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Decoding voluntary movements and postural tremor based on thalamic LFPs as a basis for closed-loop stimulation for essential tremor

BACKGROUND: High frequency Deep brain stimulation (DBS) targeting motor thalamus is an effective therapy for essential tremor (ET). However, conventional continuous stimulation may deliver unnecessary current to the brain since tremor mainly affects voluntary movements and sustained postures in ET....

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Autores principales: Tan, Huiling, Debarros, Jean, He, Shenghong, Pogosyan, Alek, Aziz, Tipu Z., Huang, Yongzhi, Wang, Shouyan, Timmermann, Lars, Visser-Vandewalle, Veerle, Pedrosa, David J., Green, Alexander L., Brown, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6600875/
https://www.ncbi.nlm.nih.gov/pubmed/30827864
http://dx.doi.org/10.1016/j.brs.2019.02.011
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author Tan, Huiling
Debarros, Jean
He, Shenghong
Pogosyan, Alek
Aziz, Tipu Z.
Huang, Yongzhi
Wang, Shouyan
Timmermann, Lars
Visser-Vandewalle, Veerle
Pedrosa, David J.
Green, Alexander L.
Brown, Peter
author_facet Tan, Huiling
Debarros, Jean
He, Shenghong
Pogosyan, Alek
Aziz, Tipu Z.
Huang, Yongzhi
Wang, Shouyan
Timmermann, Lars
Visser-Vandewalle, Veerle
Pedrosa, David J.
Green, Alexander L.
Brown, Peter
author_sort Tan, Huiling
collection PubMed
description BACKGROUND: High frequency Deep brain stimulation (DBS) targeting motor thalamus is an effective therapy for essential tremor (ET). However, conventional continuous stimulation may deliver unnecessary current to the brain since tremor mainly affects voluntary movements and sustained postures in ET. OBJECTIVE: We aim to decode both voluntary movements and the presence of postural tremor from the Local field potentials (LFPs) recorded from the electrode implanted in motor thalamus for stimulation, in order to close the loop for DBS so that stimulation could be delivered on demand, without the need for peripheral sensors or additional invasive electrodes. METHODS: LFPs from the motor thalamus, surface electromyographic (EMG) signals and/or behavioural measurements were simultaneously recorded in seven ET patients during temporary lead externalisation 3–5 days after the first surgery for DBS when they performed different voluntary upper limb movements. Nine different patients were recorded during the surgery, when they were asked to lift their arms to trigger postural tremor. A machine learning based binary classifier was used to detect voluntary movements and postural tremor based on features extracted from thalamic LFPs. RESULTS: Cross-validation demonstrated that both voluntary movements and postural tremor can be decoded with an average sensitivity of 0.8 and false detection rate of 0.2. Oscillatory activities in the beta frequency bands (13–23 Hz) and the theta frequency bands (4–7 Hz) contributed most to the decoding of movements and postural tremor, respectively, though incorporating features in different frequency bands using a machine learning approach increased the accuracy of decoding.
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spelling pubmed-66008752019-07-01 Decoding voluntary movements and postural tremor based on thalamic LFPs as a basis for closed-loop stimulation for essential tremor Tan, Huiling Debarros, Jean He, Shenghong Pogosyan, Alek Aziz, Tipu Z. Huang, Yongzhi Wang, Shouyan Timmermann, Lars Visser-Vandewalle, Veerle Pedrosa, David J. Green, Alexander L. Brown, Peter Brain Stimul Article BACKGROUND: High frequency Deep brain stimulation (DBS) targeting motor thalamus is an effective therapy for essential tremor (ET). However, conventional continuous stimulation may deliver unnecessary current to the brain since tremor mainly affects voluntary movements and sustained postures in ET. OBJECTIVE: We aim to decode both voluntary movements and the presence of postural tremor from the Local field potentials (LFPs) recorded from the electrode implanted in motor thalamus for stimulation, in order to close the loop for DBS so that stimulation could be delivered on demand, without the need for peripheral sensors or additional invasive electrodes. METHODS: LFPs from the motor thalamus, surface electromyographic (EMG) signals and/or behavioural measurements were simultaneously recorded in seven ET patients during temporary lead externalisation 3–5 days after the first surgery for DBS when they performed different voluntary upper limb movements. Nine different patients were recorded during the surgery, when they were asked to lift their arms to trigger postural tremor. A machine learning based binary classifier was used to detect voluntary movements and postural tremor based on features extracted from thalamic LFPs. RESULTS: Cross-validation demonstrated that both voluntary movements and postural tremor can be decoded with an average sensitivity of 0.8 and false detection rate of 0.2. Oscillatory activities in the beta frequency bands (13–23 Hz) and the theta frequency bands (4–7 Hz) contributed most to the decoding of movements and postural tremor, respectively, though incorporating features in different frequency bands using a machine learning approach increased the accuracy of decoding. Elsevier 2019 /pmc/articles/PMC6600875/ /pubmed/30827864 http://dx.doi.org/10.1016/j.brs.2019.02.011 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tan, Huiling
Debarros, Jean
He, Shenghong
Pogosyan, Alek
Aziz, Tipu Z.
Huang, Yongzhi
Wang, Shouyan
Timmermann, Lars
Visser-Vandewalle, Veerle
Pedrosa, David J.
Green, Alexander L.
Brown, Peter
Decoding voluntary movements and postural tremor based on thalamic LFPs as a basis for closed-loop stimulation for essential tremor
title Decoding voluntary movements and postural tremor based on thalamic LFPs as a basis for closed-loop stimulation for essential tremor
title_full Decoding voluntary movements and postural tremor based on thalamic LFPs as a basis for closed-loop stimulation for essential tremor
title_fullStr Decoding voluntary movements and postural tremor based on thalamic LFPs as a basis for closed-loop stimulation for essential tremor
title_full_unstemmed Decoding voluntary movements and postural tremor based on thalamic LFPs as a basis for closed-loop stimulation for essential tremor
title_short Decoding voluntary movements and postural tremor based on thalamic LFPs as a basis for closed-loop stimulation for essential tremor
title_sort decoding voluntary movements and postural tremor based on thalamic lfps as a basis for closed-loop stimulation for essential tremor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6600875/
https://www.ncbi.nlm.nih.gov/pubmed/30827864
http://dx.doi.org/10.1016/j.brs.2019.02.011
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