EEG electrode digitization with commercial virtual reality hardware

Accurate spatial co-registration of EEG electrode positions with individual head models is an important component for EEG source localization and imaging. Due to variations in head shape between individuals, this requires measurements of electrode locations in each individual. Existing hardware for...

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Vydané v:PloS one Ročník 13; číslo 11; s. e0207516
Hlavní autori: Cline, Christopher C., Coogan, Christopher, He, Bin
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: United States Public Library of Science 21.11.2018
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Abstract Accurate spatial co-registration of EEG electrode positions with individual head models is an important component for EEG source localization and imaging. Due to variations in head shape between individuals, this requires measurements of electrode locations in each individual. Existing hardware for digitization can be accurate, but also relatively expensive. With the goal of making digitization more accessible for a range of research laboratories, we have developed an open-source software tool that can make use of less expensive consumer virtual reality hardware for EEG electrode digitization. Here we describe our developed VRDigitizer system and compare it to existing digitization solutions. Experimental evaluations were performed in a phantom head model and in 12 human subjects. In our comparison experiments, VRDigitizer was able to measure electrode positions with a mean error of 3.74 mm, compared to 1.73 mm and 2.98 mm for the commercial systems tested.
AbstractList Accurate spatial co-registration of EEG electrode positions with individual head models is an important component for EEG source localization and imaging. Due to variations in head shape between individuals, this requires measurements of electrode locations in each individual. Existing hardware for digitization can be accurate, but also relatively expensive. With the goal of making digitization more accessible for a range of research laboratories, we have developed an open-source software tool that can make use of less expensive consumer virtual reality hardware for EEG electrode digitization. Here we describe our developed VRDigitizer system and compare it to existing digitization solutions. Experimental evaluations were performed in a phantom head model and in 12 human subjects. In our comparison experiments, VRDigitizer was able to measure electrode positions with a mean error of 3.74 mm, compared to 1.73 mm and 2.98 mm for the commercial systems tested.
Accurate spatial co-registration of EEG electrode positions with individual head models is an important component for EEG source localization and imaging. Due to variations in head shape between individuals, this requires measurements of electrode locations in each individual. Existing hardware for digitization can be accurate, but also relatively expensive. With the goal of making digitization more accessible for a range of research laboratories, we have developed an open-source software tool that can make use of less expensive consumer virtual reality hardware for EEG electrode digitization. Here we describe our developed VRDigitizer system and compare it to existing digitization solutions. Experimental evaluations were performed in a phantom head model and in 12 human subjects. In our comparison experiments, VRDigitizer was able to measure electrode positions with a mean error of 3.74 mm, compared to 1.73 mm and 2.98 mm for the commercial systems tested.Accurate spatial co-registration of EEG electrode positions with individual head models is an important component for EEG source localization and imaging. Due to variations in head shape between individuals, this requires measurements of electrode locations in each individual. Existing hardware for digitization can be accurate, but also relatively expensive. With the goal of making digitization more accessible for a range of research laboratories, we have developed an open-source software tool that can make use of less expensive consumer virtual reality hardware for EEG electrode digitization. Here we describe our developed VRDigitizer system and compare it to existing digitization solutions. Experimental evaluations were performed in a phantom head model and in 12 human subjects. In our comparison experiments, VRDigitizer was able to measure electrode positions with a mean error of 3.74 mm, compared to 1.73 mm and 2.98 mm for the commercial systems tested.
Author Cline, Christopher C.
Coogan, Christopher
He, Bin
AuthorAffiliation 1 Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN, United States of America
2 Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, PA, United States of America
University of Tübingen, GERMANY
AuthorAffiliation_xml – name: University of Tübingen, GERMANY
– name: 1 Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN, United States of America
– name: 2 Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, PA, United States of America
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  givenname: Christopher C.
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  surname: Coogan
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/30462691$$D View this record in MEDLINE/PubMed
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ContentType Journal Article
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2018 Cline et al 2018 Cline et al
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– notice: 2018 Cline et al 2018 Cline et al
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Snippet Accurate spatial co-registration of EEG electrode positions with individual head models is an important component for EEG source localization and imaging. Due...
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StartPage e0207516
SubjectTerms Biology and Life Sciences
Biomedical engineering
Computer and Information Sciences
Computer applications
Digitization
EEG
Electrodes
Electroencephalography
Engineering
Engineering and Technology
Estimates
Hardware
Laboratories
Localization
Medical imaging
Medicine and Health Sciences
Methods
Open source software
Research and Analysis Methods
Science Policy
Sensors
Software development tools
Source code
Virtual reality
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Title EEG electrode digitization with commercial virtual reality hardware
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Volume 13
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