Changes for page Tools and services documentation
Last modified by graber on 2023/09/28 09:25
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... ... @@ -73,11 +73,13 @@ 73 73 "The Virtual Brain" Project (TVB Project) has the purpose of offering modern tools to the Neurosciences community, for computing, simulating and analyzing functional and structural data of human brains, brains modeled at the level of population of neurons.| 74 74 75 75 |**[[The Virtual Brain Web-App>>url:http://docs.thevirtualbrain.org/]]** 76 -The Virtual Brain Web App at HBP.|**[[NeuroR>>url:https://elephant.readthedocs.io/en/latest/index.html]]**NeuroR is a collection of tools to repair morphologies.|**[[Local Field Potentials in Python>>url:https://lfpy.readthedocs.io/]]**LFPy is a Python module for the calculation of extracellular potentials and magnetic signals from activity in multicompartment neuron and network models.| 76 +The Virtual Brain Web App at HBP.|**[[NeuroR>>url:https://elephant.readthedocs.io/en/latest/index.html]]** 77 +NeuroR is a collection of tools to repair morphologies.|**[[Local Field Potentials in Python>>url:https://lfpy.readthedocs.io/]]** 78 +LFPy is a Python module for the calculation of extracellular potentials and magnetic signals from activity in multicompartment neuron and network models.| 77 77 78 -|**[[Snudda>>url:https://github.com/Hjorthmedh/Snudda/wiki]]**Snudda is a tool that allows the user to place neurons within multiple volumes, then performs touch detection to infer where putative synapses are based on reconstructed neuron morphologies. 80 +|**[[Snudda>>url:https://github.com/Hjorthmedh/Snudda/wiki]]** 81 +Snudda is a tool that allows the user to place neurons within multiple volumes, then performs touch detection to infer where putative synapses are based on reconstructed neuron morphologies. 79 79 80 - 81 81 === Neurorobotics === 82 82 83 83 |**[[Neurorobotics Platform>>url:https://www.neurorobotics.net/Documentation/nrp/user_manual/index.html]]** ... ... @@ -86,10 +86,14 @@ 86 86 === Medical data analytics === 87 87 88 88 |**[[Bids Manager & Pipeline>>url:https://github.com/Dynamap/BIDS_Manager]]** 89 -Bids Manager is a tool that allows various users to easily import and explore databases in BIDS format. Bids Pipeline, an extension of Bids Manager, allows to launch process on BIDS database.|**[[Brainstorm>>url:https://neuroimage.usc.edu/brainstorm/Introduction]]**Brainstorm is a collaborative, open-source application dedicated to the analysis of brain recordings: 90 -MEG, EEG, fNIRS, ECoG, depth electrodes and multiunit electrophysiology.|**[[HiBoP>>url:https://collab.humanbrainproject.eu/#/collab/78584/nav/531987?state=uuid%3Df72e40d9-a0bf-4ab7-8a27-462911107c5f]]**3D visualization software for intracranial EEG.| 91 +Bids Manager is a tool that allows various users to easily import and explore databases in BIDS format. Bids Pipeline, an extension of Bids Manager, allows to launch process on BIDS database.|**[[Brainstorm>>url:https://neuroimage.usc.edu/brainstorm/Introduction]]** 92 +Brainstorm is a collaborative, open-source application dedicated to the analysis of brain recordings: 93 +MEG, EEG, fNIRS, ECoG, depth electrodes and multiunit electrophysiology.|**[[HiBoP>>url:https://collab.humanbrainproject.eu/#/collab/78584/nav/531987?state=uuid%3Df72e40d9-a0bf-4ab7-8a27-462911107c5f]]** 94 +3D visualization software for intracranial EEG.| 91 91 92 -|**[[ImaGIN>>url:https://wiki.ebrains.eu/bin/view/Collabs/quicknii-and-visualign]]**SPM-based Matlab toolbox for processing intracranial EEG recordings (SEEG and ECOG).|**[[IntranAt Electrodes>>url:https://intranat.readthedocs.io/]]**A software to visualize electrodes implantation on image data and prepare database for group studies. 96 +|**[[ImaGIN>>url:https://wiki.ebrains.eu/bin/view/Collabs/quicknii-and-visualign]]** 97 +SPM-based Matlab toolbox for processing intracranial EEG recordings (SEEG and ECOG).|**[[IntranAt Electrodes>>url:https://intranat.readthedocs.io/]]** 98 +A software to visualize electrodes implantation on image data and prepare database for group studies. 93 93 94 94 === Neuromorphic computing === 95 95