References

[1]    R. Haber and D. McNaab. Visualization idioms: a conceptual model for scientific visualization systems. IEEE Computer Society Press, 1990.

[2]    Kangsoo Kim, Mark Billinghurst, Gerd Bruder, Henry Been-Lirn Duh, and Gregory F. Welch. Revisiting trends in augmented reality research: A review of the 2nd decade of ismar (2008-2017). IEEE Transactions on Visualization and Computer Graphics, PP:1–1, 09 2018.

[3]    Denis Kalkofen, Christian Sandor, Sean White, and Dieter Schmalstieg. Visualization Techniques for Augmented Reality, pages 65–98. Springer New York, New York, NY, 2011.

[4]    R T Azuma. A survey of augmented reality. Presence: Teleoperators and Virtual Environments, 6(4):355–385, 1997.

[5]    Ronald Azuma, Yohan Baillot, Reinhold Behringer, Steven Feiner, Simon Julier, and Blair MacIntyre. Recent advances in augmented reality. IEEE computer graphics and applications, 21(6):34–47, 2001.

[6]    Joseph L Gabbard, J Edward Swan, Jason Zedlitz, and Woodrow W Winchester. More than meets the eye: An engineering study to empirically examine the blending of real and virtual color spaces. In 2010 IEEE Virtual Reality Conference (VR), pages 79–86. IEEE, 2010.

[7]    Tobias Langlotz, Matthew Cook, and Holger Regenbrecht. Real-time radiometric compensation for optical see-through head-mounted displays. IEEE transactions on visualization and computer graphics, 22(11):2385–2394, 2016.

[8]    Yuta Itoh, Takumi Hamasaki, and Maki Sugimoto. Occlusion leak compensation for optical see-through displays using a single-layer transmissive spatial light modulator. IEEE transactions on visualization and computer graphics, 23(11):2463–2473, 2017.

[9]    Jonny Collins, Holger Regenbrecht, and Tobias Langlotz. Visual coherence in mixed reality: A systematic enquiry. Presence: Teleoperators and Virtual Environments, 26(1):16–41, 2017.

[10]    Ernst Kruijff, J. Edward Swan, and Steven Feiner. Perceptual issues in augmented reality revisited. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2010), pages 3–12. IEEE, October 2010.

[11]    Stefanie Zollmann, Raphael Grasset, Gerhard Reitmayr, and Tobias Langlotz. Image-based x-ray visualization techniques for spatial understanding in outdoor augmented reality. In Proceedings of the 26th Australian Computer-Human Interaction Conference on Designing Futures: the Future of Design, pages 194–203. ACM, 2014.

[12]    Eric A. Bier, Maureen C. Stone, Ken Fishkin, William Buxton, and Thomas Baudel. A taxonomy of see-through tools. In Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, CHI ’94, pages 358–364, New York, NY, USA, 1994. ACM.

[13]    Doug A Bowman, Chris North, Jian Chen, Nicholas F Polys, Pardha S Pyla, and Umur Yilmaz. Information-Rich Virtual Environments: Theory, Tools, and Research Agenda. Proceedings of the ACM symposium on Virtual reality software and technology, 2003.

[14]    Doug A. Bowman and Larry F. Hodges. Formalizing the design, evaluation, and application of interaction techniques for immersive virtual environments. Journal of Visual Languages and Computing, 1999.

[15]    Niklas Elmqvist and Philippas Tsigas. A taxonomy of 3D occlusion management for visualization. IEEE transactions on visualization and computer graphics, 14(5):1095–109, January 2008.

[16]    Feng Zhou, H. B. Duh, and M. Billinghurst. Trends in augmented reality tracking, interaction and display: A review of ten years of ismar. In 2008 7th IEEE/ACM International Symposium on Mixed and Augmented Reality, pages 193–202, Sep. 2008.

[17]    Mark Billinghurst, Adrian Clark, Gun Lee, and Others. A survey of augmented reality. Foundations and Trends®in Human–Computer Interaction, 8(2-3):73–272, 2015.

[18]    K. Kim, M. Billinghurst, G. Bruder, H. B. Duh, and G. F. Welch. Revisiting trends in augmented reality research: A review of the 2nd decade of ismar (2008–2017). IEEE Transactions on Visualization and Computer Graphics, 24(11):2947–2962, Nov 2018.

[19]    Donggang Yu, Jesse Sheng Jin, Suhuai Luo, Wei Lai, and Qingming Huang. A Useful Visualization Technique: A Literature Review for Augmented Reality and its Application, limitation & future direction. In Visual Information Communication, pages 311–337. Springer US, Boston, MA, 2009.

[20]    W. Willett, Y. Jansen, and P. Dragicevic. Embedded data representations. IEEE Transactions on Visualization and Computer Graphics, 23(1):461–470, Jan 2017.

[21]    E. K. K. Yasojima, B. S. Meiguins, and A. S. Meiguins. Collaborative augmented reality application for information visualization support. In 2011 15th International Conference on Information Visualisation, pages 170–175, July 2011.

[22]    Oliver Bimber and Ramesh Raskar. Spatial augmented reality: merging real and virtual worlds. AK Peters/CRC Press, 2005.

[23]    Daniel Wagner, Tobias Langlotz, and Dieter Schmalstieg. Robust and unobtrusive marker tracking on mobile phones. In 2008 7th IEEE/ACM International Symposium on Mixed and Augmented Reality, pages 121–124. IEEE, 2008.

[24]    Georg Klein and David Murray. Parallel tracking and mapping for small ar workspaces. In Proceedings of the 2007 6th IEEE and ACM International Symposium on Mixed and Augmented Reality, pages 1–10. IEEE Computer Society, 2007.

[25]    Daniel Wagner, Gerhard Reitmayr, Alessandro Mulloni, Tom Drummond, and Dieter Schmalstieg. Pose tracking from natural features on mobile phones. In Proceedings of the 7th IEEE/ACM international symposium on mixed and augmented reality, pages 125–134. IEEE Computer Society, 2008.

[26]    Daniel Wagner, Alessandro Mulloni, Tobias Langlotz, and Dieter Schmalstieg. Real-time panoramic mapping and tracking on mobile phones. In 2010 IEEE virtual reality conference (VR), pages 211–218. IEEE, 2010.

[27]    Jonathan Ventura, Clemens Arth, Gerhard Reitmayr, and Dieter Schmalstieg. Global localization from monocular slam on a mobile phone. IEEE transactions on visualization and computer graphics, 20(4):531–539, 2014.

[28]    Jens Grubert, Tobias Langlotz, Stefanie Zollmann, and Holger Regenbrecht. Towards pervasive augmented reality: Context-awareness in augmented reality. IEEE transactions on visualization and computer graphics, 23(6):1706–1724, 2016.

[29]    Denis Kalkofen, Erick Mendez, and Dieter Schmalstieg. Interactive Focus and Context Visualization for Augmented Reality. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2007), pages 191–200, November 2007.

[30]    David E. Breen, Ross T. Whitaker, Eric Rose, and Mihran Tuceryan. Interactive Occlusion and Automatic Object Placement for Augmented Reality. Computer Graphics Forum, 15(3):11–22, August 1996.

[31]    Stefanie Zollmann, Denis Kalkofen, Erick Mendez, and Gerhard Reitmayr. Image-based ghostings for single layer occlusions in augmented reality. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2010), pages 19–26. IEEE, October 2010.

[32]    B. Avery, C. Sandor, and B. H. Thomas. Improving spatial perception for augmented reality x-ray vision. In 2009 IEEE Virtual Reality Conference, pages 79–82, March 2009.

[33]    Taiki Fukiage, Takeshi Oishi, and Katsushi Ikeuchi. Visibility-based blending for real-time applications. In ISMAR 2014 - IEEE International Symposium on Mixed and Augmented Reality - Science and Technology 2014, Proceedings, 2014.

[34]    James E Cutting. How the eye measures reality and virtual reality. Behavior Research Methods, Instruments, & Computers, 29(1):27–36, 1997.

[35]    MA Livingston and Z Ai. Indoor vs. outdoor depth perception for mobile augmented reality. In IEEE Virtual Reality Conference (VR 2009), pages 55–62, 2009.

[36]    Ruth Rosenholtz, Yuanzhen Li, Jonathan Mansfield, and Zhenlan Jin. Feature congestion: a measure of display clutter. Proceedings of the SIGCHI conference on Human factors in computing systems, pages 761–770, 2005.

[37]    Stefan Nolle and Gudrun Klinker. Augmented reality as a comparison tool in automotive industry. In IEEE/ACM International Symposium on Mixed and Augmented Reality, pages 249–250. Ieee, 2006.

[38]    Klen Čopič Pucihar, Paul Coulton, and Jason Alexander. The use of surrounding visual context in handheld AR. In Proceedings of the 32nd annual ACM conference on Human factors in computing systems - CHI ’14, 2014.

[39]    V. Lepetit and M. . Berger. A semi-automatic method for resolving occlusion in augmented reality. In Proceedings IEEE Conference on Computer Vision and Pattern Recognition. CVPR 2000 (Cat. No.PR00662), volume 2, pages 225–230 vol.2, June 2000.

[40]    S. Zokai, J. Esteve, Y. Genc, and N. Navab. Multiview paraperspective projection model for diminished reality. In The Second IEEE and ACM International Symposium on Mixed and Augmented Reality, 2003. Proceedings., pages 217–226, Oct 2003.

[41]    Jan Fischer, Dirk Bartz, and Wolfgang Strasser. Occlusion handling for medical augmented reality using a volumetric phantom model. In Proceedings of the ACM Symposium on Virtual Reality Software and Technology, VRST ’04, pages 174–177, New York, NY, USA, 2004. ACM.

[42]    J. D. Mulder. Realistic occlusion effects in mirror-based co-located augmented reality systems. In IEEE Proceedings. VR 2005. Virtual Reality, 2005., pages 203–208, March 2005.

[43]    P. Fortin and P. Hebert. Handling occlusions in real-time augmented reality : Dealing with movable real and virtual objects. In The 3rd Canadian Conference on Computer and Robot Vision (CRV’06), pages 54–54, June 2006.

[44]    M Fiala. Dark matter method for correct augmented reality occlusion relationships. In 2006 IEEE International Workshop on Haptic Audio Visual Environments and their Applications (HAVE 2006), pages 90–93, 2006.

[45]    Christoph Bichlmeier, Felix Wimmer, Heining Sandro Michael, and Navab Nassir. Contextual Anatomic Mimesis: Hybrid In-Situ Visualization Method for Improving Multi-Sensory Depth Perception in Medical Augmented Reality. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2007), pages 129–138, 2007.

[46]    Jiejie Zhu and Zhigeng Pan. Occlusion registration in video-based augmented reality. In Proceedings of The 7th ACM SIGGRAPH International Conference on Virtual-Reality Continuum and Its Applications in Industry, pages 1–6, 2008.

[47]    Denis Kalkofen, Erick Mendez, and Dieter Schmalstieg. Interactive focus and context visualization for augmented reality. In 2007 6th IEEE and ACM International Symposium on Mixed and Augmented Reality, pages 191–201. IEEE, 2007.

[48]    Francesco I Cosco, Carlos Garre, Fabio Bruno, Maurizio Muzzupappa, and Miguel A Otaduy. Augmented Touch Without Visual Obtrusion. In Proceedings of the 2009 8th IEEE International Symposium on Mixed and Augmented Reality, ISMAR ’09, pages 99–102, Washington, DC, USA, 2009. IEEE Computer Society.

[49]    Jiazhou Chen, Xavier Granier, Naiyang Lin, and Qunsheng Peng. On-line visualization of underground structures using context features. In Proceedings of the 17th ACM Symposium on Virtual Reality Software and Technology, VRST ’10, pages 167–170, New York, NY, USA, 2010. ACM.

[50]    Christian Sandor, Andrew Cunningham, A. Dey, and V.V. Mattila. An Augmented Reality X-Ray system based on visual saliency. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2010), pages 27–36. IEEE, 2010.

[51]    Olivier Pauly, Benoît Diotte, Séverine Habert, Simon Weidert, Ekkehard Euler, Pascal Fallavollita, and Nassir Navab. Relevance-based visualization to improve surgeon perception. In Danail Stoyanov, D. Louis Collins, Ichiro Sakuma, Purang Abolmaesumi, and Pierre Jannin, editors, Information Processing in Computer-Assisted Interventions, pages 178–185, Cham, 2014. Springer International Publishing.

[52]    D. Kalkofen, E. Veas, S. Zollmann, M. Steinberger, and D. Schmalstieg. Adaptive ghosted views for augmented reality. In 2013 IEEE International Symposium on Mixed and Augmented Reality (ISMAR), pages 1–9, Oct 2013.

[53]    Norihiko Kawai, Masayoshi Yamasaki, Tomokazu Sato, and Naokazu Yokoya. Diminished Reality for AR Marker Hiding Based on Image Inpainting with Reflection of Luminance Changes. ITE Transactions on Media Technology and Applications, 2013.

[54]    F. Cosco, C. Garre, F. Bruno, M. Muzzupappa, and M. A. Otaduy. Visuo-haptic mixed reality with unobstructed tool-hand integration. IEEE Transactions on Visualization and Computer Graphics, 19(1):159–172, Jan 2013.

[55]    Kazuya Sugimoto, Hiromitsu Fujii, Atsushi Yamashita, and Hajime Asama. Half-diminished reality image using three rgb-d sensors for remote control robots. 2014 IEEE International Symposium on Safety, Security, and Rescue Robotics (2014), pages 1–6, 2014.

[56]    Menandro Roxas, Tomoki Hori, Taiki Fukiage, Yasuhide Okamoto, and Takeshi Oishi. Occlusion handling using semantic segmentation and visibility-based rendering for mixed reality. In Proceedings of the 24th ACM Symposium on Virtual Reality Software and Technology, VRST ’18, pages 20:1–20:8, New York, NY, USA, 2018. ACM.

[57]    G Klein and D W Murray. Simulating Low-Cost Cameras for Augmented Reality Compositing. Visualization and Computer Graphics, IEEE Transactions on, 16(3):369–380, 2010.

[58]    Michael Bajura, Henry Fuchs, and Ryutarou Ohbuchi. Merging virtual objects with the real world: Seeing ultrasound imagery within the patient. In Proceedings of the 19th Annual Conference on Computer Graphics and Interactive Techniques, SIGGRAPH ’92, pages 203–210, New York, NY, USA, 1992. ACM.

[59]    Chris Furmanski, Ronald Azuma, and Mike Daily. Augmented-Reality Visualizations Guided by Cognition: Perceptual Heuristics for Combining Visible and Obscured Information. IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2002), 2002.

[60]    Gary R King, Wayne Piekarski, and Bruce H Thomas. ARVino - Outdoor Augmented Reality Visualisation of Viticulture GIS Data. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2005), pages 52–55, 2005.

[61]    Takahiro Tsuda, Haruyoshi Yamamoto, Yoshinari Kameda, and Yuichi Ohta. Visualization methods for outdoor see-through vision. In Proceedings of the 2005 International Conference on Augmented Tele-existence, ICAT ’05, pages 62–69, New York, NY, USA, 2005. ACM.

[62]    Kengo Uratani and T Machida. A study of depth visualization techniques for virtual annotations in augmented reality. In IEEE Virtual Reality Conference (VR 2005), 2005.

[63]    J. Wither and T. Hollerer. Pictorial depth cues for outdoor augmented reality. In Ninth IEEE International Symposium on Wearable Computers (ISWC’05), pages 92–99, Oct 2005.

[64]    N. Navab, M. Feuerstein, and C. Bichlmeier. Laparoscopic virtual mirror new interaction paradigm for monitor based augmented reality. In 2007 IEEE Virtual Reality Conference, pages 43–50, March 2007.

[65]    G. Schall, E. Mendez, and D. Schmalstieg. Virtual redlining for civil engineering in real environments. In 2008 7th IEEE/ACM International Symposium on Mixed and Augmented Reality, pages 95–98, Sep. 2008.

[66]    Mark A. Livingston, Zhuming Ai, Kevin Karsch, and Gregory O. Gibson. User interface design for military ar applications. Virtual Reality, 15(2):175–184, Jun 2011.

[67]    M. T. Eren, M. Cansoy, and S. Balcisoy. Multi-view augmented reality for underground exploration. In 2013 IEEE Virtual Reality (VR), pages 117–118, March 2013.

[68]    Mikko Kytö, Aleksi Mäkinen, Jukka Häkkinen, and Pirkko Oittinen. Improving relative depth judgments in augmented reality with auxiliary augmentations. ACM Transactions on Applied Perception (TAP), 10(1):6, 2013.

[69]    S. Zollmann, C. Hoppe, T. Langlotz, and G. Reitmayr. Flyar: Augmented reality supported micro aerial vehicle navigation. IEEE Transactions on Visualization and Computer Graphics, 20(4):560–568, April 2014.

[70]    P. Skinner, J. Ventura, and S. Zollmann. Indirect augmented reality browser for gis data. In 2018 IEEE International Symposium on Mixed and Augmented Reality Adjunct (ISMAR-Adjunct), pages 145–150, Oct 2018.

[71]    Steve Mann. Mediated reality. Technical report, M.I.T. M.L. Technical Report 260, Cambridge, Massachusetts, 1994.

[72]    S Julier, M Lanzagorta, Y Baillot, L Rosenblum, S Feiner, T Hollerer, and S Sestito. Information filtering for mobile augmented reality. In Proceedings IEEE and ACM International Symposium on Augmented Reality ISAR 2000, pages 3–11. IEEE COMPUTER SOC, 2000.

[73]    Blaine Bell, Steven Feiner, and Tobias Höllerer. View management for virtual and augmented reality. In Proceedings of the 14th annual ACM symposium on User interface software and technology - UIST ’01, page 101, New York, New York, USA, November 2001. ACM Press.

[74]    R. Bane and T. Hollerer. Interactive Tools for Virtual X-Ray Vision in Mobile Augmented Reality. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2004), pages 231–239. IEEE, 2004.

[75]    Kohei Tanaka, Yasue Kishino, Masakazu Miyamae, Tsutomu Terada, and Shojiro Nishio. An information layout method for an optical see-through head mounted display focusing on the viewability. In Proceedings of the 7th IEEE/ACM International Symposium on Mixed and Augmented Reality, ISMAR ’08, pages 139–142, Washington, DC, USA, 2008. IEEE Computer Society.

[76]    Christian Sandor, Andrew Cunningham, Ulrich Eck, Donald Urquhart, Graeme Jarvis, Arindam Dey, Sebastien Barbier, Michael Marner, and Sang Rhee. Egocentric Space-Distorting Visualizations for Rapid Environment Exploration in Mobile Mixed Reality. In IEEE Virtual Reality Conference (VR 2010), pages 47–50, 2010.

[77]    Denis Kalkofen, Markus Tatzgern, and Dieter Schmalstieg. Explosion Diagrams in Augmented Reality. IEEE Virtual Reality Conference (VR 2009), 0:71–78, 2009.

[78]    Markus Tatzgern, Denis Kalkofen, and Dieter Schmalstieg. Dynamic Compact Visualizations for Augmented Reality. In IEEE Virtual Reality Conference (VR 2013), 2013.

[79]    T. Kawamata, I. Kitahara, Y. Kameda, and Y. Ohta. Poster: Lifted road map view on windshield display. In 2013 IEEE Symposium on 3D User Interfaces (3DUI), pages 139–140, March 2013.

[80]    Stefanie Zollmann, Denis Kalkofen, Christof Hoppe, Stefan Kluckner, Horst Bischof, and Gerhard Reitmayr. Interactive 4D overview and detail visualization in augmented reality. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2012), 2012.

[81]    Raphael Grasset, Tobias Langlotz, Denis Kalkofen, Markus Tatzgern, and Dieter Schmalstieg. Image-Driven View Management for Augmented Reality Browsers. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2012), 2012.

[82]    Yoshinari Kameda, Taisuke Takemasa, and Yuichi Ohta. Outdoor see-through vision utilizing surveillance cameras. In Proceedings of the 3rd IEEE/ACM International Symposium on Mixed and Augmented Reality, ISMAR ’04, pages 151–160, Washington, DC, USA, 2004. IEEE Computer Society.

[83]    Sean White and Steven Feiner. Sitelens: Situated visualization techniques for urban site visits. In Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, CHI ’09, pages 1117–1120, New York, NY, USA, 2009. ACM.

[84]    Torben Schinke, Niels Henze, and Susanne Boll. Visualization of off-screen objects in mobile augmented reality. In Proceedings of the 12th International Conference on Human Computer Interaction with Mobile Devices and Services, MobileHCI ’10, pages 313–316, New York, NY, USA, 2010. ACM.

[85]    Puneet Jain, Justin Manweiler, and Romit Roy Choudhury. Overlay: Practical mobile augmented reality. In Proceedings of the 13th Annual International Conference on Mobile Systems, Applications, and Services, MobiSys ’15, pages 331–344, New York, NY, USA, 2015. ACM.

[86]    C. Barreiros, E. Veas, and V. Pammer-Schindler. Pre-attentive features in natural augmented reality visualizations. In 2016 IEEE International Symposium on Mixed and Augmented Reality (ISMAR-Adjunct), pages 72–73, Sep. 2016.

[87]    Kevin Karsch, Mani Golparvar-Fard, and David Forsyth. Constructaide: Analyzing and visualizing construction sites through photographs and building models. ACM Trans. Graph., 33(6):176:1–176:11, November 2014.

[88]    Patrick Perea, Denis Morand, and Laurence Nigay. Halo3d: A technique for visualizing off-screen points of interest in mobile augmented reality. In Proceedings of the 29th Conference on L’Interaction Homme-Machine, IHM ’17, pages 43–51, New York, NY, USA, 2018. ACM.

[89]    Uwe Gruenefeld, Abdallah El Ali, Susanne Boll, and Wilko Heuten. Beyond halo and wedge: Visualizing out-of-view objects on head-mounted virtual and augmented reality devices. In Proceedings of the 20th International Conference on Human-Computer Interaction with Mobile Devices and Services, MobileHCI ’18, pages 40:1–40:11, New York, NY, USA, 2018. ACM.

[90]    Z. Chen, Y. Su, Y. Wang, Q. Wang, H. Qu, and Y. Wu. Marvist: Authoring glyph-based visualization in mobile augmented reality. IEEE Transactions on Visualization and Computer Graphics, pages 1–1, 2019.

[91]    F. Gutierrez, N. N. Htun, S. Charleer, R. De Croon, and K. Verbert. Designing Augmented Reality Applications for Personal Health Decision-Making. In 52nd Hawaii International Conference on System Sciences, 2019.

[92]    Steve Mann and James Fung. Videoorbits on eye tap devices for deliberately diminished reality or altering the visual perception of rigid planar patches of a real world scene. EYE, 3:P3, 2001.

[93]    Frank Biocca, Arthur Tang, Charles Owen, and Fan Xiao. Attention Funnel: Omnidirectional 3D Cursor for Mobile Augmented Reality Platforms. In Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, CHI ’06, pages 1115–1122, New York, NY, USA, 2006. ACM.

[94]    Eduardo Veas, Erick Mendez, Steven Feiner, and Dieter Schmalstieg. Directing Attention and Influencing Memory with Visual Saliency Modulation. In Proc. of the International Conference on Human Factors in Computing Systems, 2011.

[95]    Neven A M ElSayed, Ross T Smith, and Bruce H Thomas. Horus eye: See the invisible bird and snake vision for augmented reality information visualization. In 2016 IEEE International Symposium on Mixed and Augmented Reality (ISMAR-Adjunct), pages 203–208. IEEE, 2016.

[96]    Shunsuke Sakai, Yohei Yanase, Yasutsuna Matayoshi, and Masahiko Inami. D-ball: virtualized sports in diminished reality. In Proceedings of the First Superhuman Sports Design Challenge on First International Symposium on Amplifying Capabilities and Competing in Mixed Realities - SHS ’18, pages 1–6, New York, New York, USA, 2018. ACM Press.

[97]    S K Feiner and D Duncan Seligmann. Cutaways And Ghosting: Satisfying Visibility Constraints In Dynamic 3d Illustrations. The Visual Computer, 8:292–302, 1992.

[98]    Arindam Dey, Andrew Cunningham, and Christian Sandor. Evaluating depth perception of photorealistic mixed reality visualizations for occluded objects in outdoor environments. In ACM Symposium on Virtual Reality, 2010.

[99]    S. Ghasemi, M. Otsuki, and P. Milgram. Use of random dot pattern for achieving x-ray vision with stereoscopic augmented reality displays. In 2016 IEEE International Symposium on Mixed and Augmented Reality (ISMAR-Adjunct), pages 250–251, Sep. 2016.

[100]    Thomas Strothotte and Bernhard Preim. Abstraction in interactive computational visualization. Springer Berlin, 1998.

[101]    Interactive taxonomy.

[102]    Interactive grouping of taxonomy.

[103]    Raphael Grasset, Andreas Duenser, Hartmut Seichter, and Mark Billinghurst. The mixed reality book. In CHI ’07 extended abstracts on Human factors in computing systems - CHI ’07, page 1953, New York, New York, USA, April 2007. ACM Press.

[104]    S. Feiner, B. MacIntyre, T. Hollerer, and A. Webster. A touring machine: prototyping 3D mobile augmented reality systems for exploring the urban environment. In Digest of Papers. First International Symposium on Wearable Computers, pages 74–81. IEEE Comput. Soc, 1997.

[105]    Denis Kalkofen, Erick Mendez, and Dieter Schmalstieg. Comprehensible Visualization for Augmented Reality. IEEE Transactions on Visualization and Computer Graphics, 15(2):193–204, 2009.

[106]    Christoph Bichlmeier, Maksym Kipot, Stuart Holdstock, Sandro Michael Heining, Ekkehard Euler, and Nassir Navab. A Practical Approach for Intraoperative Contextual In-Situ Visualization. In AMIARCS ’09, 2009.

[107]    Jan Fischer, Holger Regenbrecht, and Gregory Baratoff. Detecting dynamic occlusion in front of static backgrounds for ar scenes. In Proceedings of the workshop on Virtual environments 2003, pages 153–161, 2003.

[108]    Jan Fischer, B Huhle, and Andreas Schilling. Using time-of-flight range data for occlusion handling in augmented reality. In Proceedings of the 13th Eurographics conference on Virtual Environments (EGVE’07), pages 109–116, 2007.

[109]     Mirna Lerotic, Adrian J Chung, George Mylonas, and Guang-Zhong Yang. Pq-Space Based Non-Photorealistic Rendering for Augmented Reality. In Proc. MICCAI ’07, pages 102–109, 2007.

[110]    Erick Mendez and Dieter Schmalstieg. Importance masks for revealing occluded objects in augmented reality. In Proceedings of the ACM symposium on Virtual reality software and technology - VRST ’09, pages 247—-248, New York, New York, USA, 2009. ACM Press.

[111]    Stefanie Zollmann and Gerhard Reitmayr. Dense depth maps from sparse models and image coherence for augmented reality. In Proceedings of the 18th ACM symposium on Virtual reality software and technology, pages 53–60, December 2012.

[112]    Mark A. Livingston, J. Edward Swan II, Joseph L. Gabbard, Tobias H. Höllerer, Deborah Hix, Simon J. Julier, Yohan Baillot, and Dennis Brown. Resolving Multiple Occluded Layers in Augmented Reality. Symposium on Mixed and Augmented Reality, 2003.

[113]    Stefanie Zollmann, Gerhard Schall, Sebastian Junghanns, and Gerhard Reitmayr. Comprehensible and Interactive Visualizations of GIS Data in Augmented Reality. Advances in Visual Computing, pages 675–685, 2012.

[114]    Erick Mendez. Visualization On the Usage of Context for Augmented Reality. PhD thesis, Graz University of Technology, 2010.

[115]    Julian Looser, Mark Billinghurst, and Andy Cockburn. Through the looking glass: the use of lenses as an interface tool for Augmented Reality interfaces. In Computer Graphics and Interactive Techniques in Australasia and South East Asia, 2004.

[116]    Robert Spence and Mark Apperley. Bifocal Display. The Interaction Design Foundation, Aarhus, Denmark, 2011.

[117]    Christian Sandor, Andrew Cunningham, Ulrich Eck, Donald Urquhart, Graeme Jarvis, Arindam Dey, Sebastien Barbier, Michael R. Marner, and Sang Rhee. Egocentric space-distorting visualizations for rapid environment exploration in mobile mixed reality. In IEEE International Symposium on Mixed and Augmented Reality (ISMAR 2009), pages 211–212. Ieee, October 2009.

[118]    R. Azuma and C. Furmanski. Evaluating label placement for augmented reality view management. The Second IEEE and ACM International Symposium on Mixed and Augmented Reality, 2003. Proceedings., pages 66–75, 2006.

[119]    Edward Rosten, Gerhard Reitmayr, and Tom Drummond. Real-time video annotations for augmented reality. Advances in Visual Computing, 2005.

[120]    Nahal Norouzi, Gerd Bruder, Brandon Belna, Stefanie Mutter, Damla Turgut, and Greg Welch. A systematic review of the convergence of augmented reality, intelligent virtual agents, and the internet of things. In Artificial Intelligence in IoT, pages 1–24. Springer, 2019.