參考文獻 |
[1] B. Hodes, and T. Starner, “Introduction to Wearable Computing” Proc. of the 7th international Symposium of IEEE Comp. Soc. on Wearable Computers, NY, USA, October 2003. (http://www.cc.gatech.edu/ccg/iswc03/iswc2003-intro-tutorial.pdf)
[2] T. G. Zimmerman, “Personal Area Network: Near-Field Intra-Body Communication,” IBM System Journal, Vol. 35, No. 3&4, pp.609-617, 1996.
[3] PHM – Personal Health Monitoring. Universität Karlsruhe, Institut für Technik der Informationsverarbeitung (ITIV).
[4] MIThril. MIT Media Lab. (http://www.media.mit.edu/wearables/mithril/)
[5] Sensatex. Sensatex Inc. (http://www.sensatex.com)
[6] T. Zimmerman, “Wireless Networked Digital Devices: A New Paradigm for Computing and Communication”. IBM Systems Journal. Vol. 38, No. 4, pp. 566 – 574, 1999. (http://www.research.ibm.com/journal/sj/384/zimmerman.pdf)
[7] E. Rehmi Post et al, “Intra-body bus for data and power” Proc. of the 1st international Symposium of IEEE Comp. Soc. on Wearable Computers, Washington D. C., USA, pp. 52-55, 1997.
[8] Y. H. Tseng, C. C. Su, and CN. J. Liu, “Analysis and Design of Wide-Band Digital Transmission in an Electrostatic-Coupling Intra-Body Communication System,” IEICE Trans. Comm., Vol. E92-B, No. 11, pp. 3557-3563, Nov. 2009.
[9] T. Handa, S. Shoji, S. Ike, S. Takeda and T. Sekiguchi, “A Very Low-Power Comsumption Wireless ECG Monitoring System Using Body as a Signal Transmission Medium,” 5th Int. Conf. Solid-State Sens. Actuat. Microsystems, Chicago, USA, pp.1003-1006, June 1997.
[10] J. A. Ruiz and S. Shimatoto, “Experimental Evaluation of Body Channel Response and Digital Modulation Schemes for Intra-Body communication,” IEEE Int. Conf. Com., Vol. 1, pp. 349-354, June 2006.
[11] J. A. Ruiz and S. Shimatoto, “Novel Communication Services Based on Human Body and Environment Interaction: Application inside Trains and Applications for Handi-capped People,” IEEE Int. Conf. Com., Vol. 1, pp. 2240-2245, June 2006.
[12] K. Hachisuka, A. Nakata, T, Takeda, Y. Terauchi, K. Shiba, K. Sasaki, H. Hosaka and K. Itao, “Development and Performance Analysis of an Intra-body Communication Device,” Tech. Digest, 12th Int. Conf. Solid-State Sens. Actuat. Microsystems, Boston, MA, USA, pp.1722-1725, June 2003.
[13] K. Hachisuka, Y. Terauchi, Y. Kishi, T. Hirota, K. Sasaki, H. Hosaka, and K. Ito, “Simplified Circuit Modeling and Fabrication of Intra-body Communication Devices,” Tech. Digest, 13th Int. Conf. Solid-State Sens. Actuat. Microsystems, Seoul, Korea, pp.461-464, June 2005.
[14] J. A. Ruiz and S. Shimatoto, “A Study on the Transmission Characteristic of the Human Body towards Broadband Intra-Body Communications,” Proc. of the 9th Int. Symposium on Consumer Electronics, Macau, PRC, pp. 99-104, June 2005.
[15] K. Ito, K. Fujii, “Development and Investigation of the Transmission Mechanism of the Wearable Devices Using the Human Body as a Transmission Channel,” IEEE Interna-tional Workshop of Antenna Technology Small Antennas and Novel Metamaterials, pp.140-143, March 2006.
[16] M. Shinagawa, M. Fukumoto, K. Ochiai, and H. Kyuragi, “A Near-Field-Sensing Transceiver for Intra-body Communication Based on the Electro-optic Effect,” IEEE Trans. Instrumentation and Measurement, Vol. 53, No. 6, pp. 1533-1538, December 2004.
[17] Seong-Jun Song, Namjun Cho, Hoi-Jun Yoo, “A 0.2-mW 2-Mb/s Digital Transceiver Based on Wideband Signaling for Human Body Communications,” IEEE Journal of Solid-State Circuit, Vol. 42, Issue 9, pp. 2021-2033, Sept. 2007.
[18] J. G. Webster, “Medical Instrumentation: Application and Design,” Wiley, 1998.
[19] N. V. Thakor and J. G. Webster, “Ground-free ECG Recording with two Electrodes,” IEEE Trans. Biomed. Eng., Vol. 12, pp. 699-704, Dec. 1980.
[20] B. B. Winter and J.G. Webster, “Reduction of Interference due to Common Mode Voltage in Biopotential Amplifiers,” IEEE Trans. Biomed. Eng., Vol. 1, No. 1, pp. 58-62, Jan. 1983.
[21] D. C. Barber and B. H. Brown, “Review Article: Applied Potential Tomography,” J. Phys. E., Vol. 12, pp. 443-448, 1984.
[22] INTERNATIONAL ELECTROTECHNICAL COMMISSION. Medical Electrical Equipment—Part 1: General Requirements for Safety, 2nd ed. IEC 601-1. Geneva: IEC, 1988.A.
[23] ASSOCIATION FOR THE ADVANCEMENT OF MEDICAL INSTRUMENTATION. Safe Current Limits for Electromedical Apparatus. ANSI/AAMI ES1—1985. Arlington (Vir.): AAMI, 1985. ISBN 0-910275-50-5.
[24] World Health Organization, “Electromagnetic Fields (300Hz to 300GHz),” 1993,www.inchem.org/documents/ehc/ehc/ehc137.htm
[25] J. Rosell, J. Colominas, P. Riu, R. Pallas, and J. G. Webster, “Skin Impedance from 1 Hz to 1 MHz,” IEEE Trans. Biomed. Eng., Vol. 35, No. 8, pp.649-651, August 1988.
[26] D. Panescu, K. P. Cohen, J. G.Webster, and R. A. Stratbucker, “The Mosaic Electrical Characteristics of the Skin,” IEEE Trans. Biomed. Eng., Vol. 40, No. 5, pp.434-439, May 1993.
[27] R. P. Areny, and J. G. Webster, “Bioelectric Impedance Measurements Using Synchronous Sampling,” IEEE Trans. Biomed. Eng., Vol. 40, No. 8, pp.824-829, August 1993.
[28] Y. Yamamoto, and T. Nakamura, “Consideration of Conditions Required for Multi-Channel Simultaneous Bioimpedance Measurement,” IEEE Instrumentation and Measurement Technology Conference, St. Paul, Minesota, USA, pp.18-20, May 1996.
[29] J. J. Huang, K. S. Cheng, and C. J. Peng, “Temperature-Compensated Bioimpedance System for Estimating Body Composition,” IEEE Engineering in Medicine and Biology, pp.66-73, November/December 2000.
[30] Y. Yamamoto, H. Isshiki, and T. Nakamura, “Instantaneous Measurement of Electrical Parameters in a Palm during Electrodermal Activity,” IEEE Trans. Instrumentation and Measurement. Eng., Vol. 45, No. 2, pp.483-487, April 1996.
[31] S. J. Dorgan, and R. B. Reilly, “A Model for Human Skin Impedance during Surface Functional Neuromuscular Stimulation,” IEEE Trans. Rehabilitation. Eng., Vol. 7, No. 3, pp.341-348, September 1999.
[32] A. F. Coston, and J. K. Li, “Transdermal Drug Delivery: A Comparative Analysis of Skin Impedance Models and Parameters,” Proc. of the 25th Annual International Conference of IEEE EMBS, Cancun, Mexico, pp.17-21, September 2003.
[33] H. Kanai, M. Haeno, and K. Sakamoto, “Electrical Measurement of Fluid Distribution in Legs and Arms,” Med. Prog. Tech.12: pp.159-170, 1987.
[34] H. Kanai, I. Chatterjee, and O. P. Gandhi, “Human Body Impedance for Electromagnetic Hazard Analysis in the VLF to MF Band,” IEEE Trans. Microwave Theory and Techniques, Vol. MTT-32, No. 8, pp.763-771, August 1984.
[35] J. G. Webster, “Electrical Impedance Tomography,” Adam Hilger, New York (1989).
[36] K. Fujii, K. Ito, and S. Tajima, “A Study on the Calculation Model for Signal Distribution of Wearable Devices using Human Body as a Transmission Channel,” IEICE Trans. Comm, Vol. J87-B, No.9, pp.1383-1390, September 2004.
[37] K. Fujii, M. Takahashi, K. Ito, K. Hachisuka, Y.Kishi, and K. Sasaki, “ A Study on the Transmission Mechanism for Wearable Device using the Human Body as a Transmis-sion Channel,” IEICE Trans. Comm, Vol. E88-B, No. 6, pp. 2401-2410, 2005.
[38] IEC (International Electrotechnical Commission), “IEC 61000 ED. 1.2: Electromagnetic compatibility (EMC) - Part 4-2: Testing and measurement techniques – Electrostatic discharge immunity test,” 2001.
[39] C. Su, and Y. T. Chen, “Intrinsic Response Extraction for the Removal of the Parasitic Effects in Analog Test Buses,” IEEE Trans. Computer-Aided Design of Integrated Circuits and System, Vol. 19, No. 4, April, pp.437-445, 2000.
[40] N. Cho, J. Yoo, SJ. Song, J. Lee, S. Jeon, HJ. Yoo, “The Human Body Characteristics as a Signal Transmission Medium for Intrabody Communication” IEEE Trans. Microwave and Techniques, Vol.55, No.5, pp.1-7, May 2007.
[41] Y. H. Tseng, C. C. Su, CN. J. Liu, “Measuring the Transmission Characteristic of the Human Body in an Electrostatic-Coupling Intra Body Communication System using a Square Test Stimulus” IEICE Trans. Fundamentals of Electronics, Communica-tions and Computer Sciences, Vol. E93-A, No.3, pp.664-668, Mar 2010.
[42] Y. H. Tseng, C. C. Su, CN. J. Liu, “Measuring and Evaluating the Bioelectri-cal Impedance of the Human Body Using Deconvolution of a Square Waveform” IEICE Trans. Information and Systems, Vol.E93-D, No.6, pp.-, June 2010.
[43] W. L. Tseng, M. S. Nakhla, Y. H. Tseng, CN. J. Liu, and C. C. Su, "Passive model order reduction algorithm for linear time-delay systems," The 16th VLSI Design/CAD Symposium, Hualien, Taiwan, August 2005.
[44] Y. H. Tseng, and C. C. Su, " A New Approach to Model and Measure Transmission Characteristic of the Human Body channel in Electro-Static Coupling Intra Body Communication system," The 19th VLSI Design/CAD Symposium, Kenting, Taiwan, August 2008.
[45] P. Blyth, “Converter Address Medical Equipment Compliance,” Power Electronic Technology, pp.38-41, March 2006.
[46] Tyson, J. HowStuffWorks “How Virtual Private Networks Work”. HowStuffWorks. Inc.. (http://computer.howstuffworks.com/vpn.ht)
[47] IBM ARC: User – Personal Area Networks. IBM Corporation. (http://www.almaden.ib m.com/cs/user/pan/pan.html)
[48] M. Shawibold, M. Gmelin, G. V. Wagner, J. Schöchlin, and A. Bolz. “Key Factors for Personal Health Monitoring and Diagnosis Devices”. Forschungszentrum Informatik (FZI). (www.mocomed.org/workshop2002/beitraege/Schwaibold.pdf)
[49] The Official Wireless Bluetooth Info Site. Bluetooth. (http://www.bluetooth.com)
[50] T. H. Bullock, “Electroreception,” Ann. Rev. Neuroscience, Vol. 5, pp. 121-170, 1982.
[51] T. Zimmerman, J.R. Smith, J.A. Paradiso, D. Allport, N. Gershenfeld, ”Applying Electric Field Sensing to Human-Computer Interfaces,” CHI'95 Human Factors in Computing Systems, Denver, ACM Press, May 1995.
[52] D. A. Weston, “Electromagnetic Compatibility,” Marcel Dekker Publishers, New York, pp. 36, 1991.
[53] “Texas Instruments, Operational Amplifiers and Comparators,” Data Book, Texas Instruments, Dallas, Texas, Vol. A, pp. 2-369, 1995.
[54] W. Stalling, “Networking Standards,” Addison-Wesley Publishing, Massachusetts, pp. 23-26, 1993.
[55] J. R. Smith, “Towards Electric Field Imaging,” MS Thesis, MIT Media Lab, 1995.
[56] O. Shivers, “BodyTalk and the BodyNet: A Personal Information Infrastructure,” Personal Information Architecture Note 1, MIT Laboratory for Computer Science, Dec. 1993.
[57] S. Ramo, J. R. Whinnery, T. Van Duzer, “Fields and Waves in Communication Electronics,” Third Edition, John Wiley and Sons, New York, 1994.
[58] K. Pahlavan, T. H. Probert, M. E. Chase, “Trends in Local Wireless Networks,” IEEE Communications Magazine, pp. 88-95, March 1995.
[59] N. Gershenfeld, T. Zimmerman, D. Allport, “Non-Contact System For Sensing and Signaling by Externally Induced Intra-Body Currents,” US Patent Application, May 8, 1995.
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