Multisensory extended reality applications offer benefits for volumetric biomedical image analysis in research and medicine

Fuente: arXiv
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Hauptverfasser: Krieger, Kathrin, Egger, Jan, Kleesiek, Jens, Gunzer, Matthias, Chen, Jianxu
Format: Preprint
Veröffentlicht: 2023
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author Krieger, Kathrin
Egger, Jan
Kleesiek, Jens
Gunzer, Matthias
Chen, Jianxu
author_facet Krieger, Kathrin
Egger, Jan
Kleesiek, Jens
Gunzer, Matthias
Chen, Jianxu
contents 3D data from high-resolution volumetric imaging is a central resource for diagnosis and treatment in modern medicine. While the fast development of AI enhances imaging and analysis, commonly used visualization methods lag far behind. Recent research used extended reality (XR) for perceiving 3D images with visual depth perception and touch but used restrictive haptic devices. While unrestricted touch benefits volumetric data examination, implementing natural haptic interaction with XR is challenging. The research question is whether a multisensory XR application with intuitive haptic interaction adds value and should be pursued. In a study, 24 experts for biomedical images in research and medicine explored 3D medical shapes with 3 applications: a multisensory virtual reality (VR) prototype using haptic gloves, a simple VR prototype using controllers, and a standard PC application. Results of standardized questionnaires showed no significant differences between all application types regarding usability and no significant difference between both VR applications regarding presence. Participants agreed to statements that VR visualizations provide better depth information, using the hands instead of controllers simplifies data exploration, the multisensory VR prototype allows intuitive data exploration, and it is beneficial over traditional data examination methods. While most participants mentioned manual interaction as best aspect, they also found it the most improvable. We conclude that a multisensory XR application with improved manual interaction adds value for volumetric biomedical data examination. We will proceed with our open-source research project ISH3DE (Intuitive Stereoptic Haptic 3D Data Exploration) to serve medical education, therapeutic decisions, surgery preparations, or research data analysis.
format Preprint
id arxiv_https___arxiv_org_abs_2311_03986
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Multisensory extended reality applications offer benefits for volumetric biomedical image analysis in research and medicine
Krieger, Kathrin
Egger, Jan
Kleesiek, Jens
Gunzer, Matthias
Chen, Jianxu
Software Engineering
Graphics
Human-Computer Interaction
Image and Video Processing
3D data from high-resolution volumetric imaging is a central resource for diagnosis and treatment in modern medicine. While the fast development of AI enhances imaging and analysis, commonly used visualization methods lag far behind. Recent research used extended reality (XR) for perceiving 3D images with visual depth perception and touch but used restrictive haptic devices. While unrestricted touch benefits volumetric data examination, implementing natural haptic interaction with XR is challenging. The research question is whether a multisensory XR application with intuitive haptic interaction adds value and should be pursued. In a study, 24 experts for biomedical images in research and medicine explored 3D medical shapes with 3 applications: a multisensory virtual reality (VR) prototype using haptic gloves, a simple VR prototype using controllers, and a standard PC application. Results of standardized questionnaires showed no significant differences between all application types regarding usability and no significant difference between both VR applications regarding presence. Participants agreed to statements that VR visualizations provide better depth information, using the hands instead of controllers simplifies data exploration, the multisensory VR prototype allows intuitive data exploration, and it is beneficial over traditional data examination methods. While most participants mentioned manual interaction as best aspect, they also found it the most improvable. We conclude that a multisensory XR application with improved manual interaction adds value for volumetric biomedical data examination. We will proceed with our open-source research project ISH3DE (Intuitive Stereoptic Haptic 3D Data Exploration) to serve medical education, therapeutic decisions, surgery preparations, or research data analysis.
title Multisensory extended reality applications offer benefits for volumetric biomedical image analysis in research and medicine
topic Software Engineering
Graphics
Human-Computer Interaction
Image and Video Processing
url https://arxiv.org/abs/2311.03986