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Closed-loop optogenetic control of the dynamics of neural activity in non-human primates

Electrical neurostimulation is effective in the treatment of neurological disorders, but associated recording artefacts generally limit its applications to open-loop stimuli. Real-time and continuous closed-loop control of brain activity can however be achieved by pairing concurrent electrical recor...

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Autores principales: Zaaimi, B., Turnbull, M., Hazra, A., Wang, Y., Gandara, C., McLeod, F., McDermott, E. E., Escobedo-Cousin, E., Idil, A. Shah, Bailey, R. G., Tardio, S., Patel, A., Ponon, N., Gausden, J., Walsh, D., Hutchings, F., Kaiser, M., Cunningham, M. O., Clowry, G. J., LeBeau, F. E. N., Constandinou, T. G., Baker, S. N., Donaldson, N., Degenaar, P., O’Neill, A., Trevelyan, A. J., Jackson, A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7614485/
https://www.ncbi.nlm.nih.gov/pubmed/36266536
http://dx.doi.org/10.1038/s41551-022-00945-8
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author Zaaimi, B.
Turnbull, M.
Hazra, A.
Wang, Y.
Gandara, C.
McLeod, F.
McDermott, E. E.
Escobedo-Cousin, E.
Idil, A. Shah
Bailey, R. G.
Tardio, S.
Patel, A.
Ponon, N.
Gausden, J.
Walsh, D.
Hutchings, F.
Kaiser, M.
Cunningham, M. O.
Clowry, G. J.
LeBeau, F. E. N.
Constandinou, T. G.
Baker, S. N.
Donaldson, N.
Degenaar, P.
O’Neill, A.
Trevelyan, A. J.
Jackson, A.
author_facet Zaaimi, B.
Turnbull, M.
Hazra, A.
Wang, Y.
Gandara, C.
McLeod, F.
McDermott, E. E.
Escobedo-Cousin, E.
Idil, A. Shah
Bailey, R. G.
Tardio, S.
Patel, A.
Ponon, N.
Gausden, J.
Walsh, D.
Hutchings, F.
Kaiser, M.
Cunningham, M. O.
Clowry, G. J.
LeBeau, F. E. N.
Constandinou, T. G.
Baker, S. N.
Donaldson, N.
Degenaar, P.
O’Neill, A.
Trevelyan, A. J.
Jackson, A.
author_sort Zaaimi, B.
collection PubMed
description Electrical neurostimulation is effective in the treatment of neurological disorders, but associated recording artefacts generally limit its applications to open-loop stimuli. Real-time and continuous closed-loop control of brain activity can however be achieved by pairing concurrent electrical recordings and optogenetics. Here we show that closed-loop optogenetic stimulation with excitatory opsins enables the precise manipulation of neural dynamics in brain slices from transgenic mice and in anesthetized non-human primates. The approach generates oscillations in quiescent tissue, enhances or suppresses endogenous patterns in active tissue, and modulates seizure-like bursts elicited by the convulsant 4-aminopyridine. A nonlinear model of the phase-dependent effects of optical stimulation reproduced the modulation of cycles of local-field potentials associated with seizure oscillations, as evidenced by the systematic changes in the variability and entropy of the phase-space trajectories of seizures, which correlated with changes in their duration and intensity. We also show that closed-loop optogenetic neurostimulation could be delivered using intracortical optrodes incorporating light-emitting diodes. Closed-loop optogenetic approaches may have translational therapeutic applications.
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spelling pubmed-76144852023-04-27 Closed-loop optogenetic control of the dynamics of neural activity in non-human primates Zaaimi, B. Turnbull, M. Hazra, A. Wang, Y. Gandara, C. McLeod, F. McDermott, E. E. Escobedo-Cousin, E. Idil, A. Shah Bailey, R. G. Tardio, S. Patel, A. Ponon, N. Gausden, J. Walsh, D. Hutchings, F. Kaiser, M. Cunningham, M. O. Clowry, G. J. LeBeau, F. E. N. Constandinou, T. G. Baker, S. N. Donaldson, N. Degenaar, P. O’Neill, A. Trevelyan, A. J. Jackson, A. Nat Biomed Eng Article Electrical neurostimulation is effective in the treatment of neurological disorders, but associated recording artefacts generally limit its applications to open-loop stimuli. Real-time and continuous closed-loop control of brain activity can however be achieved by pairing concurrent electrical recordings and optogenetics. Here we show that closed-loop optogenetic stimulation with excitatory opsins enables the precise manipulation of neural dynamics in brain slices from transgenic mice and in anesthetized non-human primates. The approach generates oscillations in quiescent tissue, enhances or suppresses endogenous patterns in active tissue, and modulates seizure-like bursts elicited by the convulsant 4-aminopyridine. A nonlinear model of the phase-dependent effects of optical stimulation reproduced the modulation of cycles of local-field potentials associated with seizure oscillations, as evidenced by the systematic changes in the variability and entropy of the phase-space trajectories of seizures, which correlated with changes in their duration and intensity. We also show that closed-loop optogenetic neurostimulation could be delivered using intracortical optrodes incorporating light-emitting diodes. Closed-loop optogenetic approaches may have translational therapeutic applications. 2023-04 2022-10-20 /pmc/articles/PMC7614485/ /pubmed/36266536 http://dx.doi.org/10.1038/s41551-022-00945-8 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Zaaimi, B.
Turnbull, M.
Hazra, A.
Wang, Y.
Gandara, C.
McLeod, F.
McDermott, E. E.
Escobedo-Cousin, E.
Idil, A. Shah
Bailey, R. G.
Tardio, S.
Patel, A.
Ponon, N.
Gausden, J.
Walsh, D.
Hutchings, F.
Kaiser, M.
Cunningham, M. O.
Clowry, G. J.
LeBeau, F. E. N.
Constandinou, T. G.
Baker, S. N.
Donaldson, N.
Degenaar, P.
O’Neill, A.
Trevelyan, A. J.
Jackson, A.
Closed-loop optogenetic control of the dynamics of neural activity in non-human primates
title Closed-loop optogenetic control of the dynamics of neural activity in non-human primates
title_full Closed-loop optogenetic control of the dynamics of neural activity in non-human primates
title_fullStr Closed-loop optogenetic control of the dynamics of neural activity in non-human primates
title_full_unstemmed Closed-loop optogenetic control of the dynamics of neural activity in non-human primates
title_short Closed-loop optogenetic control of the dynamics of neural activity in non-human primates
title_sort closed-loop optogenetic control of the dynamics of neural activity in non-human primates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7614485/
https://www.ncbi.nlm.nih.gov/pubmed/36266536
http://dx.doi.org/10.1038/s41551-022-00945-8
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