Warning:  Due to planned infrastructure maintenance, the EBRAINS Wiki and EBRAINS Support system will be unavailable for up to three days starting Monday, 14 July. During this period, both services will be inaccessible, and any emails sent to the support address will not be received.

Attention: We are currently experiencing some issues with the EBRAINS Drive. Please bear with us as we fix this issue. We apologise for any inconvenience caused.


Last modified by emrebasp on 2024/05/31 14:36

From version 10.1
edited by emrebasp
on 2024/05/27 14:33
Change comment: There is no comment for this version
To version 10.2
edited by emrebasp
on 2024/05/27 14:42
Change comment: There is no comment for this version

Summary

Details

Page properties
Content
... ... @@ -23,9 +23,34 @@
23 23  Access to the notebooks and materials requires to have an EBRAINS account.
24 24  
25 25  Participants are also suggested to download the materials and install TVB locally in case of connection issues. The installation can be done via the following link: [[https:~~/~~/www.thevirtualbrain.org/tvb/zwei/brainsimulator-software>>https://www.thevirtualbrain.org/tvb/zwei/brainsimulator-software]] .
26 +
27 += References =
28 +
29 +* (((
30 +Sanz-Leon P., Knock S. A., Spiegler A., Jirsa V. K. (2015) [[Mathematical framework for large-scale brain network modeling in The Virtual Brain>>url:https://www.sciencedirect.com/science/article/pii/S1053811915000051]]. Neuroimage. 2015 May 1; 111:385-430.
26 26  )))
32 +* (((
33 +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>>url:https://www.sciencedirect.com/science/article/pii/S1053811922001021]]. NeuroImage. 2022 May 1;251:118973.
34 +)))
35 +* (((
36 +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>>url:https://www.sciencedirect.com/science/article/pii/S1053811923005542]]. NeuroImage. 2023 Dec 1;283:120403.
37 +)))
38 +* (((
39 +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>>url:https://academic.oup.com/nsr/article/11/5/nwae079/7616087]]. National Science Review. 2024 May;11(5):nwae079.
40 +)))
41 +* (((
42 +Baspinar, E., Cecchini, G., DePass, M., Andujar, M., Pani, P., Ferraina, S., Moreno-Bote, R., Cos, I., Destexhe, A. (2023). A biologically plausible decision-making model based on interacting cortical columns. bioRxiv, 2023-02.
27 27  
44 +[3]: Di Volo, M., Romagnoni, A., Capone, C., Destexhe, A. (2019). Biologically realistic mean-field models of conductance-based networks of spiking neurons with adaptation. Neural Computation, 31(4), 653-680.
28 28  
46 +[1]: Goldman, J. S., Kusch, L., Aquilue, D., Yalçınkaya, B. H., Depannemaecker, D., Ancourt, K., Nghiem, T. E., Jirsa, V., Destexhe, A. (2023). A comprehensive neural simulation of slow-wave sleep and highly responsive wakefulness dynamics. Frontiers in Computational Neuroscience, 16, 1058957.
47 +)))
48 +* (((
49 +[2]: Sacha, M., Goldman, J. S., Kusch, L., Destexhe, A. (2024). Asynchronous and slow-wave oscillatory states in connectome-based models of mouse, monkey and human cerebral cortex. Applied Sciences, 14(3), 1063.
50 +)))
51 +)))
52 +
53 +
29 29  (% class="col-xs-12 col-sm-4" %)
30 30  (((
31 31  {{box title="**Contents**"}}