An Implantable Wireless Neural Interface System for Simultaneous Recording and Stimulation of Peripheral Nerve with a Single Cuff Electrode

Authors
Shon, AhnseiChu, Jun-UkJung, JiukKim, HyungminYoun, Inchan
Issue Date
2018-01
Publisher
MDPI AG
Citation
SENSORS, v.18, no.1
Abstract
Recently, implantable devices have become widely used in neural prostheses because they eliminate endemic drawbacks of conventional percutaneous neural interface systems. However, there are still several issues to be considered: low-efficiency wireless power transmission; wireless data communication over restricted operating distance with high power consumption; and limited functionality, working either as a neural signal recorder or as a stimulator. To overcome these issues, we suggest a novel implantable wireless neural interface system for simultaneous neural signal recording and stimulation using a single cuff electrode. By using widely available commercial off-the-shelf (COTS) components, an easily reconfigurable implantable wireless neural interface system was implemented into one compact module. The implantable device includes a wireless power consortium (WPC)-compliant power transmission circuit, a medical implant communication service (MICS)-band-based radio link and a cuff-electrode path controller for simultaneous neural signal recording and stimulation. During in vivo experiments with rabbit models, the implantable device successfully recorded and stimulated the tibial and peroneal nerves while communicating with the external device. The proposed system can be modified for various implantable medical devices, especially such as closed-loop control based implantable neural prostheses requiring neural signal recording and stimulation at the same time.
Keywords
FUNCTIONAL ELECTRICAL-STIMULATION; SPINAL-CORD STIMULATION; MUSCLE AFFERENTS; MICS BAND; DESIGN; TELEMETRY; POWER; ENG; COMMUNICATION; INTERFERENCE; FUNCTIONAL ELECTRICAL-STIMULATION; SPINAL-CORD STIMULATION; MUSCLE AFFERENTS; MICS BAND; DESIGN; TELEMETRY; POWER; ENG; COMMUNICATION; INTERFERENCE; electroneurogram; implantable medical device; MICS-band-based radio link; nerve cuff electrode; wireless power transmission
ISSN
1424-8220
URI
https://pubs.kist.re.kr/handle/201004/121880
DOI
10.3390/s18010001
Appears in Collections:
KIST Article > 2018
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