Changes for page Interactive Exploration of Brain States and Spatio-Temporal Activity Patterns in Data-Constrained Simulations
Last modified by pierstanpaolucci on 2023/06/29 18:29
From version 23.1
edited by cristianocapone
on 2021/09/23 13:36
on 2021/09/23 13:36
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To version 5.1
edited by cristianocapone
on 2021/09/21 12:38
on 2021/09/21 12:38
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... ... @@ -1,1 +1,1 @@ 1 -Interactive Exploration of Brain States and Spatio -Temporal Activity Patterns in Data-Constrained Simulations1 +Interactive Exploration of Brain States and Spatio Temporal Activity Patterns in Data-Constrained Simulations - Content
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... ... @@ -2,8 +2,12 @@ 2 2 ((( 3 3 (% class="container" %) 4 4 ((( 5 -(% class="lead" id="HInteractiveExplorationofBrainStatesandSpatio-TemporalActivityPatternsinData-ConstrainedSimulations" %) 6 -Open the Lab link on the left to explore brain states and spatio-temporal cortical activity patterns on your own 5 += Interactive Exploration of Brain States and Spatio Temporal Activity Patterns in Data-Constrained Simulations = 6 + 7 +(% class="wikigeneratedid" %) 8 += = 9 + 10 +Explore brain states and spatio-temporal cortical activity patterns on your own 7 7 ))) 8 8 ))) 9 9 ... ... @@ -11,34 +11,18 @@ 11 11 ((( 12 12 (% class="col-xs-12 col-sm-8" %) 13 13 ((( 14 - **Howthe same networkcangeneratedifferent brainstates withtheirspecific propagation patterns and rhythms?**18 += What can I find here? = 15 15 16 -In this Jupyter Lab environment, the user can interactively change the neuromodulated fatigue parameters and observe in real-time the emergence of different categories of slow- wave wave-propagation patterns and the transition to an asynchronous regime on a columnar mean-field model equipped with lateral connections inferred from experimentally acquired cortical activity. 20 +* Notice how the table of contents on the right 21 +* is automatically updated 22 +* to hold this page's headers 17 17 18 - [[image:example1.png]]24 += Who has access? = 19 19 20 -[[image:example2.png]] 21 - 22 -The model displays the dorsal view of a mouse cortical hemisphere sampled by pixels of 100-micron size over a 25 mm2 field of view. 23 - 24 -The connectivity of the model was inferred from cortical activity acquired using GECI imaging technique. Even if the connectivity of the model was inferred from a single brain-state, the neuromodulated model supports the emergence of a rich dynamic repertoire of spatio-temporal propagation patterns, from those corresponding to deepests levels of anesthesia (spirals) to classical postero-anterior and rostro-caudal waves up to the transition to asynchronous activity, with the dissolution of the slow-wave features (1). 25 - 26 -The experimental data set from which the model has been inferred has been provided by LENS and it is available in the EBRAINS KG (2). 27 - 28 -The predecessor of this model can be found at (3). 29 - 30 -The latest version of the code presented in the drive of this collab can be found at (4). 31 - 32 -(1) Capone, C. et al. (2021) “Simulations Approaching Data: Cortical Slow Waves in Inferred Models of the Whole Hemisphere of Mouse” arXiv:2104.07445 [[https:~~/~~/arxiv.org/abs/2104.07445>>https://arxiv.org/abs/2104.07445]] 33 - 34 -(2) Resta, F., Allegra Mascaro, A. L., & Pavone, F. (2020). //Study of Slow Waves (SWs) propagation through wide-field calcium imaging of the right cortical hemisphere of GCaMP6f mice// [Data set]. EBRAINS. [[DOI: 10.25493/3E6Y-E8G>>url:https://doi.org/10.25493%2F3E6Y-E8G]] 35 - 36 -(3) Mean Field Simulation of whole mouse hemisphere with parameters inferred from optical recordings [[https:~~/~~/search.kg.ebrains.eu/instances/e572362f-9461-4f9d-81e2-b69cd44185f4>>https://search.kg.ebrains.eu/instances/e572362f-9461-4f9d-81e2-b69cd44185f4]] 37 - 38 -(% class="wikigeneratedid" id="H" %) 39 -(4) [[https:~~/~~/github.com/APE-group/InteractiveExplorationBrainStates>>https://github.com/APE-group/InteractiveExplorationBrainStates]] 26 +Describe the audience of this collab. 40 40 ))) 41 41 29 + 42 42 (% class="col-xs-12 col-sm-4" %) 43 43 ((( 44 44 {{box title="**Contents**"}} ... ... @@ -45,9 +45,6 @@ 45 45 {{toc/}} 46 46 {{/box}} 47 47 48 - 49 - 50 - 51 51 52 52 ))) 53 53 )))
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