Difference between revisions of "Walkthrough on filament models"

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After the catalogue manager opens, we create the synthetic tomogram that includes tubular looking objects in the following way:
 
After the catalogue manager opens, we create the synthetic tomogram that includes tubular looking objects in the following way:
  
[[ File:filament_step_1.png |thumb|center| 700px|step]]
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[[ File:filament_step_1.png |thumb|center| 600px|step]]
  
 
The catalogue manager will create a catalogue to archive the created tomogram and also the models that we will create around it.
 
The catalogue manager will create a catalogue to archive the created tomogram and also the models that we will create around it.
  
[[ File:filament_step_2.png |thumb|center| 700px|step]]
+
[[ File:filament_step_1.png |thumb|center| 600px|step]]
[[ File:filament_step_3.png |thumb|center| 700px|step]]
 
[[ File:filament_step_4.png |thumb|center| 700px|step]]
 
[[ File:filament_step_5.png |thumb|center| 700px|step]]
 
[[ File:filament_step_6.png |thumb|center| 700px|step]]
 
[[ File:filament_step_7.png |thumb|center| 700px|step]]
 
[[ File:filament_step_8.png |thumb|center| 700px|step]]
 
[[ File:filament_step_9.png |thumb|center| 700px|step]]
 
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[[ File:filament_step_13.png |thumb|center| 700px|step]]
 
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== Bla ==
 
== Bla ==
 
== Bla ==
 
== Bla ==
 
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== Bla ==

Revision as of 15:40, 10 August 2021

This walkthrough is a step-by-step guide that teaches how to extract subtomograms from filament-like structures using the Dynamo filament models.

Data

We are going to demonstrate the basic ideas and tools on a synthetic dataset. This data is already available in the catalogue manager. It can be accessed by first opening the catalogue manager using the command:

dcm

After the catalogue manager opens, we create the synthetic tomogram that includes tubular looking objects in the following way:

step

The catalogue manager will create a catalogue to archive the created tomogram and also the models that we will create around it.

step

Bla

Bla

Bla