Search Results - "Granacki, John"

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  1. 1

    A Hippocampal Cognitive Prosthesis: Multi-Input, Multi-Output Nonlinear Modeling and VLSI Implementation by Berger, Theodore W., Song, Dong, Chan, Rosa H. M., Marmarelis, Vasilis Z., LaCoss, Jeff, Wills, Jack, Hampson, Robert E., Deadwyler, Sam A., Granacki, John J.

    “…This paper describes the development of a cognitive prosthesis designed to restore the ability to form new long-term memories typically lost after damage to…”
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    Journal Article
  2. 2

    An algorithm for real-time extraction of population EPSP and population spike amplitudes from hippocampal field potential recordings by Gholmieh, Ghassan, Courellis, Spiros, Dimoka, Angelika, Wills, Jack D., LaCoss, Jeff, Granacki, John J., Marmarelis, Vasilis, Berger, Theodore

    Published in Journal of neuroscience methods (30-07-2004)
    “…A new method is presented for extracting the amplitude of excitatory post synaptic potentials (EPSPs) and spikes in real time. It includes a low pass filter…”
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    Journal Article
  3. 3

    Implementing spiking neuron model and spike-timing-dependent plasticity with generalized Laguerre-Volterra models by Dong Song, Robinson, Brian S., Granacki, John J., Berger, Theodore W.

    “…To perform large-scale simulations of the brain or build biologically-inspired cognitive architectures, it is essential to have a succinct and flexible model…”
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    Conference Proceeding Journal Article
  4. 4

    Restoring lost cognitive function by Berger, T.W., Ahuja, A., Courellis, S.H., Deadwyler, S.A., Erinjippurath, G., Gerhardt, G.A., Gholmieh, G., Granacki, J.J., Hampson, R., Min Chi Hsaio, Lacoss, J., Marmarelis, V.Z., Nasiatka, P., Srinivasan, V., Dong Song, Tanguay, A.R., Wills, J.

    “…A prosthetic device that functions in a biomimetic manner to replace information transmission between cortical brain regions is considered. In such a…”
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    Journal Article
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    Novel Charge-Metering Stimulus Amplifier for Biomimetic Implantable Prosthesis by Fang, Xiang, Wills, Jack, Granacki, John, LaCoss, Jeff, Arakelian, Artak, Weiland, James

    “…A novel charge-metering stimulus amplifier is proposed for high performance neural prosthesis stimulation. The new charge-based approach with feedback has low…”
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    Conference Proceeding
  7. 7

    CMOS 12 bits 50kS/s micropower SAR and dual-slope hybrid ADC by Xiang Fang, Srinivasan, V., Wills, J., Granacki, J., LaCoss, J., Choma, J.

    “…In this paper a 12 bits 50 kS/s micropower hybrid ADC is proposed for biomimetic microelectronic systems using 0.18 mum CMOS process. The hybrid ADC combines…”
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    Conference Proceeding
  8. 8

    A Novel Variable-Gain Micro-Power Band-Pass Auto-Zeroing CMOS Amplifier by Chan, Chiu-Hsien, Wills, Jack, LaCoss, Jeff, Granacki, John J., Choma, John

    “…A micropower, low-noise, bandpass amplifier for biomedical implants is presented. Operating at low frequency, the amplifier is fully integrated without any…”
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    Conference Proceeding
  9. 9

    The effect of register-transfer design tradeoffs on chip area and performance by Granacki, John J., Parker, Alice C.

    “…This paper describes an experiment to determine how register-transfer tradeoffs affect the resultant silicon area and performance of layouts. Six…”
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    Conference Proceeding
  10. 10

    DEFACTO: A design environment for adaptive computing technology by Bondalapati, Kiran, Diniz, Pedro, Duncan, Phillip, Granacki, John, Hall, Mary, Jain, Rajeev, Ziegler, Heidi

    Published in Lecture notes in computer science (28-10-2006)
    “…The lack of high-level design tools hampers the widespread adoption of adaptive computing systems. Application developers have to master a wide range of…”
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    Book Chapter Conference Proceeding
  11. 11

    CMOS charge-metering microstimulator for implantable prosthetic device by Xiang Fang, Wills, J., Granacki, J., LaCoss, J., Choma, J.

    “…Charge-metering microstimulator has been shown with higher charge accuracy, less charge-imbalance, and higher power efficiency than conventional current-mode…”
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    Conference Proceeding
  12. 12

    Role of the Hippocampus in Memory Formation : Restorative Encoding Memory Integration Neural Device As a Cognitive Neural Prosthesis by Berger, T. W., Dong Song, Chan, R. H. M., Dae Shin, Marmarelis, V. Z., Hampson, R. E., Sweatt, A. J., Heck, C. N., Liu, C. Y., Wills, J., LaCoss, J., Granacki, J. J., Gerhardt, G. A., Deadwyler, S. A.

    Published in IEEE pulse (01-09-2012)
    “…Remind, which stands for "restorative encoding memory integration neural device," is a Defense Advanced Research Projects Agency (DARPA)-sponsored program to…”
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    Magazine Article
  13. 13

    Implantable biomimetic microelectronic systems design by Wentai Liu, Sivaprakasam, M., Guoxing Wang, Mingcui Zhou, Granacki, J., Lacoss, J., Wills, J.

    “…In this article, design examples will be presented for a biomimetic microelectronic system for a retinal prosthesis that electrically stimulates the retinal…”
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    Journal Article
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    A micro-power low-noise auto-zeroing CMOS amplifier for cortical neural prostheses by Chiu-Hsien Chan, Wills, J., LaCoss, J., Granacki, J.J., Choma, J.

    “…A novel architecture to realize a low-power, low-noise amplifier for cortical neural prostheses is presented. The design consists of a low-noise variable gain…”
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    Conference Proceeding
  17. 17

    The ADAM Advanced Design Automation System: Overview, Planner and Natural Language Interface by Granacki, J., Knapp, D., Parker, A.

    “…This paper describes ADAM, an integrated Advanced Design AutoMation system, with focus on the knowledge-based synthesis subsystem. Working parts of this…”
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    Conference Proceeding
  18. 18

    The Effect of Register-Transfer Design Tradeoffs on Chip Area and Performance by Granacki, J.J., Parker, A.C.

    “…This paper describes an experiment to determine how register-transfer tradeoffs affect the resultant silicon area and performance of layouts. Six…”
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    Conference Proceeding
  19. 19

    The ADAM advanced design automation system: overview, planner and natural language interface by Granacki, John, Knapp, David, Parker, Alice

    “…This paper describes ADAM, an integrated Advanced Design AutoMation system, with focus on the knowledge-based synthesis subsystem. Working parts of this…”
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    Conference Proceeding
  20. 20

    Implantable biomimetic electronics as neural prostheses for lost cognitive function by Berger, T.W., Granacki, J.J., Marmarelis, V.Z., Tanguay, A.R., Deadwyler, S.A., Gerhardt, G.A.

    “…A multi-disciplinary project was described that is developing a microchip-based neural prosthetic for the hippocampus, a region of the brain responsible for…”
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    Conference Proceeding