Difference between revisions of "Project Week 25/Human-Computer Interaction under sterile conditions"

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*[http://isgwww.cs.uni-magdeburg.de/cas/ Christian Hansen] (University of Magdeburg, Germany)
 
*[http://isgwww.cs.uni-magdeburg.de/cas/ Christian Hansen] (University of Magdeburg, Germany)
 
*[http://isgwww.cs.uni-magdeburg.de/cas/team.php Julian Hettig] (University of Magdeburg, Germany)
 
*[http://isgwww.cs.uni-magdeburg.de/cas/team.php Julian Hettig] (University of Magdeburg, Germany)
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*[http://perk.cs.queensu.ca/users/lasso Andras Lasso] (PerkLab, Queen's)
 
*[http://isgwww.cs.uni-magdeburg.de/cas/team.php Benjamin Hatscher] (University of Magdeburg, Germany)
 
*[http://isgwww.cs.uni-magdeburg.de/cas/team.php Benjamin Hatscher] (University of Magdeburg, Germany)
 
*[http://www.researchgate.net/profile/David_Black11 David Black] (University of Bremen; 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)
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<!-- Progress and Next steps (fill out at the end of project week), please start each sentence in a new line. -->
 
<!-- Progress and Next steps (fill out at the end of project week), please start each sentence in a new line. -->
  
# Connected Slicer to OSC
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# Connected Slicer to OSC: added SlicerSoundControl extension (https://github.com/SlicerIGT/SlicerSoundControl)
 
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# Tested avoidance warning with experimental integration into breast lumpectomy navigation module (LumpNav): https://youtu.be/gSz8IHmogMo
 
# tried using gestures to zoom windows in and out
 
# tried using gestures to zoom windows in and out
  

Revision as of 12:00, 30 June 2017

Home < Project Week 25 < Human-Computer Interaction under sterile conditions

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Key Investigators

Project Description

Objective Approach and Plan Progress and Next Steps

Human-Computer Interaction under Sterile Conditions.

  • Review of state of the art (tochless interaction)
  • Development of new user interfaces to support surgical interterventions
  1. Long, intensive conceptualization (2 days) of possibilities for gesture interaction and audio feedback for it
    1. We will need moderation kit (paper, pencil, markers, etc)
  2. Prototypes of possible auditory/visual feedback based on conceptualization
    1. With OSC communication protocol, David will make quick, flexible sound methods
    2. foot/eye interaction (?)
  3. File:OSC Test Input.pd.zip
    1. Here is a test patch for incoming messages, also makes sound. Need to download PD-Extended to use this.
  1. Connected Slicer to OSC: added SlicerSoundControl extension (https://github.com/SlicerIGT/SlicerSoundControl)
  2. Tested avoidance warning with experimental integration into breast lumpectomy navigation module (LumpNav): https://youtu.be/gSz8IHmogMo
  3. tried using gestures to zoom windows in and out

Necessary Parameters

see https://github.com/SlicerIGT/SlicerSoundControl

/BlackLegend

Environment

  • In/ out
    • --> "/InOut 0" out
    • --> "/InOut 1" in
  • Edge distance (0 to 3 cm?)
    • --> "/EdgeDist x" where x is float between 0 and 3

Ambient

  • Overall acceleration
    • --> "/OverallAccel x" where x is float between 0 and 1
  • Background noise
  • Absolute position (x/y, not depth) to show current selected window
    • --> "/AbsPolX x" where x is float between 0 and 1
    • --> "/AbsPolY x" where x is float between 0 and 1

Gestures

  • select image
    • --> "/SelectGesture x" where x is gesture number
  • zoom to left window
  • zoom to right window
  • put back into small viewer

Background

example HCI with freehand gestures for sound


Example of previous related work using standard surgical gloves and OR compatible plastic draping confirmed to be compatible with sterile requirements at BWH AMIGO: ]

References

Mewes et al. (2017) Touchless Interaction with Software in Interventional Radiology and Surgery: A Systematic Literature Review

Hettig et al. (2017) Comparison of Gesture and Conventional Interaction Techniques for Interventional Neuroradiology