Difference between revisions of "2015 Multimodal Guidance for Breast Cancer Surgery"

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Image:PW-Summer2015.png|[[2015_Summer_Project_Week#Projects|Projects List]]
 
Image:Mikael-Capture2.PNG|Fig 1. 'Stage 1'
 
Image:Mikael-Capture2.PNG|Fig 1. 'Stage 1'
 
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* David García, UC3M
 
* David García, UC3M
 
* Javier Pascau, UC3M
 
* Javier Pascau, UC3M
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* Tamas Ungi, Andras Lasso (Queen's University, Kingsotn, ON, Canada)
  
 
==Project Description==
 
==Project Description==
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<h3>Objective</h3>
 
<h3>Objective</h3>
* Development of an intraoperative guidance system for brease cancer surgery that would allow for guidance, tumor detection and localization.
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* Development of an intraoperative guidance system for breast cancer surgery that would allow for guidance, tumor detection and localization.
 
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* Record surface data using an Artec 3D scanner and visualize it in 3D Slicer (DONE)
 
* Record surface data using an Artec 3D scanner and visualize it in 3D Slicer (DONE)
 
* Communicate with the 3D Scanner through 3D slicer module (WORK IN PROGRESS)
 
* Communicate with the 3D Scanner through 3D slicer module (WORK IN PROGRESS)
* Define an acquisition protocol (WORK IN PROGRESS)
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* Define an acquisition protocol. Tamas Ungi showed their protocol and Slicer module that includes needle tracking and a possible collaboration was identified (WORK IN PROGRESS)
 
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Latest revision as of 15:20, 24 June 2015

Home < 2015 Multimodal Guidance for Breast Cancer Surgery

Key Investigators

  • Mikael Brudfors, Universidad Carlos III de Madrid (UC3M) --- formerly KTH & UBC, next UCL
  • David García, UC3M
  • Javier Pascau, UC3M
  • Tamas Ungi, Andras Lasso (Queen's University, Kingsotn, ON, Canada)

Project Description

Objective

  • Development of an intraoperative guidance system for breast cancer surgery that would allow for guidance, tumor detection and localization.

Approach, Plan

  • Possibilities of combining multiple imaging modalities (3D Scanner Surface data, US, MR) and visualizing these in 3D Slicer

Progress

  • Acquire tracked US using the PLUS toolkit (DONE)
  • Record surface data using an Artec 3D scanner and visualize it in 3D Slicer (DONE)
  • Communicate with the 3D Scanner through 3D slicer module (WORK IN PROGRESS)
  • Define an acquisition protocol. Tamas Ungi showed their protocol and Slicer module that includes needle tracking and a possible collaboration was identified (WORK IN PROGRESS)