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High-density integrated electrocortical neural interfaces : low-noise low-power system-on-chip design methodology

Author: Sohmyung Ha; Chul Kim; Patrick P Mercier; Gert Cauwenberghs
Publisher: Amsterdam : Academic Press, 2019.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
High-Density Integrated Electrocortical Neural Interfaces provides a basic understanding, design strategies and implementation applications for electrocortical neural interfaces with a focus on integrated circuit design technologies. A wide variety of topics associated with the design and application of electrocortical neural implants are covered in this book. Written by leading experts in the field-Dr. Sohmyung Ha  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Ha, Sohmyung.
High-density integrated electrocortical neural interfaces.
Amsterdam : Academic Press, 2019
(OCoLC)1112368665
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Sohmyung Ha; Chul Kim; Patrick P Mercier; Gert Cauwenberghs
ISBN: 9780128151167 0128151161
OCLC Number: 1112701577
Description: 1 online resource (1 volume)
Contents: 1. Introduction to ECoG and ECoG Interfaces2. Electrode-to-Brain Interfaces3. Integrated Circuit Interfaces for Data Acquisition4. Integrated Circuit Interfaces for Stimulation5. Power Management for mm-sized ECoG Implants6. RF Power Transfer and its Considerations7. Wireless Data Communication8. Fully Integrated Modular ECoG Recording and Stimulation
Responsibility: Sohmyung Ha, Chul Kim, Patrick P. Mercier, Gert Cauwenberghs.

Abstract:

High-Density Integrated Electrocortical Neural Interfaces provides a basic understanding, design strategies and implementation applications for electrocortical neural interfaces with a focus on integrated circuit design technologies. A wide variety of topics associated with the design and application of electrocortical neural implants are covered in this book. Written by leading experts in the field-Dr. Sohmyung Ha and Dr. Gert Cauwenberghs-the book discusses basic principles and practical design strategies of electrocorticography, electrode interfaces, signal acquisition, power delivery, data communication, and stimulation. In addition, an overview and critical review of the state-of-the-art research is included. These methodologies present a path towards the development of minimally invasive brain-computer interfaces capable of resolving microscale neural activity with wide-ranging coverage across the cortical surface.

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