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Long-term accelerometry-triggered video monitoring and detection of tonic–clonic and clonic seizures in a home environment: Pilot study

PURPOSE: The aim of our study was to test the efficacy of the VARIA system (video, accelerometry, and radar-induced activity recording) and validation of accelerometry-based detection algorithms for nocturnal tonic–clonic and clonic seizures developed by our team. METHODS: We present the results of...

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Autores principales: Van de Vel, Anouk, Milosevic, Milica, Bonroy, Bert, Cuppens, Kris, Lagae, Lieven, Vanrumste, Bart, Van Huffel, Sabine, Ceulemans, Berten
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4840430/
https://www.ncbi.nlm.nih.gov/pubmed/27144123
http://dx.doi.org/10.1016/j.ebcr.2016.03.005
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author Van de Vel, Anouk
Milosevic, Milica
Bonroy, Bert
Cuppens, Kris
Lagae, Lieven
Vanrumste, Bart
Van Huffel, Sabine
Ceulemans, Berten
author_facet Van de Vel, Anouk
Milosevic, Milica
Bonroy, Bert
Cuppens, Kris
Lagae, Lieven
Vanrumste, Bart
Van Huffel, Sabine
Ceulemans, Berten
author_sort Van de Vel, Anouk
collection PubMed
description PURPOSE: The aim of our study was to test the efficacy of the VARIA system (video, accelerometry, and radar-induced activity recording) and validation of accelerometry-based detection algorithms for nocturnal tonic–clonic and clonic seizures developed by our team. METHODS: We present the results of two patients with tonic–clonic and clonic seizures, measured for about one month in a home environment with four wireless accelerometers (ACM) attached to wrists and ankles. The algorithms were developed using wired ACM data synchronized with the gold standard video-/electroencephalography (EEG) and then run offline on the wireless ACM signals. Detection of seizures was compared with semicontinuous monitoring by professional caregivers (keeping an eye on multiple patients). RESULTS: The best result for the two patients was obtained with the semipatient-specific algorithm which was developed using all patients with tonic–clonic and clonic seizures in our database with wired ACM. It gave a mean sensitivity of 66.87% and false detection rate of 1.16 per night. This included 13 extra seizures detected (31%) compared with professional caregivers' observations. CONCLUSION: While the algorithms were previously validated in a controlled video/EEG monitoring unit with wired sensors, we now show the first results of long-term, wireless testing in a home environment.
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spelling pubmed-48404302016-05-03 Long-term accelerometry-triggered video monitoring and detection of tonic–clonic and clonic seizures in a home environment: Pilot study Van de Vel, Anouk Milosevic, Milica Bonroy, Bert Cuppens, Kris Lagae, Lieven Vanrumste, Bart Van Huffel, Sabine Ceulemans, Berten Epilepsy Behav Case Rep Case Report PURPOSE: The aim of our study was to test the efficacy of the VARIA system (video, accelerometry, and radar-induced activity recording) and validation of accelerometry-based detection algorithms for nocturnal tonic–clonic and clonic seizures developed by our team. METHODS: We present the results of two patients with tonic–clonic and clonic seizures, measured for about one month in a home environment with four wireless accelerometers (ACM) attached to wrists and ankles. The algorithms were developed using wired ACM data synchronized with the gold standard video-/electroencephalography (EEG) and then run offline on the wireless ACM signals. Detection of seizures was compared with semicontinuous monitoring by professional caregivers (keeping an eye on multiple patients). RESULTS: The best result for the two patients was obtained with the semipatient-specific algorithm which was developed using all patients with tonic–clonic and clonic seizures in our database with wired ACM. It gave a mean sensitivity of 66.87% and false detection rate of 1.16 per night. This included 13 extra seizures detected (31%) compared with professional caregivers' observations. CONCLUSION: While the algorithms were previously validated in a controlled video/EEG monitoring unit with wired sensors, we now show the first results of long-term, wireless testing in a home environment. Elsevier 2016-04-06 /pmc/articles/PMC4840430/ /pubmed/27144123 http://dx.doi.org/10.1016/j.ebcr.2016.03.005 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Case Report
Van de Vel, Anouk
Milosevic, Milica
Bonroy, Bert
Cuppens, Kris
Lagae, Lieven
Vanrumste, Bart
Van Huffel, Sabine
Ceulemans, Berten
Long-term accelerometry-triggered video monitoring and detection of tonic–clonic and clonic seizures in a home environment: Pilot study
title Long-term accelerometry-triggered video monitoring and detection of tonic–clonic and clonic seizures in a home environment: Pilot study
title_full Long-term accelerometry-triggered video monitoring and detection of tonic–clonic and clonic seizures in a home environment: Pilot study
title_fullStr Long-term accelerometry-triggered video monitoring and detection of tonic–clonic and clonic seizures in a home environment: Pilot study
title_full_unstemmed Long-term accelerometry-triggered video monitoring and detection of tonic–clonic and clonic seizures in a home environment: Pilot study
title_short Long-term accelerometry-triggered video monitoring and detection of tonic–clonic and clonic seizures in a home environment: Pilot study
title_sort long-term accelerometry-triggered video monitoring and detection of tonic–clonic and clonic seizures in a home environment: pilot study
topic Case Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4840430/
https://www.ncbi.nlm.nih.gov/pubmed/27144123
http://dx.doi.org/10.1016/j.ebcr.2016.03.005
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