Literature DB >> 26738108

An implantable 64-channel neural interface with reconfigurable recording and stimulation.

Jesse J Wheeler, Keith Baldwin, Alex Kindle, Daniel Guyon, Brian Nugent, Carlos Segura, John Rodriguez, Andrew Czarnecki, Hailey J Dispirito, John Lachapelle, Philip D Parks, James Moran, Alik S Widge, Darin D Dougherty, Emad N Eskandar.   

Abstract

Next generation implantable medical devices will have the potential to provide more precise and effective therapies through adaptive closed-loop controllers that combine sensing and stimulation across larger numbers of electrode channels. A major challenge in the design of such devices is balancing increased functionality and channel counts with the miniaturization required for implantation within small anatomical spaces. Customized therapies will require adaptive systems capable of tuning which channels are sensed and stimulated to overcome variability in patient-specific needs, surgical placement of electrodes, and chronic physiological responses. In order to address these challenges, we have designed a miniaturized implantable fully-reconfigurable front-end system that is integrated into the distal end of an 8-wire lead, enabling up to 64 electrodes to be dynamically configured for sensing and stimulation. Full reconfigurability is enabled by two custom 32×2 cross-point switch (CPS) matrix ASICs which can route any electrode to either an amplifier with reprogrammable bandwidth and integrated ADC or to one of two independent stimulation channels that can be driven through the lead. The 8-wire circuit includes a digital interface for robust communication as well as a charge-balanced powering scheme for enhanced safety. The system is encased in a hermetic package designed to fit within a 14 mm bur-hole in the skull for neuromodulation of the brain, but could easily be adapted to enhance therapies across a broad spectrum of applications.

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Year:  2015        PMID: 26738108     DOI: 10.1109/EMBC.2015.7320208

Source DB:  PubMed          Journal:  Conf Proc IEEE Eng Med Biol Soc        ISSN: 1557-170X


  5 in total

1.  A modular, closed-loop platform for intracranial stimulation in people with neurological disorders.

Authors:  Anish A Sarma; Britni Crocker; Sydney S Cash; Wilson Truccolo
Journal:  Conf Proc IEEE Eng Med Biol Soc       Date:  2016-08

Review 2.  Closed-loop neuromodulation systems: next-generation treatments for psychiatric illness.

Authors:  Meng-Chen Lo; Alik S Widge
Journal:  Int Rev Psychiatry       Date:  2017-02-10

3.  Charting the road forward in psychiatric neurosurgery: proceedings of the 2016 American Society for Stereotactic and Functional Neurosurgery workshop on neuromodulation for psychiatric disorders.

Authors:  Ausaf A Bari; Charles B Mikell; Aviva Abosch; Sharona Ben-Haim; Robert J Buchanan; Allen W Burton; Stephen Carcieri; G Rees Cosgrove; Pierre-Francois D'Haese; Zafiris Jeffrey Daskalakis; Emad N Eskandar; Jason L Gerrard; Wayne K Goodman; Benjamin David Greenberg; Robert E Gross; Clement Hamani; Zelma H T Kiss; Peter Konrad; Brian H Kopell; Lothar Krinke; Jean-Philippe Langevin; Andres M Lozano; Donald Malone; Helen S Mayberg; Jonathan P Miller; Parag G Patil; DeLea Peichel; Erika A Petersen; Ali R Rezai; R Mark Richardson; Patricio Riva-Posse; Tejas Sankar; Jason M Schwalb; Helen Blair Simpson; Konstantin Slavin; Paul H Stypulkowski; Tor Tosteson; Peter Warnke; Jon T Willie; Kareem A Zaghloul; Joseph S Neimat; Nader Pouratian; Sameer A Sheth
Journal:  J Neurol Neurosurg Psychiatry       Date:  2018-01-25       Impact factor: 10.154

4.  Freedom of Thought and Mental Integrity: The Moral Requirements for Any Neural Prosthesis.

Authors:  Andrea Lavazza
Journal:  Front Neurosci       Date:  2018-02-19       Impact factor: 4.677

Review 5.  Closing the Loop on Deep Brain Stimulation for Treatment-Resistant Depression.

Authors:  Alik S Widge; Donald A Malone; Darin D Dougherty
Journal:  Front Neurosci       Date:  2018-03-21       Impact factor: 4.677

  5 in total

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