Medical Image Processing

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=Medical Image Processing=
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|[[Image:MedicalSegmentationGui.png|thumb|260px|GUI for displaying hierarchical segmentation results to detect '''stroke lesions'''.]]
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|[[Image:MedicalSegmentationGui.png|thumb|221px|GUI for displaying hierarchical segmentation results to detect '''stroke lesions''']]
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||[[Image:Medical_Ultrasound_Training_Simulator1.jpg|thumb|155px|Medical ultrasound training simulator in operation]]
|[[Image:Medical.jpg|thumb|180px|Medical image processing poster]]
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||[[Image:001general image.jpg|thumb|300px|Close up of the medical ultrasound training simulator system]]
 
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=Ultrasound=
=Medical Image Processing=
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==Digitizing==
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To perform measurement with a caliper such as the [http://www.immersion.com/digitizer/ Microscribe], it is necessary to understand the [[kinematic chain]] of the system.
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==3D data processing==
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The MMVL is doing research on 3D Medical Image Processing. Exspecially for processing of 3D data, the [http://vtk.org/ Visualisation Toolkit] has proven to be useful. [[Iso Surface Extraction|Iso Surface Extraction]] is an example, which demonstrates, how powerful [http://vtk.org/ VTK] is.
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==Ultrasound==
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Equipment:
 
Equipment:
  
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Convex Ultrasound probe(3MHz to 7MHz): [http://www.telemed.lt/prb_scan_eb128_en.htm C4.5/50/128Z]
 
Convex Ultrasound probe(3MHz to 7MHz): [http://www.telemed.lt/prb_scan_eb128_en.htm C4.5/50/128Z]
  
=Past projects=
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=On going projects=
'''Medical Ultrasound Training Simulation Using Haptic Force Feedback Mechanism''' (By MSc student, Jin Quan Tissa Tan)
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'''Medical Ultrasound Training Simulation Using Haptic Force Feedback Mechanism'''  
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(By MSc student, Jin Quan Tissa Tan, Supervisor: [mailto:A.N.Selvan@REMOVETHISshu.ac.uk Arul N. Selvan] )
  
 
The aim of the project was to create a highly realistic (haptic-based) medical ultrasound training simulator for training a sonographer. The purpose of this simulator is to provide the sense of touch to the user and reconstruct the anatomy as a model using the actual ultrasound data.
 
The aim of the project was to create a highly realistic (haptic-based) medical ultrasound training simulator for training a sonographer. The purpose of this simulator is to provide the sense of touch to the user and reconstruct the anatomy as a model using the actual ultrasound data.
 
[[Image:Medical_Ultrasound_Training_Simulator1_resize.jpg]]
 
[[Image:001general image.jpg]]
 
  
 
=Links=
 
=Links=
 
* [http://www.shu.ac.uk/mmvl/research/research-active-Medical.html Official MMVL Medical Image Processing page]
 
* [http://www.shu.ac.uk/mmvl/research/research-active-Medical.html Official MMVL Medical Image Processing page]
 
* [http://vtk.org/ The Visualisation Toolkit]
 
* [http://vtk.org/ The Visualisation Toolkit]
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* [http://diamond.cs.cmu.edu/ OpenDiamond for assisting in diagnosis of breast cancer]
  
 
[[Category:Projects]]
 
[[Category:Projects]]
 
[[Category:Medical Image Processing|*Medical Image Processing]]
 
[[Category:Medical Image Processing|*Medical Image Processing]]

Latest revision as of 08:31, 27 July 2009

Contents

[edit] Medical Image Processing

GUI for displaying hierarchical segmentation results to detect stroke lesions
Medical ultrasound training simulator in operation
Close up of the medical ultrasound training simulator system

[edit] Ultrasound

Equipment:

Portable PC Based Ultrasound machine: Echo Blaster 128 INT-2Z Kit

Convex Ultrasound probe(3MHz to 7MHz): C4.5/50/128Z

[edit] On going projects

Medical Ultrasound Training Simulation Using Haptic Force Feedback Mechanism

(By MSc student, Jin Quan Tissa Tan, Supervisor: Arul N. Selvan )

The aim of the project was to create a highly realistic (haptic-based) medical ultrasound training simulator for training a sonographer. The purpose of this simulator is to provide the sense of touch to the user and reconstruct the anatomy as a model using the actual ultrasound data.

[edit] Links

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