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Deep Brain Stimulation Initiative: Toward Innovative Technology, New Disease Indications, and Approaches to Current and Future Clinical Challenges in Neuromodulation Therapy

Deep brain stimulation (DBS) is one of the most important clinical therapies for neurological disorders. DBS also has great potential to become a great tool for clinical neuroscience research. Recently, the National Engineering Laboratory for Neuromodulation at Tsinghua University held an internatio...

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Autores principales: Sui, Yanan, Tian, Ye, Ko, Wai Kin Daniel, Wang, Zhiyan, Jia, Fumin, Horn, Andreas, De Ridder, Dirk, Choi, Ki Sueng, Bari, Ausaf A., Wang, Shouyan, Hamani, Clement, Baker, Kenneth B., Machado, Andre G., Aziz, Tipu Z., Fonoff, Erich Talamoni, Kühn, Andrea A., Bergman, Hagai, Sanger, Terence, Liu, Hesheng, Haber, Suzanne N., Li, Luming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7876228/
https://www.ncbi.nlm.nih.gov/pubmed/33584498
http://dx.doi.org/10.3389/fneur.2020.597451
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author Sui, Yanan
Tian, Ye
Ko, Wai Kin Daniel
Wang, Zhiyan
Jia, Fumin
Horn, Andreas
De Ridder, Dirk
Choi, Ki Sueng
Bari, Ausaf A.
Wang, Shouyan
Hamani, Clement
Baker, Kenneth B.
Machado, Andre G.
Aziz, Tipu Z.
Fonoff, Erich Talamoni
Kühn, Andrea A.
Bergman, Hagai
Sanger, Terence
Liu, Hesheng
Haber, Suzanne N.
Li, Luming
author_facet Sui, Yanan
Tian, Ye
Ko, Wai Kin Daniel
Wang, Zhiyan
Jia, Fumin
Horn, Andreas
De Ridder, Dirk
Choi, Ki Sueng
Bari, Ausaf A.
Wang, Shouyan
Hamani, Clement
Baker, Kenneth B.
Machado, Andre G.
Aziz, Tipu Z.
Fonoff, Erich Talamoni
Kühn, Andrea A.
Bergman, Hagai
Sanger, Terence
Liu, Hesheng
Haber, Suzanne N.
Li, Luming
author_sort Sui, Yanan
collection PubMed
description Deep brain stimulation (DBS) is one of the most important clinical therapies for neurological disorders. DBS also has great potential to become a great tool for clinical neuroscience research. Recently, the National Engineering Laboratory for Neuromodulation at Tsinghua University held an international Deep Brain Stimulation Initiative workshop to discuss the cutting-edge technological achievements and clinical applications of DBS. We specifically addressed new clinical approaches and challenges in DBS for movement disorders (Parkinson's disease and dystonia), clinical application toward neurorehabilitation for stroke, and the progress and challenges toward DBS for neuropsychiatric disorders. This review highlighted key developments in (1) neuroimaging, with advancements in 3-Tesla magnetic resonance imaging DBS compatibility for exploration of brain network mechanisms; (2) novel DBS recording capabilities for uncovering disease pathophysiology; and (3) overcoming global healthcare burdens with online-based DBS programming technology for connecting patient communities. The successful event marks a milestone for global collaborative opportunities in clinical development of neuromodulation to treat major neurological disorders.
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spelling pubmed-78762282021-02-12 Deep Brain Stimulation Initiative: Toward Innovative Technology, New Disease Indications, and Approaches to Current and Future Clinical Challenges in Neuromodulation Therapy Sui, Yanan Tian, Ye Ko, Wai Kin Daniel Wang, Zhiyan Jia, Fumin Horn, Andreas De Ridder, Dirk Choi, Ki Sueng Bari, Ausaf A. Wang, Shouyan Hamani, Clement Baker, Kenneth B. Machado, Andre G. Aziz, Tipu Z. Fonoff, Erich Talamoni Kühn, Andrea A. Bergman, Hagai Sanger, Terence Liu, Hesheng Haber, Suzanne N. Li, Luming Front Neurol Neurology Deep brain stimulation (DBS) is one of the most important clinical therapies for neurological disorders. DBS also has great potential to become a great tool for clinical neuroscience research. Recently, the National Engineering Laboratory for Neuromodulation at Tsinghua University held an international Deep Brain Stimulation Initiative workshop to discuss the cutting-edge technological achievements and clinical applications of DBS. We specifically addressed new clinical approaches and challenges in DBS for movement disorders (Parkinson's disease and dystonia), clinical application toward neurorehabilitation for stroke, and the progress and challenges toward DBS for neuropsychiatric disorders. This review highlighted key developments in (1) neuroimaging, with advancements in 3-Tesla magnetic resonance imaging DBS compatibility for exploration of brain network mechanisms; (2) novel DBS recording capabilities for uncovering disease pathophysiology; and (3) overcoming global healthcare burdens with online-based DBS programming technology for connecting patient communities. The successful event marks a milestone for global collaborative opportunities in clinical development of neuromodulation to treat major neurological disorders. Frontiers Media S.A. 2021-01-28 /pmc/articles/PMC7876228/ /pubmed/33584498 http://dx.doi.org/10.3389/fneur.2020.597451 Text en Copyright © 2021 Sui, Tian, Ko, Wang, Jia, Horn, De Ridder, Choi, Bari, Wang, Hamani, Baker, Machado, Aziz, Fonoff, Kühn, Bergman, Sanger, Liu, Haber and Li. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neurology
Sui, Yanan
Tian, Ye
Ko, Wai Kin Daniel
Wang, Zhiyan
Jia, Fumin
Horn, Andreas
De Ridder, Dirk
Choi, Ki Sueng
Bari, Ausaf A.
Wang, Shouyan
Hamani, Clement
Baker, Kenneth B.
Machado, Andre G.
Aziz, Tipu Z.
Fonoff, Erich Talamoni
Kühn, Andrea A.
Bergman, Hagai
Sanger, Terence
Liu, Hesheng
Haber, Suzanne N.
Li, Luming
Deep Brain Stimulation Initiative: Toward Innovative Technology, New Disease Indications, and Approaches to Current and Future Clinical Challenges in Neuromodulation Therapy
title Deep Brain Stimulation Initiative: Toward Innovative Technology, New Disease Indications, and Approaches to Current and Future Clinical Challenges in Neuromodulation Therapy
title_full Deep Brain Stimulation Initiative: Toward Innovative Technology, New Disease Indications, and Approaches to Current and Future Clinical Challenges in Neuromodulation Therapy
title_fullStr Deep Brain Stimulation Initiative: Toward Innovative Technology, New Disease Indications, and Approaches to Current and Future Clinical Challenges in Neuromodulation Therapy
title_full_unstemmed Deep Brain Stimulation Initiative: Toward Innovative Technology, New Disease Indications, and Approaches to Current and Future Clinical Challenges in Neuromodulation Therapy
title_short Deep Brain Stimulation Initiative: Toward Innovative Technology, New Disease Indications, and Approaches to Current and Future Clinical Challenges in Neuromodulation Therapy
title_sort deep brain stimulation initiative: toward innovative technology, new disease indications, and approaches to current and future clinical challenges in neuromodulation therapy
topic Neurology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7876228/
https://www.ncbi.nlm.nih.gov/pubmed/33584498
http://dx.doi.org/10.3389/fneur.2020.597451
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