... |
... |
@@ -38,4 +38,14 @@ |
38 |
38 |
**Level**: intermediate(%%) **Type**: interactive tutorial |
39 |
39 |
|
40 |
40 |
In this tutorial we will go over how to export a cell to neuroml, create a LEMS simulation able to run the neuroml cell and then how to run the simulation. |
|
41 |
+=== [[Tsodyks-Markram model of short-term synaptic plasticity>>https://github.com/BlueBrain/BluePyOpt/blob/master/examples/tsodyksmarkramstp/tsodyksmarkramstp.ipynb||rel=" noopener noreferrer" target="_blank"]] === |
41 |
41 |
|
|
43 |
+**Level**: intermediate(%%) **Type**: interactive tutorial |
|
44 |
+ |
|
45 |
+In this notebook we demonstrate how to fit the parameters of the Tsodyks-Markram model to a given in vitro somatic recording. The in vitro trace used here shows a typical L5TTPC-L5TTPC depressing connection, kindly provided by Rodrigo Perin (EPFL). |
|
46 |
+=== [[Optimization of burst and tonic firing in thalamo-cortical neurons>>https://github.com/BlueBrain/BluePyOpt/blob/master/examples/thalamocortical-cell/thalamocortical-cell_opt.ipynb||rel=" noopener noreferrer" target="_blank"]] === |
|
47 |
+ |
|
48 |
+**Level**: intermediate(%%) **Type**: interactive tutorial |
|
49 |
+ |
|
50 |
+In this tutorial we will go over how to set up the cell model and the cell evaluator, run an optimisation and how to analyse optimisation results. |
|
51 |
+ |