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Published in: Aesthetic Plastic Surgery 3/2021

01-06-2021 | Innovative Techniques

A Novel Three-Dimensional Interactive Virtual Face to Facilitate Facial Anatomy Teaching Using Microsoft HoloLens

Authors: Narendra Kumar, Shubham Pandey, Eqram Rahman

Published in: Aesthetic Plastic Surgery | Issue 3/2021

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Abstract

Background

In-depth understanding of facial anatomy is the foundation of clinical education and practices. Lately, anatomy education has undergone many changes due to the adoption of integrated medical curriculums. The time allocated to anatomy teaching on occasion been shortened to allow more time for clinical education. Innovation in visual technology such as virtual reality (VR), augmented reality (AR) and mixed reality (MR) has added a new dimension to anatomy education. The authors present a mixed reality virtual face model to facilitate complex anatomy teaching using Microsoft HoloLens in various educational settings.

Materials and Methods

Close-range photogrammetry technique was utilised to construct a virtual face using a dissected fresh-frozen cephalus. Scanning was undertaken using DSLR cameras, capable of capturing ten frames per second, in ten different angles on the dissected side and four for the undissected side. The images of the entire cephalous were also separately captured in twenty different angles. These images were processed using software to reconstruct the three-dimensional virtual face.

Result

The virtual face using a mixed reality platform was able to demonstrate individual layers of the face and relevant clinically significant structures clearly with interactive labelling. Face and the content validity by 12 experts (plastic surgeons and dermatologists) demonstrated strong inter-rater reliability expressed as interclass correlation coefficient.

Conclusion

An immersive experience by using Microsoft HoloLens provides an accurate 3D perception of the face to enhance anatomy learning. This can be utilised in undergraduate, postgraduate and continued medical education as an additional teaching tool in the constraints of cadaveric dissection.

Level of Evidence V

This journal requires that authors assign a level of evidence to each article. For a full description of these Evidence-Based Medicine ratings, please refer to Table of Contents or the online Instructions to Authors www.​springer.​com/​00266.
Literature
4.
go back to reference Chien C, Chen C, Jeng T (2010) An interactive augmented reality system for learning anatomy structure. In: The international multiconfernce of engineers and computer scientists (HongKong: International Association of Engineers) nce of engineers and computer scientists (HongKong: International association of engineers). pp 17–19 Chien C, Chen C, Jeng T (2010) An interactive augmented reality system for learning anatomy structure. In: The international multiconfernce of engineers and computer scientists (HongKong: International Association of Engineers) nce of engineers and computer scientists (HongKong: International association of engineers). pp 17–19
5.
go back to reference Ong WJ (2002) Orality and Literacy. Routledge, New York Ong WJ (2002) Orality and Literacy. Routledge, New York
6.
go back to reference The Editors (2016) The World ’ s oldest writing. Archaeol. Publ. Archaeol. Inst. Am. The Editors (2016) The World ’ s oldest writing. Archaeol. Publ. Archaeol. Inst. Am.
7.
go back to reference Wikramanayake G (2005) Impact of digital technology on education. In: 24th National information technology conference Wikramanayake G (2005) Impact of digital technology on education. In: 24th National information technology conference
12.
go back to reference Boehler W, Marbs A (2004) 3D Scanning and Photogrammetry for Heritage Recording: a Comparison. In: Geoinformatics 2004 Proc. 12th Int. Conf. on Geoinformatics—geospatial information research: bridging the pacific and Atlantic university of Gävle, Sweden, 7-9 June 2004. pp 291–298 Boehler W, Marbs A (2004) 3D Scanning and Photogrammetry for Heritage Recording: a Comparison. In: Geoinformatics 2004 Proc. 12th Int. Conf. on Geoinformatics—geospatial information research: bridging the pacific and Atlantic university of Gävle, Sweden, 7-9 June 2004. pp 291–298
14.
go back to reference Erolin C (2019) Interactive 3D digital models for anatomy and medical education. In: Paul M (ed) Biomedical visualisation, advances in experimental medicine and biology, 1st edn. Springer International, Berlin, pp 1–16 Erolin C (2019) Interactive 3D digital models for anatomy and medical education. In: Paul M (ed) Biomedical visualisation, advances in experimental medicine and biology, 1st edn. Springer International, Berlin, pp 1–16
15.
go back to reference Hajdarbegovic N (2018) Microsoft HoloLens Review: Closing the Gap Between AR and VR. In: Toptal Hajdarbegovic N (2018) Microsoft HoloLens Review: Closing the Gap Between AR and VR. In: Toptal
16.
go back to reference Newman J, Chacos B (2018) HTC Vive vs. Oculus Rift vs. Windows Mixed Reality. In: PC World Newman J, Chacos B (2018) HTC Vive vs. Oculus Rift vs. Windows Mixed Reality. In: PC World
19.
go back to reference Chen P, Liu X, Cheng W, Huang R (2017) A review of using augmented reality in education from 2011–2016. Springer, Singapore, pp 13–18 Chen P, Liu X, Cheng W, Huang R (2017) A review of using augmented reality in education from 2011–2016. Springer, Singapore, pp 13–18
20.
go back to reference Primal’s 3D Real-time Human Anatomy (2018) In: Primal Pict Primal’s 3D Real-time Human Anatomy (2018) In: Primal Pict
21.
go back to reference Visible Body-Virtual Anatomy to See Inside the Human Body Visible Body-Virtual Anatomy to See Inside the Human Body
22.
go back to reference BioDigital: 3D Human Visualization Platform for Anatomy and Disease BioDigital: 3D Human Visualization Platform for Anatomy and Disease
23.
go back to reference Georgiev G (2017) Significance of anatomical variations for clinical practice. Int J Anat Var 10:43–44 Georgiev G (2017) Significance of anatomical variations for clinical practice. Int J Anat Var 10:43–44
24.
go back to reference Dynamics 365 Layout User Guide-Dynamics 365 Mixed Reality | Microsoft Docs (2018) In: Microsoft Dynamics 365 Layout User Guide-Dynamics 365 Mixed Reality | Microsoft Docs (2018) In: Microsoft
25.
go back to reference Shahidi R, Lorensen B, Kikinis R, et al (1996) Surface rendering versus volume rendering in medical imaging: techniques and applications. In: Proceedings of Seventh Annual IEEE Visualization ’96. ACM, pp 439–440 Shahidi R, Lorensen B, Kikinis R, et al (1996) Surface rendering versus volume rendering in medical imaging: techniques and applications. In: Proceedings of Seventh Annual IEEE Visualization ’96. ACM, pp 439–440
Metadata
Title
A Novel Three-Dimensional Interactive Virtual Face to Facilitate Facial Anatomy Teaching Using Microsoft HoloLens
Authors
Narendra Kumar
Shubham Pandey
Eqram Rahman
Publication date
01-06-2021
Publisher
Springer US
Published in
Aesthetic Plastic Surgery / Issue 3/2021
Print ISSN: 0364-216X
Electronic ISSN: 1432-5241
DOI
https://doi.org/10.1007/s00266-020-02110-5

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