Changes for page TVB EBRAINS Baltic-Nordic school 2024
Last modified by mhashemi on 2025/03/12 11:20
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... ... @@ -16,20 +16,27 @@ 16 16 17 17 * A current topic in system neuroscience literature is the presence of brain activity in the absence of a task condition. These task-negative, spontaneous fluctuations occur in the so-called **rest state**, and a recurring theme of these fluctuations is that they have a network structure. Because TVB uses the structural connectivity of the brain as the backbone for simulating spontaneous activity, resting state activity and its network structure is a prime candidate for modeling in TVB. 18 18 19 -= Whohasaccess?=19 += Other tutorials = 20 20 21 - Describe the audience of this collab.21 +In addition to these noptebooks, we also refer to the readers to the collab for the Showcase 1 of HBP: "Degeneracy in neuroscience - when is Big Data big enough" 22 22 23 +[[https:~~/~~/wiki.ebrains.eu/bin/view/Collabs/sga3-d1-5-showcase-1/>>url:https://wiki.ebrains.eu/bin/view/Collabs/sga3-d1-5-showcase-1/]] 23 23 24 24 = References = 25 25 26 26 * ((( 27 - (Palesi et al., 2020): Palesi, F.,Lorenzi,R. M.,Casellato,C.,Ritter,P., Jirsa,V.,Wheeler-kingshott,C. A. M. G.,andAngelo,E.D.(2020). **The importanceof cerebellar connectivity onsimulated brainynamics.**FrontiersCellular Neuroscience,14,1–11.28 +Sanz-Leon P, Knock SA, Spiegler A, Jirsa VK. [[Mathematical framework for large-scale brain network modeling in The Virtual Brain>>https://www.sciencedirect.com/science/article/pii/S1053811915000051]]. Neuroimage. 2015 May 1;111:385-430. 28 28 ))) 29 29 * ((( 30 - (Monteverdiet al.,2022): MonteverdiA, PalesiF,CostaA, VitaliP, PichiecchioA,CottaRamusinoM, BerniniS,JirsaV, GandiniWheeler-KingshottCAMandD’AngeloE (2022) **Subject-specificfeaturesofexcitation/inhibition profilesn neurodegenerativediseases.** Front.Aging Neurosci. 14:868342. doi:10.3389/fnagi.2022.86834231 +Schirner M, Domide L, Perdikis D, Triebkorn P, Stefanovski L, Pai R, Prodan P, Valean B, Palmer J, Langford C, Blickensdörfer A. [[Brain simulation as a cloud service: The Virtual Brain on EBRAINS>>https://www.sciencedirect.com/science/article/pii/S1053811922001021]]. NeuroImage. 2022 May 1;251:118973. 31 31 ))) 33 +* ((( 34 +Lavanga M, Stumme J, Yalcinkaya BH, Fousek J, Jockwitz C, Sheheitli H, Bittner N, Hashemi M, Petkoski S, Caspers S, Jirsa V. [[The virtual aging brain: Causal inference supports interhemispheric dedifferentiation in healthy aging>>https://www.sciencedirect.com/science/article/pii/S1053811923005542]]. NeuroImage. 2023 Dec 1;283:120403. 32 32 ))) 36 +* ((( 37 +Wang HE, Triebkorn P, Breyton M, Dollomaja B, Lemarechal JD, Petkoski S, Sorrentino P, Depannemaecker D, Hashemi M, Jirsa VK. [[Virtual brain twins: from basic neuroscience to clinical use>>https://academic.oup.com/nsr/article/11/5/nwae079/7616087]]. National Science Review. 2024 May;11(5):nwae079. 38 +))) 39 +))) 33 33 34 34 35 35 (% class="col-xs-12 col-sm-4" %)