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Immersive Analytics for Medicine: Hybrid 2D/3D Sketch-Based Interfaces for Annotating Medical Data and Designing Medical Devices

Published: 06 November 2016 Publication History

Abstract

We explore the role that immersive technologies, specifically virtual reality (VR) and hybrid 2D/3D sketch-based interfaces and visualizations, can play in analytical reasoning for medicine. Two case studies are described: (1) immersive explanations of medical procedures, and (2) immersive design of medical devices. Both tightly integrate 2D imagery and data with 3D interfaces, models, and visualizations. This is an approach we argue is likely to be particularly useful in medicine, where analytical tasks often involve relating 2D data (e.g., medical imaging) to 3D contexts (e.g., a patient's body). User feedback and observations from our interdisciplinary team indicate the utility of the approach for the current case studies as well as some shortcomings and areas for future research. This work contributes to a broader discussion of how hybrid 2D/3D interfaces may form an essential ingredient of future immersive analytics systems across a variety of domains.

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Cited By

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  • (2024)Toward More Comprehensive Evaluations of 3D Immersive Sketching, Drawing, and PaintingIEEE Transactions on Visualization and Computer Graphics10.1109/TVCG.2023.327629130:8(4648-4664)Online publication date: Aug-2024
  • (2024)ARMedicalSketch: Exploring 3D Sketching for Medical Image Using True 2D-3D Interlinked Visualization and InteractionIEEE Transactions on Human-Machine Systems10.1109/THMS.2024.343273554:5(589-598)Online publication date: Oct-2024
  • (2022)A Virtual Reality Whiteboard System for Remote Collaboration Using Natural HandwritingElectronics10.3390/electronics1124415211:24(4152)Online publication date: 12-Dec-2022
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  1. Immersive Analytics for Medicine: Hybrid 2D/3D Sketch-Based Interfaces for Annotating Medical Data and Designing Medical Devices

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      cover image ACM Conferences
      ISS '16 Companion: Proceedings of the 2016 ACM Companion on Interactive Surfaces and Spaces
      November 2016
      136 pages
      ISBN:9781450345309
      DOI:10.1145/3009939
      Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for third-party components of this work must be honored. For all other uses, contact the Owner/Author.

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      Publication History

      Published: 06 November 2016

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      Author Tags

      1. hybrid 2d/3d user interfaces
      2. immersive 3d modeling
      3. immersive analytics
      4. visualization

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      View all
      • (2024)Toward More Comprehensive Evaluations of 3D Immersive Sketching, Drawing, and PaintingIEEE Transactions on Visualization and Computer Graphics10.1109/TVCG.2023.327629130:8(4648-4664)Online publication date: Aug-2024
      • (2024)ARMedicalSketch: Exploring 3D Sketching for Medical Image Using True 2D-3D Interlinked Visualization and InteractionIEEE Transactions on Human-Machine Systems10.1109/THMS.2024.343273554:5(589-598)Online publication date: Oct-2024
      • (2022)A Virtual Reality Whiteboard System for Remote Collaboration Using Natural HandwritingElectronics10.3390/electronics1124415211:24(4152)Online publication date: 12-Dec-2022
      • (2022)Immersive Technology Systematic Review and Challenges2022 ASU International Conference in Emerging Technologies for Sustainability and Intelligent Systems (ICETSIS)10.1109/ICETSIS55481.2022.9888855(186-191)Online publication date: 22-Jun-2022
      • (2022)Anatomy StudioComputers and Graphics10.1016/j.cag.2019.09.00685:C(74-84)Online publication date: 21-Apr-2022
      • (2021)VeLight: A 3D virtual reality tool for CT-based anatomy teaching and trainingJournal of Visualization10.1007/s12650-021-00790-y25:2(293-306)Online publication date: 7-Oct-2021
      • (2021)3D Reconstruction from CT Images Using Free Software ToolsDigital Anatomy10.1007/978-3-030-61905-3_8(135-157)Online publication date: 15-May-2021
      • (2021)A Tool for Collaborative Anatomical DissectionDigital Anatomy10.1007/978-3-030-61905-3_3(41-58)Online publication date: 15-May-2021

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