Journal of Engineering and Applied Sciences

Year: 2019
Volume: 14
Issue: 20
Page No. 7636 - 7646

Design and Implementation of an Efficient Bio-Implantable Planar Spiral Stacked Coil

Authors : Saad Mutashar and Ahmed S. Ezzulddin

References

Abbas, S.M., M.A. Hannan, S.A. Samad and A. Hussain, 2013. Design of spiral circular coils in wet and dry tissue for Bio-implanted micro-system applications. Prog. Electromagnet. Res. M, 32: 181-200.
Direct Link  |  

Ahmadi, M.M. and G.A. Jullien, 2009. A wireless-implantable microsystem for continuous blood glucose monitoring. IEEE. Trans. Biomed. Circuits Syst., 3: 169-180.
CrossRef  |  PubMed  |  Direct Link  |  

Andia, L., R.F. Xue, K.W. Cheng and M. Je, 2011. Closed loop wireless power transmission for implantable medical devices. Proceedings of the 2011 International Symposium on Integrated Circuits, December 12-14, 2011, IEEE, Singapore, ISBN:978-1-61284-863-1, pp: 404-407.

Anonymous, 1993. Understanding the fcc regulations for low-power, non-licensed transmitters. Federal Communications Commission Office of Engineering and Technology, Washington, DC., USA., https://docplayer.net/95050-Understanding-the-fcc-regulations-for-low-power-non-licensed-transmitters.html

Ashoori, E., F. Asgarian, A.M. Sodagar and E. Yoon, 2011. Design of double layer printed spiral coils for wirelessly-powered biomedical implants. Proceedings of the 2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society, August 30-September 3, 2011, IEEE, Boston, Massachusetts, USA., ISBN:978-1-4244-4121-1, pp: 2882-2885.

Bahl, I.J., 2003. Lumped Elements for RF and Microwave Circuits. Artech House, Norwood, Massachusetts, USA., Pages: 464.

Hannan, M.A., S. Mutashar, S.A. Samad and A. Hussain, 2014. Energy harvesting for the implantable biomedical devices: Issues and challenges. BioMed. Eng. OnLine, Vol. 13.

Jow, U.M. and M. Ghovanloo, 2007. Design and optimization of printed spiral coils for efficient transcutaneous inductive power transmission. IEEE. Trans. Biomed. Circuits Syst., 1: 193-202.
CrossRef  |  PubMed  |  Direct Link  |  

Jow, U.M. and M. Ghovanloo, 2008. Optimization of a multiband wireless link for neuroprosthetic implantable devices. Proceedings of the 2008 IEEE International Conference on Biomedical Circuits and Systems, November 20-22, 2008, IEEE, Baltimore, Maryland, USA., ISBN:978-1-4244-2878-6, pp: 97-100.

Jow, U.M. and M. Ghovanloo, 2009. Modeling and optimization of printed spiral coils in air, saline and muscle tissue environments. IEEE. Trans. Biomed. Circuits Syst., 3: 339-347.
CrossRef  |  PubMed  |  Direct Link  |  

Medhurst, R.G., 1947. HF resistance and self-capacitance of single-layer solenoids. Wirel. Eng., 24: 35-43.
Direct Link  |  

Mutashar, S. and M.A. Hannan, 2013. [Efficient low-power recovery circuits for bio-implanted micro-sensors (In Polish)]. Electrotechnical Rev. ERJ., 89: 15-18.
Direct Link  |  

Raju, S., R. Wu, M. Chan and C.P. Yue, 2014. Modeling of mutual coupling between planar inductors in wireless power applications. IEEE. Trans. Power Electron., 29: 481-490.
CrossRef  |  Direct Link  |  

Stocklin, S., T. Volk, A. Yousaf, J. Albesa and L. Reindl, 2015. Efficient inductive powering of brain implanted sensors. Proceedings of the 2015 International Symposium on IEEE Sensors Applications (SAS), April 13-15, 2015, IEEE, Zadar, Croatia, pp: 1-6.

Wu, W. and Q. Fang, 2011. Design and simulation of printed spiral coil used in wireless power transmission systems for implant medical devices. Proceedings of the 2011 IEEE Annual International Conference on Engineering in Medicine and Biology Society, August 30-September 3, 2011, IEEE, Boston, Massachusetts, USA., ISBN:978-1-4244-4121-1, pp: 4018-4021.

Yang, C.L., C.K. Chang, S.Y. Lee, S.J. Chang and L.Y. Chiou, 2017. Efficient four-coil wireless power transfer for deep brain stimulation. IEEE Trans. Microwave Theory Tech., 65: 2496-2507.
CrossRef  |  Direct Link  |  

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved