Difference between revisions of "Parth Amin"

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**[https://onedrive.live.com/redir?resid=DBCB19D6C9CCFFA9!128&authkey=!ACqG8fvm0GR5MBU&ithint=file%2c.pptx Neruosurgical Planning]
 
**[https://onedrive.live.com/redir?resid=DBCB19D6C9CCFFA9!128&authkey=!ACqG8fvm0GR5MBU&ithint=file%2c.pptx Neruosurgical Planning]
 
**[https://onedrive.live.com/redir?resid=DBCB19D6C9CCFFA9!141&authkey=!ACIPIax54RMwvMQ&ithint=file%2cpptx Slicer4 Quantitative Imaging]
 
**[https://onedrive.live.com/redir?resid=DBCB19D6C9CCFFA9!141&authkey=!ACIPIax54RMwvMQ&ithint=file%2cpptx Slicer4 Quantitative Imaging]
**[https://onedrive.live.com/redir?resid=DBCB19D6C9CCFFA9!140&authkey=!ABsHUY7CFBFdAw4&ithint=file%2cpptx 3D Visualization of DICOM images for Radiology Applications]
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**[https://onedrive.live.com/redir?resid=DBCB19D6C9CCFFA9!152&authkey=!ADpqS1-jMKKFc54&ithint=file%2cpptx 3D Visualization of DICOM images for Radiology Applications]
  
  

Revision as of 13:47, 29 September 2014

Home < Parth Amin

This page is intended to document the work by Parth Amin during his lab hours.


Lung Segmentation:

Segmentation and 3D surface reconstruction of the lung and pulmonary vessels. From the DataStore module in Slicer, the arteries and veins from the original model of pulmonary vessels can be viewed. In the image below, it represents the most recent status of the segmentation of the lung. The label maps and 3D model is shown in the screenshot to represent the current segmentation. Picture1.png