EEGLAB is an open source signal processing environment for electrophysiological signals running on Matlab and developed at the SCCN/UCSD
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Updated
Dec 18, 2024 - MATLAB
EEGLAB is an open source signal processing environment for electrophysiological signals running on Matlab and developed at the SCCN/UCSD
ERPLAB Toolbox is a free, open-source Matlab package for analyzing ERP data. It is tightly integrated with EEGLAB Toolbox, extending EEGLAB’s capabilities to provide robust, industrial-strength tools for ERP processing, visualization, and analysis. A graphical user interface makes it easy for beginners to learn, and Matlab scripting provides eno…
Contains tools for EEG standardized preprocessing
Automatic EEG IC classification plugin for EEGLAB
Microstate EEGlab toolbox
The decoding of continuous EEG rhythms during action observation (AO), motor imagery (MI), and motor execution (ME) for standing and sitting. (IEEE Sensors Journal)
SIFT is an EEGLAB-compatible toolbox for analysis and visualization of multivariate causality and information flow between sources of electrophysiological (EEG/ECoG/MEG) activity. It consists of a suite of command-line functions with an integrated Graphical User Interface for easy access to multiple features. There are currently six modules: dat…
Detection of ECG events (R wave, T wave) for the preprocessing of the heartbeat evoked potential
EEG Artifact Removal Using Deep Learning (source code, IEEE Journal of Biomedical and Health Informatics)
An easy to use decoding toolbox for Matlab users.
A MATLAB application to automatize analysis of EEG data
BLINKER: Automated blink detector for EEG
Complete EEG analysis framework written in matlab, using EEGLAB and BRAINSTORM
General pipeline used for analyzing EEG data where Raw EEG data gets transformed into ERPS and Stats are done in R (Mixed effects models)
EEGLAB-compatible analysis software for manual / visual sleep stage scoring, signal processing and event marking of polysomnographic (PSG) data for MATLAB.
Code used for research project. Our objective was to characterize brain responses to Binaural Beats (from brainstem responses to cortical connectivity patterns)
Reject and interpolate channels on a epoch by epoch basis (EEGLAB plugin)
EEGLAB scripts for FFT analysis of multiple EEG datasets + data visualization.
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