Last modified by teodoramisan on 2026/02/13 10:11

From version 77.2
edited by teodoramisan
on 2026/02/13 10:05
Change comment: There is no comment for this version
To version 68.1
edited by teodoramisan
on 2026/02/12 11:30
Change comment: There is no comment for this version

Summary

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8 8  
9 9  == Purpose ==
10 10  
11 -This is a Jupyter Lab extension that offers graphical support for TVB and VBI workflows. It is already available in the EBRAINS Lab and it allows users to configure and execute TVB simulations and VBI inference workflows directly from a GUI, while drastically reducing the complexity of configuring them inside a Jupyter Lab notebook.
11 +This is a Jupyter Lab extension that offers graphical support for TVB and VBI workflows. It is already available in the EBRAINS Lab and it allows users to configure and execute TVB simulations and VBI inference workflows directly from a GUI, while drastically reducing the complexity of configuring them inside a Jupyter Lab notebook. Try edit
12 12  
13 13  {{html}}
14 14  <iframe width="1200" height="450" src="https://www.youtube.com/embed/-cjZOsU6PBg" title="YouTube video player" frameborder="0" allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" allowfullscreen></iframe>
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142 142  [[image:export-model-configuration.png||alt="image-20221116130425-1.png" data-xwiki-image-style-alignment="center" height="763" width="1000"]]
143 143  
144 144  
145 -=== 2. Visualize time series resulted from TVB simulations ===
145 +=== 2. Visualize time series resulted from simulations ===
146 146  
147 147  This functionality is available for the **StoreResultsToDrive** component. Right click on the **StoreResultsToDrive** and select the **Open Viewer** option:
148 148  
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156 156  
157 157  [[image:timeseries-plotly.png||alt="view3.png" height="593" width="1100"]]
158 158  
159 -
160 -=== 3. Visualize posterior samples with a pairplot (VBI inferenece) ===
161 -
162 -This functionality is available for the **SamplePosterior** component. Right click on the component and select the **Open Viewer** functionality.
163 -
164 -This opens a new JupyterLab tab with an editable notebook. After following the instructions in the notebook, you will generate a pairplot of the posterior samples, showing the distribution of each parameter (uncertainty) and the relationships between parameters.
165 -
166 -*Make sure the workflow has been executed so the viewer has data to load.
167 -
168 -[[image:plot-posteriors.png||height="593" width="1100"]]
169 -
170 -
171 -=== 4. Visualize time series from VBI simulations ===
172 -
173 -This functionality is available for the **SimulationRunner** component. Right click on the component and select the **Open Viewer** functionality.
174 -
175 -This opens a new JupyterLab tab with an editable notebook. After following the instructions in the notebook, you will see a simple time-series plot of the simulated model signal over time.
176 -
177 -*Make sure the workflow has been executed so the viewer has data to load.
178 -[[image:plot-timeseries-vbi.png||height="592" width="1100"]]
179 -
180 180  == ==
181 181  
182 182  == Workflow examples ==
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185 185  === 1. Full TVB Simulation workflow ===
186 186  )))
187 187  
188 -Contains all TVB components necessary for running a TVB simulation (e.g., connectivity, coupling, model, integrator, monitor, simulator).
167 +Contains all TVB components necessary for running a TVB simulation (i.e. connectivity, coupling, model, integrator, monitor, simulator).
189 189  
190 190  {{html}}
191 191  <iframe width="1280" height="720" src="https://www.youtube.com/embed/bmqPlIJsWLk" title="YouTube video player" frameborder="0" allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" allowfullscreen></iframe>
192 192  {{/html}}
193 193  
194 -=== 2. Full VBI Inference workflow ===
195 195  
196 -Contains all VBI components required to run an inference workflow, from prior sampling and simulation to posterior training and posterior sampling.
174 +=== 2. Configuring model parameters using the PhasePlaneWidget: ===
197 197  
198 -The workflow starts with **ConfigInference**, which builds the configuration inputs needed by the workflow. It samples parameter values from the prior distribution to generate theta and prepares the feature-extraction configuration (cfg) used later in the pipeline.
199 -
200 -
201 -[[image:vbi_workflow.png||height="590" width="1100"]]
202 -
203 -=== 3. Configuring model parameters using the PhasePlaneWidget: ===
204 -
205 205  Same workflow as before, but the parameter for the model used in simulation are set using the PhasePlaneWidget.
206 206  
207 207  {{html}}
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208 208  <iframe width="1280" height="720" src="https://www.youtube.com/embed/jhGfYul1z9k" title="YouTube video player" frameborder="0" allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" allowfullscreen></iframe>
209 209  {{/html}}
210 210  
211 -=== 4. Using siibra to retrieve connectivities from the EBRAINS KG ===
212 212  
183 +=== 3. Using siibra to retrieve connectivities from the EBRAINS KG ===
184 +
213 213  A simulation workflow where **siibra **is used to retrieve a connectivity from the EBRAINS KG. That connectivity is fed into a TVB Simulator, where the rest of the parameters (coupling, model, etc.) are set to default values.
214 214  
215 215  {{html}}
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216 216  <iframe width="1280" height="720" src="https://www.youtube.com/embed/hnqTpFGCYMg" title="YouTube video player" frameborder="0" allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" allowfullscreen></iframe>
217 217  {{/html}}
218 218  
219 -=== 5. Run a workflow as an HPB job ===
220 220  
192 +=== 4. Run a workflow as an HPB job ===
193 +
221 221  A workflow simulation which is run remotely, by submitting a job to an HPC site and getting back the results (TimeSeries object).
222 222  
223 -=== 6. Parallel simulations workflow ===
224 -
225 -This example demonstrates **Parameter Space Exploration** (PSE) by running multiple TVB simulations in parallel for different parameter combinations.
226 -
227 -The workflow uses two nested ForEach components to iterate over coupling and conduction speed sets of values. For each (coupling, conduction_speed) pair, a simulation run is executed with the help of the RunParallelProcess component, which runs the workflow body in separate worker processes (using multiprocessing + dill).
228 -
229 -[[image:parallel-simulations.png||height="590" width="1100"]]
230 -
231 -
232 232  {{html}}<iframe width="1280" height="720" src="https://www.youtube.com/embed/M6rZClFgRrM" title="YouTube video player" frameborder="0" allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" allowfullscreen></iframe>{{/html}}
233 233  
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TVB Widgets