matlab v4 files Search Results


90
MathWorks Inc binary matlab v4 files
Binary Matlab V4 Files, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/binary matlab v4 files/product/MathWorks Inc
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plexon inc offline sorter v4
Offline Sorter V4, supplied by plexon inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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offline sorter v4 - by Bioz Stars, 2026-04
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MathWorks Inc wfdb-compliant matlab v4 files
Wfdb Compliant Matlab V4 Files, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/wfdb-compliant matlab v4 files/product/MathWorks Inc
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MathWorks Inc graphical user interface (gui)
Graphical User Interface (Gui), supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/graphical user interface (gui)/product/MathWorks Inc
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graphical user interface (gui) - by Bioz Stars, 2026-04
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AXONA LIMITED tint v.4.4.12
Tint V.4.4.12, supplied by AXONA LIMITED, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/tint v.4.4.12/product/AXONA LIMITED
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tint v.4.4.12 - by Bioz Stars, 2026-04
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MathWorks Inc eeg data
Eeg Data, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/eeg data/product/MathWorks Inc
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eeg data - by Bioz Stars, 2026-04
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MathWorks Inc epat v4.9
Illustrates the fundamental workflow and principal algorithms involved in the <t>EPAT</t> toolbox analysis. Comprising four main parts, it begins with the data input stage, supporting the import of various EEG file formats. The preprocessing module encompasses parameter settings, the execution of batch preprocessing scripts, and detailed processes like ‘Process EEG One by One’ and ‘Epoch ERP One by One’. The data analysis and processing phase includes ERP analysis, EEG power spectrum analysis, connectivity analysis, and time-frequency analysis. Finally, the toolbox offers a user-friendly interactive interface, alongside a suite of visualization tools for data representation. (EEG, electroencephalography; ERP, event-related potentials; ICA, independent component analysis; PCA, principal component analysis; ICs, independent components).
Epat V4.9, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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epat v4.9 - by Bioz Stars, 2026-04
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Waters Corporation astra v.4.7
Illustrates the fundamental workflow and principal algorithms involved in the <t>EPAT</t> toolbox analysis. Comprising four main parts, it begins with the data input stage, supporting the import of various EEG file formats. The preprocessing module encompasses parameter settings, the execution of batch preprocessing scripts, and detailed processes like ‘Process EEG One by One’ and ‘Epoch ERP One by One’. The data analysis and processing phase includes ERP analysis, EEG power spectrum analysis, connectivity analysis, and time-frequency analysis. Finally, the toolbox offers a user-friendly interactive interface, alongside a suite of visualization tools for data representation. (EEG, electroencephalography; ERP, event-related potentials; ICA, independent component analysis; PCA, principal component analysis; ICs, independent components).
Astra V.4.7, supplied by Waters Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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astra v.4.7 - by Bioz Stars, 2026-04
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Waters Corporation scattering data collected in astra v4.9
Illustrates the fundamental workflow and principal algorithms involved in the <t>EPAT</t> toolbox analysis. Comprising four main parts, it begins with the data input stage, supporting the import of various EEG file formats. The preprocessing module encompasses parameter settings, the execution of batch preprocessing scripts, and detailed processes like ‘Process EEG One by One’ and ‘Epoch ERP One by One’. The data analysis and processing phase includes ERP analysis, EEG power spectrum analysis, connectivity analysis, and time-frequency analysis. Finally, the toolbox offers a user-friendly interactive interface, alongside a suite of visualization tools for data representation. (EEG, electroencephalography; ERP, event-related potentials; ICA, independent component analysis; PCA, principal component analysis; ICs, independent components).
Scattering Data Collected In Astra V4.9, supplied by Waters Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/scattering data collected in astra v4.9/product/Waters Corporation
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scattering data collected in astra v4.9 - by Bioz Stars, 2026-04
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90
OpenSim Ltd opensim v4.5
Illustrates the fundamental workflow and principal algorithms involved in the <t>EPAT</t> toolbox analysis. Comprising four main parts, it begins with the data input stage, supporting the import of various EEG file formats. The preprocessing module encompasses parameter settings, the execution of batch preprocessing scripts, and detailed processes like ‘Process EEG One by One’ and ‘Epoch ERP One by One’. The data analysis and processing phase includes ERP analysis, EEG power spectrum analysis, connectivity analysis, and time-frequency analysis. Finally, the toolbox offers a user-friendly interactive interface, alongside a suite of visualization tools for data representation. (EEG, electroencephalography; ERP, event-related potentials; ICA, independent component analysis; PCA, principal component analysis; ICs, independent components).
Opensim V4.5, supplied by OpenSim Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/opensim v4.5/product/OpenSim Ltd
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opensim v4.5 - by Bioz Stars, 2026-04
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MathWorks Inc raw 12-lead electrocardiographic recording
Illustrates the fundamental workflow and principal algorithms involved in the <t>EPAT</t> toolbox analysis. Comprising four main parts, it begins with the data input stage, supporting the import of various EEG file formats. The preprocessing module encompasses parameter settings, the execution of batch preprocessing scripts, and detailed processes like ‘Process EEG One by One’ and ‘Epoch ERP One by One’. The data analysis and processing phase includes ERP analysis, EEG power spectrum analysis, connectivity analysis, and time-frequency analysis. Finally, the toolbox offers a user-friendly interactive interface, alongside a suite of visualization tools for data representation. (EEG, electroencephalography; ERP, event-related potentials; ICA, independent component analysis; PCA, principal component analysis; ICs, independent components).
Raw 12 Lead Electrocardiographic Recording, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/raw 12-lead electrocardiographic recording/product/MathWorks Inc
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raw 12-lead electrocardiographic recording - by Bioz Stars, 2026-04
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MathWorks Inc ft_read_atlas
Illustrates the fundamental workflow and principal algorithms involved in the <t>EPAT</t> toolbox analysis. Comprising four main parts, it begins with the data input stage, supporting the import of various EEG file formats. The preprocessing module encompasses parameter settings, the execution of batch preprocessing scripts, and detailed processes like ‘Process EEG One by One’ and ‘Epoch ERP One by One’. The data analysis and processing phase includes ERP analysis, EEG power spectrum analysis, connectivity analysis, and time-frequency analysis. Finally, the toolbox offers a user-friendly interactive interface, alongside a suite of visualization tools for data representation. (EEG, electroencephalography; ERP, event-related potentials; ICA, independent component analysis; PCA, principal component analysis; ICs, independent components).
Ft Read Atlas, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Illustrates the fundamental workflow and principal algorithms involved in the EPAT toolbox analysis. Comprising four main parts, it begins with the data input stage, supporting the import of various EEG file formats. The preprocessing module encompasses parameter settings, the execution of batch preprocessing scripts, and detailed processes like ‘Process EEG One by One’ and ‘Epoch ERP One by One’. The data analysis and processing phase includes ERP analysis, EEG power spectrum analysis, connectivity analysis, and time-frequency analysis. Finally, the toolbox offers a user-friendly interactive interface, alongside a suite of visualization tools for data representation. (EEG, electroencephalography; ERP, event-related potentials; ICA, independent component analysis; PCA, principal component analysis; ICs, independent components).

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Illustrates the fundamental workflow and principal algorithms involved in the EPAT toolbox analysis. Comprising four main parts, it begins with the data input stage, supporting the import of various EEG file formats. The preprocessing module encompasses parameter settings, the execution of batch preprocessing scripts, and detailed processes like ‘Process EEG One by One’ and ‘Epoch ERP One by One’. The data analysis and processing phase includes ERP analysis, EEG power spectrum analysis, connectivity analysis, and time-frequency analysis. Finally, the toolbox offers a user-friendly interactive interface, alongside a suite of visualization tools for data representation. (EEG, electroencephalography; ERP, event-related potentials; ICA, independent component analysis; PCA, principal component analysis; ICs, independent components).

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques:

Comparison of EPAT and EEGLAB by 16 participants across 14 dimensions. * Indicates statistically significant differences.

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Comparison of EPAT and EEGLAB by 16 participants across 14 dimensions. * Indicates statistically significant differences.

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques: Comparison

Main functionality of  EPAT.

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Main functionality of EPAT.

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques: Selection

Schematic representation of the EPAT GUI and project directory and EEG file preparation. (GUI, graphical user interface; EEG, electroencephalography).

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Schematic representation of the EPAT GUI and project directory and EEG file preparation. (GUI, graphical user interface; EEG, electroencephalography).

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques:

Defining parameters in EPAT. In general, five steps are required to complete the setting of all parameters. DefineParam1: Define data import parameters for a processing project. DefineParam2: Define preprocessing and filtering parameters for EEG data. DefineParam3: Define channel selection and ICA parameters. DefineParam4: Define ERP epoch and time-frequency analysis parameters. DefineParam5: Define ERP events and conditions parameters. After clicking “Next,” a separate new interface will pop up (the previous interface will not disappear). (ICA, independent component analysis; EEG, electroencephalography; ERP, event-related potential).

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Defining parameters in EPAT. In general, five steps are required to complete the setting of all parameters. DefineParam1: Define data import parameters for a processing project. DefineParam2: Define preprocessing and filtering parameters for EEG data. DefineParam3: Define channel selection and ICA parameters. DefineParam4: Define ERP epoch and time-frequency analysis parameters. DefineParam5: Define ERP events and conditions parameters. After clicking “Next,” a separate new interface will pop up (the previous interface will not disappear). (ICA, independent component analysis; EEG, electroencephalography; ERP, event-related potential).

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques: Selection

Running the batch preprocess script in EPAT. After clicking “Step 1 Run Batch Preprocess Script” and starting the analysis, four windows appear: 1. The MATLAB command window. 2. EPAT analysis progress. 3. The Pause window. 4. The EEGLAB information pop-up window.

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Running the batch preprocess script in EPAT. After clicking “Step 1 Run Batch Preprocess Script” and starting the analysis, four windows appear: 1. The MATLAB command window. 2. EPAT analysis progress. 3. The Pause window. 4. The EEGLAB information pop-up window.

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques:

Processing EEG data in EPAT. The process EEG One by One step contains a total of seven steps. (A) General page layout. (B) The scroll channel activities, scroll component activities, and topoplot map obtained from the loaded data. (EEG, electroencephalography).

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Processing EEG data in EPAT. The process EEG One by One step contains a total of seven steps. (A) General page layout. (B) The scroll channel activities, scroll component activities, and topoplot map obtained from the loaded data. (EEG, electroencephalography).

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques:

Processing ERP data in EPAT. The Epoch ERP One by One step contains a total of eight steps. (A) General page layout. (B) Analysis process after clicking “Start” in Step 3: First, users browse through each trial from the beginning, then click the bad trial with the left mouse button and mark it. After marking, users click “Bad trials” in the lower right corner, then return to the EpochERP interface and click “Acquire bad trials”; the corresponding bad trial number will appear in the upper space. (ERP, event-related potential).

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Processing ERP data in EPAT. The Epoch ERP One by One step contains a total of eight steps. (A) General page layout. (B) Analysis process after clicking “Start” in Step 3: First, users browse through each trial from the beginning, then click the bad trial with the left mouse button and mark it. After marking, users click “Bad trials” in the lower right corner, then return to the EpochERP interface and click “Acquire bad trials”; the corresponding bad trial number will appear in the upper space. (ERP, event-related potential).

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques:

Averaged ERP results in EPAT. (A) There are five modules (1. Load parameter file; 2. Load subject list; 3. Load ERP result file; 4. Select ERP from subjects and conditions; and 5. Plot mean ERPs from multiple subjects) and a toolbar (show filenames, show event names, plot channel locations, and save channel names) in the Step 4 (Show Averaged ERP Results) interface. (B) Export amplitudes and latencies of different averaged ERP components (in the form of Excel) for statistical tests. (ERP, event-related potential).

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Averaged ERP results in EPAT. (A) There are five modules (1. Load parameter file; 2. Load subject list; 3. Load ERP result file; 4. Select ERP from subjects and conditions; and 5. Plot mean ERPs from multiple subjects) and a toolbar (show filenames, show event names, plot channel locations, and save channel names) in the Step 4 (Show Averaged ERP Results) interface. (B) Export amplitudes and latencies of different averaged ERP components (in the form of Excel) for statistical tests. (ERP, event-related potential).

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques:

Time-frequency analysis in EPAT. Step 5 (Run TF for ERP) contains four modules. (A) General page layout: Module 1: Basic settings; Module 2: Extract rhythm and TF configurations; EEG/ERP configurations for TF; Module 3: Defined TF settings; and Module 4, which is used to track the procedure (at the bottom). (B) After clicking “Show TF” and entering the time window, frequency range, and channels of interest, EPAT will show and export TF results for ERP. (TF, time-frequency; ERP, event-related potential).

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Time-frequency analysis in EPAT. Step 5 (Run TF for ERP) contains four modules. (A) General page layout: Module 1: Basic settings; Module 2: Extract rhythm and TF configurations; EEG/ERP configurations for TF; Module 3: Defined TF settings; and Module 4, which is used to track the procedure (at the bottom). (B) After clicking “Show TF” and entering the time window, frequency range, and channels of interest, EPAT will show and export TF results for ERP. (TF, time-frequency; ERP, event-related potential).

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques:

Performance comparison with existing toolboxes.

Journal: Frontiers in Neuroinformatics

Article Title: EPAT: a user-friendly MATLAB toolbox for EEG/ERP data processing and analysis

doi: 10.3389/fninf.2024.1384250

Figure Lengend Snippet: Performance comparison with existing toolboxes.

Article Snippet: The installation of EPAT toolbox is accomplished in three steps, as follows: (1) Downloading the file “EPAT V4.9” ( ). (2) Running the MATLAB command “Set path,” selecting “Add with subfolders,” then EPAT_V4, and saving.

Techniques: Comparison