Have a personal or library account? Click to login
Neural network based identification of hysteresis in human meridian systems Cover

Neural network based identification of hysteresis in human meridian systems

By: Yonghong Tan,  Ruili Dong,  Hui Chen and  Hong He  
Open Access
|Sep 2012

References

  1. Ahn, C., Colbert, A.P., Anderson, B.J., Martinsen, O.G., Hammerschlag, R., Cina, S., Wayne, P.M and Langevin, H.M. (2008). Electrical properties of acupuncture points and meridians: A systematic review, Bioelectromagnetics 29(4): 245-256.10.1002/bem.20403
  2. Dong, R. and Tan, Y. (2009). Modeling hysteresis in piezoceramic actuators using modified Prandtl-Ishlinskii model, Physica B 404(8-11): 1336-1342.10.1016/j.physb.2008.12.024
  3. Ge, P. and Jouaneh, M. (1995). Modeling hysteresis in piezoceramic actuators, Precision Engineering 17(3): 211-221.10.1016/0141-6359(95)00002-U
  4. Huang, G. Zhu, Q. and Siew, C. (2006). Extreme learning machine: Theory and application, Neurocomputing 70: 489-501.10.1016/j.neucom.2005.12.126
  5. Huang, G. and Chen, L. (2007). Convex incremental extreme learning machine, Neurocomputing 70(16-18): 3056-3062.10.1016/j.neucom.2007.02.009
  6. Hu, H. and Mrad, R. (2003). On the classical Preisach model for hysteresis in piezoceramic actuators, Mechatronics 13(2): 85-94.10.1016/S0957-4158(01)00043-5
  7. Macki, J.W., Nistri and Zecca, P. (1993). Mathematical models for hysteresis, SIMAC Review 35(1): 94-123.10.1137/1035005
  8. Trentini, F.J., Thompson, B. and Erlichman, J.S. (2005). The antinociceptive effect of acupressure in rats, The American Journal of Chinese Medicine 33(1): 143-150.10.1142/S0192415X0500274615844842
  9. Tsuei, J.J. (1998). A modern interpretation of acupuncture and the meridian system, 2nd International Conference on Bioelectromagnetism,Melbourn, Australia, pp. 177-182.
  10. Wang, Z., Tan, Y. and Su, M. (2009). Modeling of meridian channels, Proceedings of the International Conference on Biomedical Electronics and Devices, Porto, Portugal, pp. 167-172.
  11. Yang, H. (1997). The research and application of the dynamic testing system for point skin resistance, Journal of Biomedical Engineering 16(1): 41-50.
  12. Yamamoto, Y. and Yamamoto, T. (1979). Dynamic system for the measurement of electrical skin impedance, Medical and Biological Engineering and Computing 17(1): 135-137.10.1007/BF02440969312376
  13. Zhao, X. and Tan, Y. (2006). Neural network based identification of Preisach-type hysteresis in piezoelectric actuator using hysteretic operator, Sensors and Actuators A 126(2): 306-311.10.1016/j.sna.2005.10.023
  14. Zhao, X. and Tan, Y. (2008). Modeling hysteresis and its inverse model using neural networks based on expanded input space method, IEEE Transactions on Control Systems Technology 16(3): 484-490.10.1109/TCST.2007.906274
  15. Zhang,W., Xu, R. and Zhu, Z. (1999). The influence of acupuncture on the impedance measured by four electrodes on meridians, Acupuncture & Electro-Therapeutics Research 24(3-4): 181-188.10.3727/03601299981635627310768415
DOI: https://doi.org/10.2478/v10006-012-0051-4 | Journal eISSN: 2083-8492 | Journal ISSN: 1641-876X
Language: English
Page range: 685 - 694
Published on: Sep 28, 2012
Published by: University of Zielona Góra
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2012 Yonghong Tan, Ruili Dong, Hui Chen, Hong He, published by University of Zielona Góra
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.