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An Inductively Powered Implantable Blood Flow Sensor Microsystem for Vascular Grafts

IEEE transactions on bio-medical engineering, v.59 no.9, 2012년, pp.2466 - 2475  

Cheong, Jia Hao (Institute of Microelectronics , Agency for Science, Technology and Research, Singapore) ,  Lim, Li Shiah (Institute of Microelectronics , Agency for Science, Technology and Research, Singapore) ,  He, Cairan (Institute of Microelectronics , Agency for Science, Technology and Research, Singapore) ,  Singh, Pushpapraj (Institute of Microelectronics , Agency for Science, Technology and Research, Singapore) ,  Park, Woo-Tae (Institute of Microelectronics , Agency for Science, Technology and Research (A*STAR), Singapore) ,  Je, Minkyu (Institute of Microelectronics , A*STAR, Singapore) ,  Ng, Simon Sheung Yan (Institute of Microelectronics , Agency for Science, Technology and Research, Singapore) ,  Liu, Xin (Institute of Microelectronics , Agency for Science, Technology and Research, Singapore) ,  Xue, Rui-Feng (Institute of Microelectronics , Agency for Science, Technology and Research, Singapore) ,  Lim, Huey Jen (Institute of Microelectronics , Agency for Science, Technology and Research, Singapore) ,  Khannur, Pradeep Basappa (Institute of Microelectronics , Agency for Science, Technology and Research, Singapore) ,  Chan, Kok Lim (Institute of Microelectronics , A*STAR, Singapore) ,  Lee, Andreas Astuti ,  Kang, Kai

Abstract AI-Helper 아이콘AI-Helper

Monitoring blood flow rate inside prosthetic vascular grafts enables an early detection of the graft degradation, followed by the timely intervention and prevention of the graft failure. This paper presents an inductively powered implantable blood flow sensor microsystem with bidirectional telemetry...

참고문헌 (15)

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  8. Proc IEEE Asian Solid-State Circuits Conf Dig Tech Papers A 21.6μW inductively powered implantable IC for blood flow measurement khannur 2010 

  9. Lou, Liang, Zhang, Songsong, Park, Woo-Tae, Tsai, J M, Kwong, Dim-Lee, Lee, Chengkuo. Optimization of NEMS pressure sensors with a multilayered diaphragm using silicon nanowires as piezoresistive sensing elements. Journal of micromechanics and microengineering.: structures, devices, and systems, vol.22, no.5, 055012-.

  10. Singh, Pushpapraj, Park, Woo-Tae, Miao, Jianmin, Shao, Lichun, Krishna Kotlanka, Rama, Kwong, Dim-Lee. Tunable piezoresistance and noise in gate-all-around nanowire field-effect-transistor. Applied physics letters, vol.100, no.6, 063106-.

  11. 10.1109/IEMBS.1997.756835 

  12. Singh, Pushpapraj, Miao, Jianmin, Park, Woo-Tae, Kwong, Dim-Lee. Gate-bias-controlled sensitivity and SNR enhancement in a nanowire FET pressure sensor. Journal of micromechanics and microengineering.: structures, devices, and systems, vol.21, no.10, 105007-.

  13. White, John J., Ram, Sunanda J., Jones, Steven A., Schwab, Steve J., Paulson, William D.. Influence of Luminal Diameters on Flow Surveillance of Hemodialysis Grafts : Insights from a Mathematical Model. Clinical journal of the American Society of Nephrology, vol.1, no.5, 972-978.

  14. 10.1109/IEMBS.2005.1615732 

  15. Kotani, K., Sasaki, A., Ito, T.. High-Efficiency Differential-Drive CMOS Rectifier for UHF RFIDs. IEEE journal of solid-state circuits, vol.44, no.11, 3011-3018.

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