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Original Articles

A LONG-RANGE, IMPLANTABLE TELEMETRY SYSTEM FOR CHRONIC NEURAL RECORDING

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Pages 1-17 | Published online: 08 Feb 2013

REFERENCES

  • Donaldson , N. ; Zhou , L. ; Perkins , T. A. ; Munih , M. ; Haugland , M. Implantable telemeter for long-term electroneurographic recordings in animals and humans . J. Med. Biol. Eng. Comput. 2003 , 41 , 654 – 664 .
  • Atluri , S. ; Ghovanloo , M. Design of a wideband power-efficient inductive wireless link for implantable biomedical devices using multiple carriers. In Proc. of 2nd International IEEE EMBS Conf. Neural Eng.; 2005, March 16–19, pp. 533–537 .
  • Liang , C.-K. ; Chen , J. J. ; Chung , C. L. ; Cheng , C.-L. An implantable bi-directional wireless transmission system for transcutaneous biological signal recording. J. Physiol. Meas. 2005, 26, 83–97.
  • Harrison , R. R. ; Watkins , P. T. ; Kier , R. J. A. Low-power integrated circuit for a wireless 100-electrode neural recording system . IEEE J. Solid-State Circuits 2007 , 42 , 123 – 133 .
  • Neihart , N. M. ; Harrison , R. R. Micropower circuits for bidirectional wireless telemetry in neural recording applications . IEEE Trans. Biomed. Eng. 2005 , 52 , 1950 – 1959 .
  • Mohseni , P. ; Najafi , K. ; Eliades , S. J. Wireless multichannel biopotential recording using an integrated FM telemetry circuit . IEEE Trans. Neural Syst. Rehabil. Eng. 2005 , 13 , 263 – 271 .
  • Obeid , I. ; Nicolelis , M. ; Wolf , P. D. A multichannel telemetry system for single unit neural recordings . J. Neurosci. Methods 2004 , 133 , 33 – 38 .
  • Lenaert , B. ; Puers , R. Omnidirectional Inductive Powering for Biomedical Implants ; Springer, Science & Business Media B.V. , Netherlands , 2009 .
  • Ziaie , B. ; Rose , S. C. ; Nardin , M. A self-oscillating detuning-insensitive class-E transmitter for implantable microsystems . IEEE Trans. Biomed. Eng. 2001 , 8 , 397 – 400 .
  • Hampson , R. ; Collins , V. ; Deadwyler , S. A wireless recording system that utilizes bluetooth technology to transmit neural activity in freely moving animals . J. Neurosci. Methods 2009 , 182 , 195 – 204 .
  • Greenwald , E. ; Mollazadeh , M. ; Thakor , N. ; Wei , T. ; Culurciello , E. A VLSI neural monitoring system with ultra-wideband telemetry for awake behaving subjects. In Proceedings of the IEEE International Symposium on Circuits and Systems (ISCAS); 2010, May 30–June 2, pp. 1193–1196.
  • Rizk , M. ; Bossettil , C. A. ; Jochum , T. A. ; Callender , S. H. A fully implantable 96-channel neural data acquisition system . J. Neural Eng. 2009 , 6 , 1 – 14 .
  • Seydnejad , S. ; Samani , M. M. An implantable telemetry system for long-term biosignal recording. In Proceedings of the IEEE Instrumentation and Measurement Technology Conference (I2MTC); 2010, May 3–6, pp. 867–870 .
  • Shire , D. B. ; Kelly , S. K. ; Chen , J. ; Doyle , P. Development and implantation of a minimally invasive wireless subretinal neurostimulator . IEEE Trans. Biomed. Eng. 2009 , 56 , 2502 – 2511 .
  • Chow , E. Y. ; Chlebowski , A. L. ; Chakraborty , S. ; Chappell , W. Fully wireless implantable cardiovascular pressure monitor integrated with a medical stent . IEEE Trans. Biomed. Eng. 2010 , 57 , 1487 – 1496 .
  • Sample , A. P. ; Yeager , D. J. ; Powledge , P. S. ; Smith , J. R. Design of an RFID-based battery-free programmable sensing platform . IEEE Trans. Instrum. Meas. 2008 , 57 , 2608 – 2615 .
  • Hung , C.-C. ; Chung , C.-L. Packaging design for implantable microstimulator . J. Med. Biol. Eng. 2003 , 23 , 129 – 136 .
  • Craciun , S. ; Cheney , D. ; Gugel , K. ; Sanchez , J. C. Wireless transmission of neural signals using entropy and mutual information compression . IEEE Trans. Neural Syst. Rehabil. Eng. 2011 , 19 , 35 – 44 .
  • Bonfantia , A. ; Zambra , G. ; Baranauskasb , G. ; Angotzib , G. N. A wireless microsystem with digital data compression for neural spike recording Microelectron. Eng. 2011 , 88 , 1672 – 1675 .

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