[1] BECKER H S. Library of congress digital library effort. Communications of the ACM, 1995, 38(4): 66.
[2] ZHOU M Q, GENG G H, WU Z K. Digitization of cultural heritage. Digital Preservation Technology for Cultural Heritage. Beijing, China: Higher Education Press, 2012: 69 -99.
[3] ZHAO Z H. Digital protection method of intangible cultural heritage based on augmented reality technology. Proceedings of the 2017 International Conference on Robots & Intelligent System (ICRIS’17), 2017, Oct 15 - 16, Huai’An, China. Piscataway, NJ, USA: IEEE, 2017: 135 -138.
[4] PEPE M, COSTANTINO D, ALFIO V S, et al. Scan to BIM for the digital management and representation in 3D GIS environment of cultural heritage site. Journal of Cultural Heritage, 2021, 50: 115 -125.
[5] MIYATA K, TAKIGUCHI T, NAKAGUCHI T et al. An application of projection imaging systems for museum exhibitions. Proceedings of SPIE 6807, Color Imaging XIII: Processing,Hardcopy, and Applications. 2008, DOI: 10. 1117/12. 765785.
[6] BASBALLE D A, HALSKOV K. Projections on museum exhibits: engaging visitors in the museum setting. Proceedings of the 22nd Conference of the Computer-Human Interaction Special Interest Group of Australia on Computer-Human Interaction (OZCHI’10), 2010, Nov 22 -26, Brisbane, Australia. New York, NY, USA:
ACM, 2010: 80 -87.
[7] HU Q W, YU D B, WANG S H, et al. Hybrid three-dimensional representation based on panoramic images and three-dimensional models for a virtual museum: data collection, model, and visualization. Information Visualization, 2016, 16 (2): 126 -138.
[8] WOJCIECHOWSKI R, WALCZAK K, WHITE M, et al. Building virtual and augmented reality museum exhibitions. Proceedings of the 9th International Conference on 3D Web Technology (Web3D’04), 2004, Apr 5 - 8, Monterey, CA, USA. New York, NY, USA: ACM, 2004: 135 -144.
[9] GIANGRECO I, SAUTER L, PARIAN M A, et al. VIRTUE: a virtual reality museum experience. Proceedings of the 24th International Conference on Intelligent User Interfaces: Companion (IUI’19), 2019, Mar 16 -20, Marina del Ray, CA, USA. New York, NY, USA: ACM, 2019: 119 -120.
[10] HAJIRASOULI A, BANIHASHEMI S, KUMARASURIYAR A, et al. Virtual reality-based digitisation for endangered heritage sites: theoretical framework and application. Journal of Cultural Heritage, 2021, 49: 140 -151.
[11] LAW E L C. Augmenting the experience of a museum visit with a geo-located AR App for an associated archaeological site. VERMEEREN A, CALVI L, SABIESCU A ( eds). Museum Experience Design. Berlin, Germany: Springer, 2018: 205 -224.
[12] PARK D, NAM T J, SHI C K. Designing an immersive tour experience system for cultural tour sites. Proceedings of the 2006 Conference on Human Factors in Computing Systems (CHI’06), 2006, Apr 22 - 27, Montréal, Canada. New York, NY, USA: ACM, 2006: 1193 -1198.
[13] CRUZ-NEIRA C, SANDIN D J, DEFANTI T A, et al. The CAVE: audio visual experience automatic virtual environment. Communications of the ACM, 1992, 35(6): 65 -72.
[14] CRUZ-NEIRA C, SANDIN D J, DEFANTI T A. Surround-screen projection-based virtual reality: the design and implementation of the CAVE. Proceedings of the 20th Annual Conference on Computer Graphics and Interactive Techniques (SIGGRAPH’93), 1993, Aug 2 - 6, Anaheim, CA, USA. New York, NY, USA: ACM, 1993: 135 -142.
[15] HETTINGER L J, RICCIO G E. Visually induced motion sickness in virtual environments. Presence: Teleoperators and Virtual Environments, 1992, 1(3): 306 -310.
[16] OHYAMA S, NISHIIKE S, WATANABE H, et al. Autonomic responses during motion sickness induced by virtual reality. Auris Nasus Larynx, 2007, 34(3): 303 -306.
[17] STYLIANI S, FOTIS L, KOSTAS K, et al. Virtual museums, a survey and some issues for consideration. Journal of Cultural Heritage, 2009, 10(4): 520 -528.
[18] CARROZZINO M, BERGAMASCO M. Beyond virtual museums: experiencing immersive virtual reality in real museums. Journal of Cultural Heritage, 2010, 11(4): 452 -458.
[19] HUANG Y T, LIU Y, WANG Y T. AR-view: an augmented reality device for digital reconstruction of Yuangmingyuan. Proceedings of the 2009 IEEE International Symposium on Mixed and Augmented Reality: Arts, Media and Humanities, 2009, Oct 19 - 22, Orlando, FL, USA. Piscataway, NJ, USA: IEEE,
2009: 3 -7.
[20] SEO B K, KIM K, PARK J, et al. A tracking framework for augmented reality tours on cultural heritage sites. Proceedings of the 9th ACM SIGGRAPH Conference on Virtual-Reality Continuum and its Applications in Industry (VRCAI’10), 2010, Dec 12 - 13, Seoul, Republic of Korea. New York, NY, USA: ACM, 2010: 169 -174.
[21] KESHAVARZ B. Exploring behavioral methods to reduce visually induced motion sickness in virtual environments. Proceedings of the 8th International Conference on Virtual, Augmented and Mixed Reality ( VAMR’16), 2016, Jul 17 - 22, Toronto, Canada. LNISA 9740. Berlin, Germany: Springer, 2016: 147 -155.
[22] TAYEH R, BADEMOSI F, ISSA R R A. BIM-GIS integration in HoloLens. Proceedings of the 18th International Conference on Computing in Civil and Building Engineering ( ICCCBE’20 ), 2020, Aug 18 - 20, São Paulo, Brazil. Lecture Notes in Civil Engineering ( LNCE) 98. Berlin, Germany: Springer, 2021:
1187 -1199.
[23] HAN J, KANG H J, KIM M, et al. Mapping the intellectual structure of research on surgery with mixed reality: bibliometric network analysis ( 2000—2019 ). Journal of Biomedical Informatics, 2020, 109: Article 103516.
[24] ZHANG H, ZHANG X S, HUANG J. A demonstration system for the generation and interaction of battlefield situation based on HoloLens. Proceedings of the 2nd International Conference on Information Systems and Computer Aided Education (ICISCAE’19), 2019, Sept 28 -30, Dalian, China. Piscataway, NJ, USA: IEEE, 2019: 293 -296.
[25] WANG G J, LU Z C, ZHANG Y F, et al. Application of mixed reality technology in education with the case of a Huangmei Opera cultural education system. Proceedings of the IEEE 2nd International Conference on Computer Science and Educational Informatization (CSEI’20), 2020, Jun 12 -14, Xinxiang, China. Piscataway, NJ, USA: IEEE, 2020: 301 -305.
[26] WANG G J, QIAN Y, ZHANG Y F, et al. Design and implementation of children’s games based on mixed reality. Proceedings of the 2019 IEEE International Conference on Computer Science and Educational Informatization ( CSEI’19), 2019, Aug 16 - 19, Kunming, China. Piscataway, NJ, USA: IEEE, 2019: 176 -180.
[27] ASGARY A, BONADONNA C, FRISCHKNECHT C. Simulation and visualization of volcanic phenomena using Microsoft HoloLens: case of Vulcano Island (Italy). IEEE Transactions on Engineering Management, 2020, 67(3): 545 -553.
[28] CAUDELL T P, MIZELL D W. Augmented reality: an application of heads-up display technology to manual manufacturing processes. Proceedings of the 25th Hawaii International Conference on System Sciences, 1992, Jan 7 - 10, Kauai, HI, USA. Piscataway, NJ, USA: IEEE, 1992: 659 -669.
[29] MILGRAM P, TAKEMURA H, UTSUMI A, et al. Augmented reality: a class of displays on the reality-virtuality continuum. Das H ( ed ). Proceedings of SPIE 2351: Telemanipulator and Telepresence Technologies. Bellingham, WA, USA: Society of Photo-Optical Instrumentation Engineers, 1995: 282 -292.
[30] MILGRAM P, KISHINO F. A taxonomy of mixed reality visual displays. IEICE Transactions on Information and Systems, 1994, 77(12): 1321 -1329.
[31] OCCHIPINTI E. Holomuseum: a prototype of interactive exhibition with mixed reality glasses HoloLens. Master Thesis. Torino, Italy: Politecnico di Torino, 2017.
[32] SPEICHER M, HALL B D, NEBELING M. What is mixed reality? Proceedings of the 2019 ACM CHI Conference on Human Factors in Computing Systems ( CHI’19), 2019, May 4 - 9, Glasgow, UK. New York, NY, USA: ACM, 2019: Paper 537.
[33] ONG S, SIDDARAJU V K. Shared experiences. Beginning Windows Mixed Reality Programming: for HoloLens and Mixed Reality Headsets. Berkeley, CA, USA: Apress, 2021: 189 -218.
[34] VASSILAKIS C, KOTIS K, SPILIOTOPOULOS D, et al. A semantic mixed reality framework for shared cultural experiences ecosystems. Big Data and Cognitive Computing, 2020, 4 (2): Article 6.
[35]
MITSUNO D, UEDA K, HIROTA Y, et al. Effective application of mixed reality
device HoloLens. Plastic and Reconstructive Surgery, 2019, 143(2): 647 -651.
[36]
ZHANG Z Y. A flexible new technique for camera calibration. IEEE Transactions
on Pattern Analysis and Machine Intelligence, 2000, 22(11): 1330 -1334.
[37]
LIU Y, DONG H W, ZHANG L Y, et al. Technical evaluation of HoloLens for
multimedia: a first look. IEEE MultiMedia, 2018, 25(4): 8 -18.
[38]
TANG B H, CAO S X. A review of VSLAM technology applied in augmented reality.
IOP Conference Series: Materials Science and Engineering, 2020, 782: 042014.
[39]
HEARN D D, BAKER M P, CARITHERS W. Computer graphics with OpenGL. 4th ed. Upper
Saddle River, NJ, USA: Pearson Education Limited, 2011: 273 -301.
[40]
CARMIGNIANI J, FURHT B, ANISETTI M, et al. Augmented reality technologies,
systems and applications. Multimedia Tools and Applications, 2011, 51(1): 341
-377.
[41]
HAMMADY R, MA M H. Designing spatial UI as a solution of the narrow FOV of
Microsoft HoloLens: prototype of virtual museum guide. Dieck M C T, Jung T ( eds).
Augmented Reality and Virtual Realit. Berlin, Germany: Springer, 2019: 217
-231.
[42]
MACLNTYRE B, SMITH T F. Thoughts on the future of WebXR and the immersive web.
Proceedings of the 2018 IEEE International Symposium on Mixed and Augmented
Reality Adjunct (ISMAR-Adjunct’18), 2018, Oct 16 - 20, Munich,
Germany. Piscataway, NJ, USA: IEEE, 2018: 338 -342.
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