... |
... |
@@ -176,25 +176,4 @@ |
176 |
176 |
|
177 |
177 |
Import3D tool can be used to translate common varieties of cellular morphometric data into a CellBuilder that specifies the anatomical properties of a model neuron. This Tutorial will guide you in reading a morphometric data file and converting it to a NEURON model as well as |
178 |
178 |
exploring morphometric data and fixing problems. |
179 |
|
-=== [[Segmenting a simulation of a model network – 1. Implement and test the computational model itself>>https://neuron.yale.edu/neuron/docs/1-implement-and-test-computational-model-itself-0||rel=" noopener noreferrer" target="_blank"]] === |
180 |
180 |
|
181 |
|
-**Level**: advanced(%%) **Type**: user documentation |
182 |
|
- |
183 |
|
-=== [[Segmenting a simulation of a model network – 2. Run a "complete" simulation and save its results>>https://neuron.yale.edu/neuron/docs/2-run-complete-simulation-and-save-its-results-0||rel=" noopener noreferrer" target="_blank"]] === |
184 |
|
- |
185 |
|
-**Level**: advanced(%%) **Type**: user documentation |
186 |
|
- |
187 |
|
-=== [[Segmenting a simulation of a model cell – 2. Run a "complete" simulation and save its results>>https://neuron.yale.edu/neuron/docs/2-run-complete-simulation-and-save-its-results||rel=" noopener noreferrer" target="_blank"]] === |
188 |
|
- |
189 |
|
-**Level**: advanced(%%) **Type**: user documentation |
190 |
|
- |
191 |
|
-=== [[Segmenting a simulation of a model cell – 1. Implement and test the computational model itself>>https://neuron.yale.edu/neuron/docs/1-implement-and-test-computational-model-itself||rel=" noopener noreferrer" target="_blank"]] === |
192 |
|
- |
193 |
|
-**Level**: advanced(%%) **Type**: user documentation |
194 |
|
- |
195 |
|
-=== [[Using NEURON's Optimization Tools – Tutorial 2 : Fitting a model to data>>https://neuron.yale.edu/neuron/static/docs/optimiz/model/outline.html||rel=" noopener noreferrer" target="_blank"]] === |
196 |
|
- |
197 |
|
-**Level**: advanced(%%) **Type**: user documentation |
198 |
|
- |
199 |
|
-We will go over how to create an "unoptimized" model, set up a current clamp experiment on this model, configure a MultipleRunFitter to do a "run fitness" optimization, load the Experimental Data into the iclamp Run Fitness Generator, specify the parameters that will be adjusted and finally perform the optimization. |
200 |
|
- |