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Opto-electronic feedback control of membrane potential for real-time control of action potentials

Authors :
Ördög, Balázs (author)
De Coster, Tim (author)
Dekker, Sven O. (author)
Bart, Cindy I. (author)
Zhang, Juan (author)
Boink, Gerard J.J. (author)
Bax, Wilhelmina H. (author)
Deng, Shanliang (author)
den Ouden, B.L. (author)
de Vries, Antoine A.F. (author)
Pijnappels, Daniël A. (author)
Ördög, Balázs (author)
De Coster, Tim (author)
Dekker, Sven O. (author)
Bart, Cindy I. (author)
Zhang, Juan (author)
Boink, Gerard J.J. (author)
Bax, Wilhelmina H. (author)
Deng, Shanliang (author)
den Ouden, B.L. (author)
de Vries, Antoine A.F. (author)
Pijnappels, Daniël A. (author)
Publication Year :
2023

Abstract

To unlock new research possibilities by acquiring control of action potential (AP) morphologies in excitable cells, we developed an opto-electronic feedback loop-based system integrating cellular electrophysiology, real-time computing, and optogenetic approaches and applied it to monolayers of heart muscle cells. This allowed accurate restoration and preservation of cardiac AP morphologies in the presence of electrical perturbations of different origin in an unsupervised, self-regulatory manner, without any prior knowledge of the disturbance. Moreover, arbitrary AP waveforms could be enforced onto these cells. Collectively, these results set the stage for the refinement and application of opto-electronic control systems to enable in-depth investigation into the regulatory role of membrane potential in health and disease.<br />Electronic Components, Technology and Materials

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1416846391
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1016.j.crmeth.2023.100671