PERANCANGAN SISTEM MIXED REALITY UNTUK PENANDAAN DAN PENGUKURAN DALAM OPERASI RAHANG
DOI:
https://doi.org/10.23960/jitet.v12i3S1.5302Abstract Views: 229 File Views: 239
Abstract
Operasi rahang bertujuan memperbaiki struktur rahang dan gigi serta meningkatkan estetika wajah dan kepercayaan diri. Penandaan dan pengukuran akurat sangat penting untuk hasil optimal dan mengurangi risiko komplikasi, namun metode tradisional dengan dummy mahal dan memakan waktu,, menciptakan kesenjangan pengalaman antara dokter ahli dan pemula. Penelitian ini merancang sistem mixed reality (MR) untuk penandaan dan pengukuran struktur rahang, mengevaluasi akurasi dalam MR dibandingkan dunia nyata, serta mendukung klaim Unity bahwa 1 unit dalam Unity setara dengan 1 meter. Hasil menunjukkan pengukuran dalam MR dengan mode snap on pada tiga jenis benda, 2D, 3D, dan rahang atas, masing-masing memiliki persentase error 1.27%, 2.25%, dan 1,23%. Pengukuran tersebut lebih akurat dibandingkan mode snap off dengan masing-masing persentase error 3.41%, 8.77%, dan 5.73%. Mode snap on mendekati realitas, mendukung klaim Unity, dan memenuhi toleransi akurasi operasi rahang sebesar 5%. Aplikasi MR ini berhasil menciptakan pengalaman imersif dan efektif, dengan tingkat kepuasan sebesar 98.4% dan dalam aspek penandaan sebesar 89.6% dan pengukuran 91.2%.Downloads
References
M. Ruslin, T. Forouzanfar, I. A. Astuti, E. S. Soemantri, and D. B. Tuinzing, “The epidemiology, treatment, and complication of dentofacial deformities in an Indonesian population: A 21-year analysis,” J Oral Maxillofac Surg Med Pathol, vol. 27, no. 5, pp. 601–607, Sep. 2015, doi: 10.1016/j.ajoms.2014.09.006.
Gregory Santos and Mark W. Jones, “Prevention of Surgical Errors,” StatPearls. Accessed: Oct. 11, 2023. [Online]. Available: https://www.ncbi.nlm.nih.gov/books/NBK592394/
S. Johnson, A. G. Erdman, B. Jackson, D. F. Keefe, B. Tourek, and M. Molina, “Immersive analytics for medicine: Hybrid 2D/3D sketch-based interfaces for annotating medical data and designing medical devices,” in Companion Proceedings of the 2016 ACM International Conference on Interactive Surfaces and Spaces: Nature Meets Interactive Surfaces, ISS 2016, Association for Computing Machinery, Inc, Nov. 2016, pp. 107–113. doi: 10.1145/3009939.3009956.
M. D. Abdulrahaman et al., “Multimedia tools in the teaching and learning processes: A systematic review,” Nov. 01, 2020, Elsevier Ltd. doi: 10.1016/j.heliyon.2020.e05312.
Intel, “Demystifying the Virtual Reality Landscape.” Accessed: Nov. 03, 2023. [Online]. Available: https://www.intel.com/content/www/us/en/tech-tips-and-tricks/virtual-reality-vs-augmented-reality.html
P. Milgram and F. Kishino, “A Taxonomy of Mixed Reality Visual Displays Unconscious Computing View project Augmented Reality through Graphic Overlays on Stereoscopic video View project A TAXONOMY OF MIXED REALITY VISUAL DISPLAYS,” 1994. [Online]. Available: http://vered.rose.utoronto.ca/people/paul_dir/IEICE94/ieice.html
Unity, “Preparing Assets for Unity.” Accessed: May 05, 2024. [Online]. Available: https://docs.unity3d.com/2019.3/Documentation/Manual/BestPracticeMakingBelievableVisuals1.html.
F. Eslamipour, A. Borzabadi-Farahani, B. Le, and M. Shahmoradi, “A retrospective analysis of dentofacial deformities and orthognathic surgeries,” Ann Maxillofac Surg, vol. 7, no. 1, p. 73, 2017, doi: 10.4103/ams.ams_104_16.
S. K. Shetty, Neeraja, and M. Yethadka, “CBCT in Orthognathic Surgery,” Scholars Journal of Dental Sciences (SJDS) , pp. 547–555, 2017, doi: 10.21276/sjds.2017.4.12.4.
R. Skarbez, M. Smith, and M. C. Whitton, “Revisiting Milgram and Kishino’s Reality-Virtuality Continuum,” Front Virtual Real, vol. 2, Mar. 2021, doi: 10.3389/frvir.2021.647997.
F. Hussain, A. Hussain, H. Shakeel, N. Uddin, and T. L. Ghouri, “Unity Game Development Engine: A Technical Survey,” 2020, [Online]. Available: http://sujo.usindh.edu.pk/index.php/USJICT/
R. Roedavan, B. Pudjoatmodjo, and A. Putri Sujana, “MULTIMEDIA DEVELOPMENT LIFE CYCLE (MDLC),” Feb. 2022, doi: 10.13140/RG.2.2.16273.92006.
P. K. Patel and M. V. Novia, “The Surgical Tools: The LeFort I, Bilateral Sagittal Split Osteotomy of the Mandible, and the Osseous Genioplasty,” Jul. 2007. doi: 10.1016/j.cps.2007.05.012.
R. Lee, M. S. Goonewardene, A. Mian, B. Allan, D. Brock, and M. Trevenen, “Accuracy of orthognathic surgery using 3D computer-assisted surgical simulation,” 2018.



