Changes for page EBRAINS Bilbao TVB Hands-on
Last modified by emrebasp on 2024/05/31 14:36
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... ... @@ -14,18 +14,18 @@ 14 14 ((( 15 15 = What can I find here? = 16 16 17 -This collab contains a partof the materials which will be used during the hands-on session on 4 June 2024, during EBRAINS Brain Simulation Workshop taking place in Bilbao: [[https:~~/~~/www.bcamath.org/events/ebrains2024/en/>>url:https://www.bcamath.org/events/ebrains2024/en/]].17 +This collab contains the materials which will be used during the hands-on session on 4 June 2024, during EBRAINS Brain Simulation Workshop taking place in Bilbao: [[https:~~/~~/www.bcamath.org/events/ebrains2024/en/>>https://www.bcamath.org/events/ebrains2024/en/]]. 18 18 19 -The objective of this hands-on session is to create a familiarity of TVB for the participant by performing simulations related to different brain states andepileptic dynamics. Atthe beginning, we willdescribetheTVBframeworkandits buildingblocks. Then,inPartI,we willseea mean-fieldframeworkmodeling neuronal population dynamics.generalizationofthis framework to thewhole-brainscaleviaTVB. InPartIII,wewillseean exampleepilepticscenario ofseizurepropagation byusingTVB.PartIand PartIIcan be found in the drive, and they are accessible in the lab.For Part III, we refer to the following collab: [[https:~~/~~/wiki.ebrains.eu/bin/view/Collabs/ebrains-baltic-nordic-school-2024/>>https://wiki.ebrains.eu/bin/view/Collabs/ebrains-baltic-nordic-school-2024/]].19 +The objective of this hands-on session is to create a familiarity of TVB for the participant by performing simulations related to different brain states. In Part I, we will see a mean-field framework modeling neuronal population dynamics. It is an AdEx mean-field system modeling the population dynamics of a pair of excitatory and inhibitory neuronal populations with adaptation. We will use this framework to simulate brain states at population level. In Part II, we will see that this mean-field framework can be used to approximate the dynamics of a brain region, and a network of these mean-field systems can be used to perform simulations of different brain states on the whole-brain scale via TVB. All these parts can be found in the drive, and they are accessible in the lab. 20 20 21 21 = Requirements = 22 22 23 23 Access to the notebooks and materials requires to have an EBRAINS account. 24 24 25 -Participants are also suggested to download the materials in case of connection issues. The material and notebooks can be downloaded by clicking on "Drive" on the left hand side. The participants are also suggested to run the cells with the title "Initialization" in mainAdEx.ipn If the notebooks arerunlocally, then "%matplotlib widget" should be disabled by commenting it in the corresponding cells.25 +Participants are also suggested to download the materials in case of connection issues. The material and notebooks can be downloaded by clicking on "Drive" on the left hand side. If the notebooks are locally run, then "%matplotlib widget" should be disabled by commenting it in the corresponding cells. 26 26 27 27 28 -TVB installation can be done via the following link: [[https:~~/~~/www.thevirtualbrain.org/tvb/zwei/brainsimulator-software>> url:https://www.thevirtualbrain.org/tvb/zwei/brainsimulator-software]]in EBRAINS Collab.28 +Finally, TVB installation can be done via the following link: [[https:~~/~~/www.thevirtualbrain.org/tvb/zwei/brainsimulator-software>>https://www.thevirtualbrain.org/tvb/zwei/brainsimulator-software]]. Once it is installed, it can be used for a variety of simulations which are found on EBRAINS Collab. 29 29 30 30 = References = 31 31