Functional Electrochemistry: On-Nerve Assessment of Electrode Materials for Electrochemistry and Functional Neurostimulation

Emerging therapies in bioelectronic medicine highlight the need for deeper understanding of electrode material performance in the context of tissue stimulation. Electrochemical properties are characterized on the benchtop, facilitating standardization across experiments. On-nerve electrochemistry di...

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Published in:IEEE Open Journal of Engineering in Medicine and Biology
Main Authors: Jason A. Miranda, Adrien Rapeaux, Isabelle C. Samper, Carolina Silveira, David R. Wille, Gerald E. Hunsberger, Wesley J. Dopson, Huanfen Yao, Annapurna Karicherla, Daniel J. Chew
Format: Article
Language:English
Published: IEEE 2024-01-01
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10411018/
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author Jason A. Miranda
Adrien Rapeaux
Isabelle C. Samper
Carolina Silveira
David R. Wille
Gerald E. Hunsberger
Wesley J. Dopson
Huanfen Yao
Annapurna Karicherla
Daniel J. Chew
author_facet Jason A. Miranda
Adrien Rapeaux
Isabelle C. Samper
Carolina Silveira
David R. Wille
Gerald E. Hunsberger
Wesley J. Dopson
Huanfen Yao
Annapurna Karicherla
Daniel J. Chew
author_sort Jason A. Miranda
collection DOAJ
container_title IEEE Open Journal of Engineering in Medicine and Biology
description Emerging therapies in bioelectronic medicine highlight the need for deeper understanding of electrode material performance in the context of tissue stimulation. Electrochemical properties are characterized on the benchtop, facilitating standardization across experiments. On-nerve electrochemistry differs from benchtop characterization and the relationship between electrochemical performance and nerve activation thresholds are not commonly established. This relationship is important in understanding differences between electrical stimulation requirements and electrode performance. We report functional electrochemistry as a follow-up to benchtop testing, describing a novel experimental approach for evaluating on-nerve electrochemical performance in the context of nerve activation. An ex-vivo rat sciatic nerve preparation was developed to quantify activation thresholds of fiber subtypes and electrode material charge injection limits for platinum iridium, iridium oxide, titanium nitride and PEDOT. Finally, we address experimental complexities arising in these studies, and demonstrate statistical solutions that support rigorous material performance comparisons for decision making in neural interface development.
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spelling doaj-art-e1ff5363f8df4ffd87172bf9dfeadadb2025-08-20T03:15:51ZengIEEEIEEE Open Journal of Engineering in Medicine and Biology2644-12762024-01-015596510.1109/OJEMB.2024.335681810411018Functional Electrochemistry: On-Nerve Assessment of Electrode Materials for Electrochemistry and Functional NeurostimulationJason A. Miranda0https://orcid.org/0000-0002-1459-2022Adrien Rapeaux1https://orcid.org/0000-0002-5769-4539Isabelle C. Samper2https://orcid.org/0000-0003-2596-954XCarolina Silveira3https://orcid.org/0000-0001-9175-055XDavid R. Wille4https://orcid.org/0000-0003-0850-2665Gerald E. Hunsberger5https://orcid.org/0009-0000-0868-4441Wesley J. Dopson6https://orcid.org/0009-0002-4874-0860Huanfen Yao7https://orcid.org/0009-0001-0518-3630Annapurna Karicherla8https://orcid.org/0009-0004-3197-9175Daniel J. Chew9https://orcid.org/0000-0002-4937-4797Galvani Bioelectonics Ltd., Stevenage, Hertfordshire, U.K.Galvani Bioelectonics Ltd., Stevenage, Hertfordshire, U.K.Galvani Bioelectonics Ltd., Stevenage, Hertfordshire, U.K.Galvani Bioelectonics Ltd., Stevenage, Hertfordshire, U.K.GSK PLC, Stevenage, U.K.Galvani Bioelectonics Ltd., Stevenage, Hertfordshire, U.K.Galvani Bioelectonics Ltd., Stevenage, Hertfordshire, U.K.Verily Life Sciences LLC, San Francisco, CA, USAVerily Life Sciences LLC, San Francisco, CA, USAGalvani Bioelectonics Ltd., Stevenage, Hertfordshire, U.K.Emerging therapies in bioelectronic medicine highlight the need for deeper understanding of electrode material performance in the context of tissue stimulation. Electrochemical properties are characterized on the benchtop, facilitating standardization across experiments. On-nerve electrochemistry differs from benchtop characterization and the relationship between electrochemical performance and nerve activation thresholds are not commonly established. This relationship is important in understanding differences between electrical stimulation requirements and electrode performance. We report functional electrochemistry as a follow-up to benchtop testing, describing a novel experimental approach for evaluating on-nerve electrochemical performance in the context of nerve activation. An ex-vivo rat sciatic nerve preparation was developed to quantify activation thresholds of fiber subtypes and electrode material charge injection limits for platinum iridium, iridium oxide, titanium nitride and PEDOT. Finally, we address experimental complexities arising in these studies, and demonstrate statistical solutions that support rigorous material performance comparisons for decision making in neural interface development.https://ieeexplore.ieee.org/document/10411018/Bioelectronicselectrochemistryelectrode materialsnerve stimulationneural interface
spellingShingle Jason A. Miranda
Adrien Rapeaux
Isabelle C. Samper
Carolina Silveira
David R. Wille
Gerald E. Hunsberger
Wesley J. Dopson
Huanfen Yao
Annapurna Karicherla
Daniel J. Chew
Functional Electrochemistry: On-Nerve Assessment of Electrode Materials for Electrochemistry and Functional Neurostimulation
Bioelectronics
electrochemistry
electrode materials
nerve stimulation
neural interface
title Functional Electrochemistry: On-Nerve Assessment of Electrode Materials for Electrochemistry and Functional Neurostimulation
title_full Functional Electrochemistry: On-Nerve Assessment of Electrode Materials for Electrochemistry and Functional Neurostimulation
title_fullStr Functional Electrochemistry: On-Nerve Assessment of Electrode Materials for Electrochemistry and Functional Neurostimulation
title_full_unstemmed Functional Electrochemistry: On-Nerve Assessment of Electrode Materials for Electrochemistry and Functional Neurostimulation
title_short Functional Electrochemistry: On-Nerve Assessment of Electrode Materials for Electrochemistry and Functional Neurostimulation
title_sort functional electrochemistry on nerve assessment of electrode materials for electrochemistry and functional neurostimulation
topic Bioelectronics
electrochemistry
electrode materials
nerve stimulation
neural interface
url https://ieeexplore.ieee.org/document/10411018/
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