Attention: Data Proxy will be migrated from SWIFT to S3 storage at Friday, the 9th of May 2025 starting from 9pm CEST (my timezone). For more details, please join the rocket chat channel https://chat.ebrains.eu/channel/data-proxy-user-group


Version 37.1 by dionperd on 2024/04/08 12:51

Hide last authors
dionperd 31.1 1 == ==
dionperd 1.1 2
dionperd 31.1 3 [[image:VirtualBrainClinicalResearch.png]]
dionperd 20.1 4
dionperd 31.1 5 == **Week 7 “The Virtual Brain and multiscale co-simulation” – Dr. Dionysios Perdikis** ==
dionperd 2.1 6
dionperd 31.1 7 August 9th, 2022
dionperd 1.1 8
dionperd 2.1 9
dionperd 37.1 10 == (% style="color:#e74c3c" %)**TVB-multiscale JupyterHub apps are now deprecated! See:** (%%)**[[https:~~/~~/wiki.ebrains.eu/bin/view/Collabs/the-virtual-brain-multiscale/>>url:https://wiki.ebrains.eu/bin/view/Collabs/the-virtual-brain-multiscale/]] (% style="color:#e74c3c" %)about how to run TVB-multiscale (TVB-NEST, TVB-NetPyNE (NEURON), TVB-ANNarchy) on EBRAINS!(%%)** ==
11
12
dionperd 32.1 13 === What can I find here? ===
14
dionperd 34.1 15 * [[Presentation slides>>attach:2022-08-09_TVB-multiscale_SummerVirtualCourse.pdf]] from the course's lecture.
dionperd 32.1 16 * Materials recommended for further study
17 * Guid to run the notebook TVB-NEST co-simulation demonstrated in the course.
18
dionperd 34.1 19 === ===
dionperd 32.1 20
dionperd 31.1 21 === Recommendation for self-study ===
dionperd 2.1 22
dionperd 31.1 23 * [[TVB advanced tutorials>>https://training.incf.org/course/virtual-brain-node-6-workshop]]
24 * [[Schirner, Domide, Perdikis, Triebkorn, Stefanovski, Pai, Prodan, Valean, Palmer, Langford, Blickensdörfer, van der Vlag, Diaz-Pier, Peyser, Woodman, Zehl, Fousek, Petkoski, Kusch, Hashemi, Marinazzo, Mangin, Flöel, Akintoye, Stahl, Deco, McIntosh, Hilgetag, Morgan, Schuller, Upton, McMurtrie, Dickscheid, Bjaalie, Amunts, Mersmann, Jirsa, Ritter (2022). Brain Simulation as a Cloud Service: The Virtual Brain on the European Research Platform EBRAINS. Neuroimage>>https://www.sciencedirect.com/science/article/pii/S1053811922001021]]
25 * (((
26 [[Sanz-Leon, P., Knock, S. A., Spiegler, A., & Jirsa, V. K. (2015). Mathematical framework for large-scale brain network modeling in The Virtual Brain. Neuroimage>>https://www.sciencedirect.com/science/article/pii/S1053811915000051]]
27 )))
28
dionperd 32.1 29 === ===
dionperd 31.1 30
dionperd 32.1 31 === Guide to run the course's notebook ===
dionperd 2.1 32
dionperd 32.1 33 1. Run the EBRAINS TVB-Multiscale app by browsing to [[https:~~/~~/tvb-multiscale.apps.hbp.eu/>>url:https://tvb-multiscale.apps.hbp.eu/]] and logging in with your EBRAINS account. (The first time you log-in, you might need to try several times by refreshing the page, until it works for you!)
34 1. Navigate to "TVB-Multiscale-Examples/documented_example_notebooks" folder, and upload the [[WilsonCowan.ipynb notebook>>path:/bin/download/Collabs/tvb-multiscale-cosim-mcgillsummerschool/INCF%20Neuroinformatics%20Assembly%202022%20training%20workshop.%20Enabling%20multi-scale%20data%20integration%3A%20Turning%20data%20to%20knowledge./WebHome/WilsonCowan.ipynb?rev=1.1]], to the "Contributed-Notebooks" folder, which offers user-specific persistent storage.
35 1. Run the WilsonCowan.ipynb notebook.
dionperd 31.1 36
dionperd 16.1 37 == ==