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Department of Robotics and Mechatronics Engineering
Neuro-Interfaced Robotics Lab
1. Journal Articles
Soft-Actuated Cuff Electrodes with Minimal Contact for Bidirectional Peripheral Interfaces
Moon, Hyunmin
;
Park, Byungwook
;
Chou, Namsun
;
Park, Ki-Su
;
Lee, Sanghoon
;
Kim, Sohee
Department of Robotics and Mechatronics Engineering
Neural Interfaces & MicroSystems Lab
1. Journal Articles
Department of Robotics and Mechatronics Engineering
Neuro-Interfaced Robotics Lab
1. Journal Articles
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Title
Soft-Actuated Cuff Electrodes with Minimal Contact for Bidirectional Peripheral Interfaces
Issued Date
2025-02
Citation
Advanced Materials, v.37, no.5
Type
Article
Author Keywords
fluid injection
;
minimal contact
;
soft actuation
;
soft-actuated cuff electrodes (SACE)
;
sutureless cuff electrode
;
bidirectional interface
ISSN
0935-9648
Abstract
Neural interfaces with embedded electrical functions, such as cuff electrodes, are essential for monitoring and stimulating peripheral nerves. Still, several challenges remain with cuff electrodes because sutured devices can damage the nerve by high pressure and the secured contact of electrodes with the nerve is hard to accomplish, which however is essential in maintaining electrical performance. Here, a sutureless soft-actuated cuff electrodes (SACE) that can envelop the nerve conveniently by creating a bent shape controlled upon fluid injection, is introduced. Moreover, fluid injection protrudes part of the device where electrodes are formed, thereby achieving minimized, soft but secure contact between the electrodes and the nerve. In vivo results demonstrate the successful recording and stimulation of peripheral nerves over time up to 6 weeks. While securing contact with the nerve, the implanted electrodes can preserve the nerve intact with no reduction in blood flow, thereby indicating only minimal compressive force applied to the nerve. The SACE is expected to be a promising tool for recording and stimulation of peripheral nerves toward bidirectional neuroprostheses. © 2024 The Author(s). Advanced Materials published by Wiley-VCH GmbH.
URI
http://hdl.handle.net/20.500.11750/57220
DOI
10.1002/adma.202409942
Publisher
Wiley
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Lee, Sanghoon
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Department of Robotics and Mechatronics Engineering
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