Difference between revisions of "Valve Replacement"
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Image:PW-2015SLC.png|[[2015_Winter_Project_Week#Projects|Projects List]] | Image:PW-2015SLC.png|[[2015_Winter_Project_Week#Projects|Projects List]] | ||
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+ | * Enable workflow for choosing aortic annulus center | ||
+ | * Manipulate the target valve orientation by connecting two points | ||
+ | * Ask Csaba lots of questions | ||
+ | * Program in Python | ||
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<h3>Progress</h3> | <h3>Progress</h3> | ||
− | * | + | * Module created |
+ | * Python learned (in progress) | ||
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Latest revision as of 16:18, 9 January 2015
Home < Valve ReplacementKey Investigators
- Adam Rankin (Robarts Research Institute, London, Canada)
Background
- Current approach for aortic valve replacement using a valve prosthesis
- Trans-femoral or trans-apical approach used to insert valve to desired location
- Valve deployment bubble expanded or restricting sheath removed to deploy valve permanently
- Current guidance technique involves angiography and fluoroscopy
- PLUS updated to support capture of 3D+t data
- Philips ie33 probe support in PLUS experimental
Project Description
Objective
- Brainstorm workflow and objectives for prototype experiments
- Implement Slicer module (in python) to accomplish this workflow
Approach, Plan
- Enable workflow for choosing aortic annulus center
- Manipulate the target valve orientation by connecting two points
- Ask Csaba lots of questions
- Program in Python
Progress
- Module created
- Python learned (in progress)