The EBRAINS NeuroFeatureExtract: An Online Resource for the Extraction of Neural Activity Features From Electrophysiological Data

The description of neural dynamics, in terms of precise characterizations of action potential timings and shape and voltage related measures, is fundamental for a deeper understanding of the neural code and its information content. Not only such measures serve the scientific questions posed by exper...

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Main Authors: Luca L. Bologna, Roberto Smiriglia, Dario Curreri, Michele Migliore
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-08-01
Series:Frontiers in Neuroinformatics
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fninf.2021.713899/full
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spelling doaj-9be1c88beb79417e99092cd6f49717c12021-08-26T15:28:15ZengFrontiers Media S.A.Frontiers in Neuroinformatics1662-51962021-08-011510.3389/fninf.2021.713899713899The EBRAINS NeuroFeatureExtract: An Online Resource for the Extraction of Neural Activity Features From Electrophysiological DataLuca L. BolognaRoberto SmirigliaDario CurreriMichele MiglioreThe description of neural dynamics, in terms of precise characterizations of action potential timings and shape and voltage related measures, is fundamental for a deeper understanding of the neural code and its information content. Not only such measures serve the scientific questions posed by experimentalists but are increasingly being used by computational neuroscientists for the construction of biophysically detailed data-driven models. Nonetheless, online resources enabling users to perform such feature extraction operation are lacking. To address this problem, in the framework of the Human Brain Project and the EBRAINS research infrastructure, we have developed and made available to the scientific community the NeuroFeatureExtract, an open-access online resource for the extraction of electrophysiological features from neural activity data. This tool allows to select electrophysiological traces of interest, fetched from public repositories or from users’ own data, and provides ad hoc functionalities to extract relevant features. The output files are properly formatted for further analysis, including data-driven neural model optimization.https://www.frontiersin.org/articles/10.3389/fninf.2021.713899/fullelectrophysiologydata analysisonline resourcesneural modelsEBRAINS
collection DOAJ
language English
format Article
sources DOAJ
author Luca L. Bologna
Roberto Smiriglia
Dario Curreri
Michele Migliore
spellingShingle Luca L. Bologna
Roberto Smiriglia
Dario Curreri
Michele Migliore
The EBRAINS NeuroFeatureExtract: An Online Resource for the Extraction of Neural Activity Features From Electrophysiological Data
Frontiers in Neuroinformatics
electrophysiology
data analysis
online resources
neural models
EBRAINS
author_facet Luca L. Bologna
Roberto Smiriglia
Dario Curreri
Michele Migliore
author_sort Luca L. Bologna
title The EBRAINS NeuroFeatureExtract: An Online Resource for the Extraction of Neural Activity Features From Electrophysiological Data
title_short The EBRAINS NeuroFeatureExtract: An Online Resource for the Extraction of Neural Activity Features From Electrophysiological Data
title_full The EBRAINS NeuroFeatureExtract: An Online Resource for the Extraction of Neural Activity Features From Electrophysiological Data
title_fullStr The EBRAINS NeuroFeatureExtract: An Online Resource for the Extraction of Neural Activity Features From Electrophysiological Data
title_full_unstemmed The EBRAINS NeuroFeatureExtract: An Online Resource for the Extraction of Neural Activity Features From Electrophysiological Data
title_sort ebrains neurofeatureextract: an online resource for the extraction of neural activity features from electrophysiological data
publisher Frontiers Media S.A.
series Frontiers in Neuroinformatics
issn 1662-5196
publishDate 2021-08-01
description The description of neural dynamics, in terms of precise characterizations of action potential timings and shape and voltage related measures, is fundamental for a deeper understanding of the neural code and its information content. Not only such measures serve the scientific questions posed by experimentalists but are increasingly being used by computational neuroscientists for the construction of biophysically detailed data-driven models. Nonetheless, online resources enabling users to perform such feature extraction operation are lacking. To address this problem, in the framework of the Human Brain Project and the EBRAINS research infrastructure, we have developed and made available to the scientific community the NeuroFeatureExtract, an open-access online resource for the extraction of electrophysiological features from neural activity data. This tool allows to select electrophysiological traces of interest, fetched from public repositories or from users’ own data, and provides ad hoc functionalities to extract relevant features. The output files are properly formatted for further analysis, including data-driven neural model optimization.
topic electrophysiology
data analysis
online resources
neural models
EBRAINS
url https://www.frontiersin.org/articles/10.3389/fninf.2021.713899/full
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