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OPEN Wireless, miniaturized, semi-implantable electrocorticography microsystem validated *in vivo*

Engineering and Technology

OPEN Wireless, miniaturized, semi-implantable electrocorticography microsystem validated *in vivo*

K. Keramatzadeh, A. Kiakojouri, et al.

Explore the groundbreaking design and development of a multi-channel wireless micro-electrocorticography (µECOG) system validated through *in vivo* testing. This innovative system records brain activity, paving the way for future neurological research. Research conducted by Keivan Keramatzadeh, Ali Kiakojouri, Mohammad Sadegh Nahvi, and others.... show more
Abstract
This paper reports on the design, development, and test of a multi-channel wireless micro-electrocorticography (µECOG) system. The system consists of a semi-implantable, ultra-compact recording unit and an external unit, interfaced through a 2.4 GHz radio frequency data telemetry link with 2 Mbps (partially used) data transfer rate. Encased in a 3D-printed 2.9 cm × 2.9 cm × 2.5 cm cubic package, the semi-implantable recording unit consists of a microelectrode array, a vertically-stacked PCB platform containing off-the-shelf components, and commercially-available small-size 3.7-V, 50 mAh lithium-ion batteries. Two versions of microelectrode array were developed for the recording unit: a rigid 4 × 2 microelectrode array, and a flexible 12 × 6 microelectrode array, 36 of which routed to bonding pads for actual recording. The external unit comprises a transceiver board, a data acquisition board, and a host computer, on which reconstruction of the received signals is performed. After development, assembly, and integration, the system was tested and validated in vivo on anesthetized rats. The system successfully recorded both spontaneous and evoked activities from the brain of the subject.
Publisher
Scientific Reports
Published On
Dec 04, 2020
Authors
Keivan Keramatzadeh, Ali Kiakojouri, Mohammad Sadegh Nahvi, Yousef Khazaei, Ali Feizi-nejad, Mohammad Hossein Maghami, Reza Mohammadi, Mohammadali Sharifshazileh, Soraya Nasiri, Farhad Akbari Boroumand, Ebrahim Nadimi, Mahmoud Rezaei, Amir Shojaei, Javad Mirnajafi-Zadeh, Amir M. Sodagar
Tags
micro-electrocorticography
wireless
brain activity
in vivo validation
microelectrode array
RF communication
neurological research
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