Version 8.1 by petkoski on 2024/05/21 10:57

Hide last authors
petkoski 1.1 1 (% class="jumbotron" %)
2 (((
3 (% class="container" %)
4 (((
petkoski 7.1 5 = Building personalized brain network models with TVB =
petkoski 1.1 6
petkoski 7.1 7 Spase Petkoski, Damien Depannemaecker and Pierpaolo Sorrentino
petkoski 1.1 8 )))
9 )))
10
11 (% class="row" %)
12 (((
13 (% class="col-xs-12 col-sm-8" %)
14 (((
15 = What can I find here? =
16
petkoski 7.1 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.
petkoski 1.1 18
19 = Who has access? =
20
21 Describe the audience of this collab.
petkoski 7.1 22
23
24 = References =
25
26 * (((
27 (Palesi et al., 2020): Palesi, F., Lorenzi, R. M., Casellato, C., Ritter, P., Jirsa, V., Wheeler- kingshott, C. A. M. G., and Angelo, E. D. (2020). **The importance of cerebellar connectivity on simulated brain dynamics. **Frontiers in Cellular Neuroscience, 14,1–11.
petkoski 1.1 28 )))
petkoski 7.1 29 * (((
30 (Monteverdi et al., 2022): Monteverdi A, Palesi F, Costa A, Vitali P, Pichiecchio A, Cotta Ramusino M, Bernini S, Jirsa V, Gandini Wheeler-Kingshott CAM and D’Angelo E (2022) **Subject-specific features of excitation/inhibition profiles in neurodegenerative diseases.** Front. Aging Neurosci. 14:868342. doi: 10.3389/fnagi.2022.868342
31 )))
32 )))
petkoski 1.1 33
34
35 (% class="col-xs-12 col-sm-4" %)
36 (((
37 {{box title="**Contents**"}}
38 {{toc/}}
39 {{/box}}
40
41
42 )))
43 )))