engineering 2008 Annual Symposium (BMES 2008), page(s): 4, 12–13 Dec 2008.
  13. C.-Y. Liao, S.-W. Feng and S.-W. Chen, “A wavelet based de-noising circuit design with its applications to medical signal preprocessing,” in Proceedings of Biomedical Engineering 2008 Annual Symposium (BMES 2008), page(s): 4, 12–13 Dec 2008.
  14. M.-Y. Huang, S.-W. Chen, P.-Y. Hsiao, and Y.-F. Chen, “A discrete wavelet transform (DWT) based denoising circuit design with its application to medical signal processing,” in Proceedings of the 2005 Workshop on Consumer Electronics and Signal Processing (WCEsp 2005), page(s): 6, Nov 2005.
  15. W.-T. Yen, P.-Y. Hsiao, S.-W. Chen, and C.-C. Tsai, “The design of multi-lamp driving system for cold cathode fluorescent lamp,” in Proceedings of the 2005 Workshop on Consumer Electronics and Signal Processing (WCEsp 2005), page(s): 6, Nov 2005.
  16. P.-Y. Hsiao, L.-T. Li, C.-H. Chen, S.-W. Chen, and S.-J. Chen, “An FPGA architecture design of parameter-adaptive real-time image processing system for edge detection,” in Proceedings of the Emerging Information Technology Conference (EITC 2005), page(s): 3, Aug 2005.
  17. S.-W. Chen and H.-C. Chen, “Damped exponential modeling for feature extraction of self-controlled brain waves,” in Proceedings of the 6th Meeting of the German Neuroscience Society and and the 30th German Neurobiology Conference, p. 33B, Feb 2005.
  18. Y.-J. Chen and S.-W. Chen, “A modified 2-D discrete wavelet transform architecture design with its applications to medical image compression,” in Proceedings of Biomedical Engineering 2003 Annual Symposium (BMES 2003), page(s): 4, 12–13 Dec 2003.
  19. C.-C. Chen and S.-W. Chen, “Design of a real-time DSP-based ventricular arrhythmia diagnostic system,” in Proceedings of Biomedical Engineering 2003 Annual Symposium (BMES 2003), page(s): 4, 12–13 Dec 2003.
  20. H.-C. Chen and S.-W. Chen, “A moving average based filtering system with its application to real-time QRS detection,” in Proceedings of the Computers in Cardiology, Los Alamitos, IEEE Computer Society Press, 30, pp. 585–588, Sep 2003.
  21. S.-W. Chen and H.-C. Chen, “Development of a real-time QRS beat classifier using a nonlinear trimmed moving averaging-based system,” in Proceedings of the Computers in Cardiology, Los Alamitos, IEEE Computer Society Press, 30, pp. 577–580, Sep 2003.
  22. S.-W. Chen, C.-C. Chen and L.-H. Chang, “A complexity-based sequential method for ventricular arrhythmia detection,” in Proceedings of the 2nd Formosa Plastic Group Symposium of Engineering Technology, 3, pp. 59–64, Nov 15, 2002.
  23. L.-H. Chang, Y.-C. Lin and S.-W. Chen, “A pattern recognition incorporating temporal and spectral features for cardiac arrhythmia detection,” in Proceedings of 2002 Medical Informatics Symposium in Taiwan (MIST2002), pp. 21–23, 3–6 Oct 2002.
  24. S.-W. Chen, C.-C. Chen and L.-H. Chang, “A complexity-based sequential method for ventricular arrhythmia detection,” in Proceedings of 2002 Medical Informatics Symposium in Taiwan (MIST2002), pp. 17–20, 3–6 Oct 2002.
  25. S.-W. Chen, “Wavelet-based heart rate variability analysis for the interpretation of the precipitation of nonsustained ventricular tachycardia,” in Proceedings of the 1st Formosa Plastic Group Symposium of Engineering Technology, page(s): 4, Jul 13, 2001.
  26. S.-W. Chen, “A study of the relationship between autonomic functions and precipitation of nonsustained ventricular tachycardia using a novel wavelet-based heart rate variability analysis,” in Proceedings of the 1999 Medical Informatics Symposium in Taiwan (MIST 99), pp. 163–168, 30–31 Oct 1999.
  27. S.-W. Chen and S. D. Nelson, “Wavelet-based sympathovagal balance marker for the short-term prediction of nonsustained ventricular tachycardia,” in Journal of Investigative Medicine, 45:7, p. 321A, Sep, 1997 (Regional Meeting of the American Federation of Clinical Research, Chicago, IL, Sep 1997).
  28. S.-W. Chen and S. D. Nelson, “Assessment of the wavelet-based method for its application to heart rate variability (HRV) analysis,” in Journal of Investigative Medicine, 45:7, p. 316A, Sep 1997 (Regional Meeting of the American Federation of Clinical Research, Chicago, IL, Sep 1997).
  29. S.-W. Chen and P. M. Clarkson, “Detection of cardiac arrhythmias using a damped exponential modeling algorithm,” in IEEE Proceedings of the 1996 International Conference on Acoustics, Speech, and Signal Processing (ICASSP 96), 3, pp. 1776–1779, Atlanta, GA, 7–10 May 1996.
  30. S.-W. Chen and P. M. Clarkson, “Cardiac arrhythmia detection using a damped exponential modeling method,” in Proceedings of Annual Conference of Engineering, p. 4, The Ohio State University, Columbus, OH, 17 May 1996.
  31. S.-W. Chen and P. M. Clarkson, “Identification of cardiac arrhythmias using a damped exponential predominant frequency algorithm,” in IEEE Proceedings of the 17th Annual International Conference of the Engineering in Medicine and Biology Society (EMBS 95), Theme 1: Cardiovascular System, pp. 181–182, Montreal, Canada, 20–23 Sep 1995.
  32. P. M. Clarkson, S.-W. Chen and Q. Fan, “A robust sequential detection algorithm for cardiac arrhythmia classification,” in IEEE Proceedings of the 1995 International Conference on Acoustics, Speech, and Signal Processing (ICASSP 95), 2, pp. 1181–1184, Detroit, MI, 9–12 May 1995.
  33. S.-W. Chen and P. M. Clarkson, “Prony residual analysis for the identification of cardiac arrhythmias,” in IEEE Proceedings of the 1995 International Conference on Acoustics, Speech, and Signal Processing (ICASSP 95), 2, pp. 1177–1180, Detroit, MI, 9–12 May 1995.
  34. S.-W. Chen, P. M. Clarkson and Q. Fan, “A sequential technique for cardiac arrhythmia discrimination,” in Journal of Electrocardiology, 28, supplement, p. 162, 1995 (International Society for Computerized Electrocardiology, Orlando, FL, Apr 1995).
  35. B. D. Jaffe, S.-W. Chen, L. C. Potter and S. D. Nelson, “Prony frequency analysis of prolonged QRS signal averaged ECGs,” Circulation Research, 41:3, p. 659A, 1993 (Regional Meeting of the American Federation of Clinical Research, Chicago, IL, Nov 1993).
  36. S.-W. Chen, B. D. Jaffe, S. D. Nelson and L. C. Potter, “Prony residual as ventricular tachycardia marker,” Circulation, 88:4, part 2, p. I–644, 1993 (66th Scientific Sessions, American Heart Association, Oct 1993).
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