Difference between revisions of "Project Week 25/Improving Depth Perception in Interventional Augmented Reality Visualization/Sonification"
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Back to [[Project_Week_25#Projects|Projects List]] | Back to [[Project_Week_25#Projects|Projects List]] | ||
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==Key Investigators== | ==Key Investigators== | ||
<!-- Key Investigator bullet points --> | <!-- Key Investigator bullet points --> | ||
− | *Simon Drouin (NeuroImaging and Surgical Technologies (NIST) Lab, Canada) | + | *[http://nist.mni.mcgill.ca/?page_id=369 Simon Drouin] (NeuroImaging and Surgical Technologies (NIST) Lab, Canada) |
− | *David Black (Fraunhofer Institute for Medical Image Computing MEVIS, Bremen, Germany) | + | *[http://www.researchgate.net/profile/David_Black11 David Black] (University of Bremen; Fraunhofer Institute for Medical Image Computing MEVIS, Bremen, Germany) |
− | *Christian Hansen ( | + | *[http://isgwww.cs.uni-magdeburg.de/cas/ Christian Hansen] (University of Magdeburg, Germany) |
− | + | *[http://isgwww.cs.uni-magdeburg.de/cas/team.php Florian Heinrich] (University of Magdeburg, Germany) | |
+ | *[http://isgwww.cs.uni-magdeburg.de/cas/team.php André Mewes] (University of Magdeburg, Germany) | ||
==Project Description== | ==Project Description== | ||
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|- style="vertical-align:top;" | |- style="vertical-align:top;" | ||
|<!-- Objective bullet points --> | |<!-- Objective bullet points --> | ||
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+ | * Disuss state of the art of "visual" AR for interventional radiology/surgery | ||
+ | * Find and prototype appropriate auditory display methods for efficient depth perception feedback | ||
+ | * Discover optimal mix between auditory and visual feedback methods for depth perception | ||
|<!-- Approach and Plan bullet points --> | |<!-- Approach and Plan bullet points --> | ||
− | + | * Discussion about possibilties to support depth persception (visually and auditory) | |
+ | * Implementation of new depth cues | ||
|<!-- Progress and Next steps (fill out at the end of project week), bullet points --> | |<!-- Progress and Next steps (fill out at the end of project week), bullet points --> | ||
+ | * Enabled kinetic depth cues for Needle Navigation Software: direct control of scene camera movement with head position tracking | ||
+ | * Sound connection could not be implemented during this week (had to rework parts the own code base first, took much time) | ||
+ | * Started to implement head tracking -> need some different hardware | ||
+ | * Next steps will further focus on head tracking and fusion with sonification | ||
+ | |} | ||
+ | [[File:System setup.svg|frame|left]] | ||
+ | {| | ||
+ | |[[image:Depth Cues for projective AR Needle Navigation.png|left|600px]] | ||
+ | |- | ||
+ | |Depth Cues for projective AR Needle Navigation | ||
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− | == | + | ==Background and References== |
+ | [http://isgwww.cs.uni-magdeburg.de/cas/pub/2017_Black_IJCARS-Survey.pdf A Survey of Auditory Display in Image-Guided Interventions] | ||
− | + | [http://www.sciencedirect.com/science/article/pii/S0097849317300171 Improving spatial perception of vascular models using supporting anchors and illustrative visualization] | |
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Latest revision as of 12:06, 30 June 2017
Home < Project Week 25 < Improving Depth Perception in Interventional Augmented Reality Visualization < Sonification
Back to Projects List
Key Investigators
- Simon Drouin (NeuroImaging and Surgical Technologies (NIST) Lab, Canada)
- David Black (University of Bremen; Fraunhofer Institute for Medical Image Computing MEVIS, Bremen, Germany)
- Christian Hansen (University of Magdeburg, Germany)
- Florian Heinrich (University of Magdeburg, Germany)
- André Mewes (University of Magdeburg, Germany)
Project Description
Objective | Approach and Plan | Progress and Next Steps |
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Depth Cues for projective AR Needle Navigation |