Electrophysiological approaches to informing therapeutic interventions with deep brain stimulation
Abstract Neuromodulation therapy comprises a range of non-destructive and adjustable methods for modulating neural activity using electrical stimulations, chemical agents, or mechanical interventions. Here, we discuss how electrophysiological brain recording and imaging at multiple scales, from cell...
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Format: | Article |
Language: | English |
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Nature Portfolio
2025-01-01
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Series: | npj Parkinson's Disease |
Online Access: | https://doi.org/10.1038/s41531-024-00847-3 |
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author | Atefeh Asadi Alex I. Wiesman Christoph Wiest Sylvain Baillet Huiling Tan Muthuraman Muthuraman |
author_facet | Atefeh Asadi Alex I. Wiesman Christoph Wiest Sylvain Baillet Huiling Tan Muthuraman Muthuraman |
author_sort | Atefeh Asadi |
collection | DOAJ |
description | Abstract Neuromodulation therapy comprises a range of non-destructive and adjustable methods for modulating neural activity using electrical stimulations, chemical agents, or mechanical interventions. Here, we discuss how electrophysiological brain recording and imaging at multiple scales, from cells to large-scale brain networks, contribute to defining the target location and stimulation parameters of neuromodulation, with an emphasis on deep brain stimulation (DBS). |
format | Article |
id | doaj-art-3c6c1837272c428895602ad56ae3656c |
institution | Kabale University |
issn | 2373-8057 |
language | English |
publishDate | 2025-01-01 |
publisher | Nature Portfolio |
record_format | Article |
series | npj Parkinson's Disease |
spelling | doaj-art-3c6c1837272c428895602ad56ae3656c2025-01-26T12:21:28ZengNature Portfolionpj Parkinson's Disease2373-80572025-01-011111910.1038/s41531-024-00847-3Electrophysiological approaches to informing therapeutic interventions with deep brain stimulationAtefeh Asadi0Alex I. Wiesman1Christoph Wiest2Sylvain Baillet3Huiling Tan4Muthuraman Muthuraman5Neural Engineering with Signal Analytics and Artificial Intelligence, Department of Neurology, University Clinic WürzburgDepartment of Biomedical Physiology and Kinesiology, Simon Fraser UniversityMRC Brain Network Dynamics Unit, Nuffield Department of Clinical Neurosciences, University of OxfordMontreal Neurological Institute, McGill UniversityMRC Brain Network Dynamics Unit, Nuffield Department of Clinical Neurosciences, University of OxfordNeural Engineering with Signal Analytics and Artificial Intelligence, Department of Neurology, University Clinic WürzburgAbstract Neuromodulation therapy comprises a range of non-destructive and adjustable methods for modulating neural activity using electrical stimulations, chemical agents, or mechanical interventions. Here, we discuss how electrophysiological brain recording and imaging at multiple scales, from cells to large-scale brain networks, contribute to defining the target location and stimulation parameters of neuromodulation, with an emphasis on deep brain stimulation (DBS).https://doi.org/10.1038/s41531-024-00847-3 |
spellingShingle | Atefeh Asadi Alex I. Wiesman Christoph Wiest Sylvain Baillet Huiling Tan Muthuraman Muthuraman Electrophysiological approaches to informing therapeutic interventions with deep brain stimulation npj Parkinson's Disease |
title | Electrophysiological approaches to informing therapeutic interventions with deep brain stimulation |
title_full | Electrophysiological approaches to informing therapeutic interventions with deep brain stimulation |
title_fullStr | Electrophysiological approaches to informing therapeutic interventions with deep brain stimulation |
title_full_unstemmed | Electrophysiological approaches to informing therapeutic interventions with deep brain stimulation |
title_short | Electrophysiological approaches to informing therapeutic interventions with deep brain stimulation |
title_sort | electrophysiological approaches to informing therapeutic interventions with deep brain stimulation |
url | https://doi.org/10.1038/s41531-024-00847-3 |
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