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Evaluation of dimension stability according to UV-C ultrasonic cleaning of full arch artificial teeth made with DLP printer for photopolymerization

광중합용 DLP 프린터로 제작한 전악 인공치아의 UV-C 초음파 세척에 따른 체적 안정성 평가

  • Received : 2021.08.18
  • Accepted : 2021.09.07
  • Published : 2021.09.30

Abstract

Purpose: The purpose of this study was to compare the dimension safety evaluation between a general ultrasonic cleaner and an ultrasonic cleaner equipped with UV-C (ultraviolet-C). Methods: An edentulous model was prepared. A denture base and an occlusal rim were fabricated, and scanning was performed. After scanning, a denture base and full arch artificial teeth were designed. The full arch artificial teeth were printed using a three-dimensional printer (n=10). The residual resin was washed with alcohol and then scanned (reference data). The printed specimens were classified and cleaned using a general ultrasonic cleaner (GU group) and an ultrasonic cleaner equipped with UV-C (UC group). After each washing, a rescan was performed (scan data). Reference data and scan data were superimposed using overlapping software. Data were statistically analyzed using the Mann-Whitney test (α=0.05). Results: In the deviation values of full arch artificial teeth, the GU group showed a high deviation of 18.02 ㎛ and the UC group showed a low deviation of 15.02 ㎛. The two groups demonstrated a statistically significant difference (p<0.05). Conclusion: Full arch artificial teeth prepared using photopolymerized resin were deformed according to the temperature of water generated in the ultrasonic cleaner. It is judged that there is no deformation according to the UV-C ultrasonic cleaner.

Keywords

Acknowledgement

본 연구는 (주)큐라움의 연구지원을 받았으며 이에 감사를 드립니다.

References

  1. Yang HJ, Jang BS, Chung DJ, Heo SJ, Han DH, Shim JS, et al. The effects of denture cleansers and disinfectants on the color, surface hardness, surface roughness of denture base resins. J Korean Acad Prosthodont. 2001;39:105-113.
  2. Kim WS, Kim KB. Evaluation of validity of edentulous digital model for complete denture fabrication. J Dent Hyg Sci. 2015;15:393-398. https://doi.org/10.17135/jdhs.2015.15.4.393
  3. Kim DY, Lee GY. Analysis of deformation according to post-curing of complete arch artificial teeth for temporary dentures printed with a DLP printer. J Tech Dent. 2021;43:48-55. https://doi.org/10.14347/jtd.2021.43.2.48
  4. Kim DY, Kim JH, Kim HY, Kim WC. Comparison and evaluation of marginal and internal gaps in cobalt-chromium alloy copings fabricated using subtractive and additive manufacturing. J Prosthodont Res. 2018;62:56-64. https://doi.org/10.1016/j.jpor.2017.05.008
  5. Jin SJ, Kim DY, Kim JH, Kim WC. Accuracy of dental replica models using photopolymer materials in additive manufacturing: in vitro three-dimensional evaluation. J Prosthodont. 2019;28:e557-e562. https://doi.org/10.1111/jopr.12928
  6. Jung Y, Lee J, Hong SJ, Noh K, Kim HS, Pae A. Fabrication of complete dentures by conventional method and CAD/CAM milling: a case report. J Korean Acad Prosthodont. 2019;57:296-303. https://doi.org/10.4047/jkap.2019.57.3.296
  7. Lee SJ, Jeong IH, Kim BS, Park YD, Lee DG, Park JY, et al. Oral health and self-management recognition of patients with dentures and subjective work ability effect of denture satisfaction. J Korean Acad Dent Technol. 2013;35:367-376. https://doi.org/10.14347/kadt.2013.35.4.367
  8. Namgoong JY, Bae KH, Yu JS, Jang YS. Advanced application of 1,2-indanedione for latent fingerprint development on thermal paper. J Korea Contents Assoc. 2014;14:964-971. https://doi.org/10.5392/JKCA.2014.14.11.964
  9. Narahara H, Tanaka F, Kishinami T, Igarashi S, Saito K. Reaction heat effect on initial linear shrinkage of stereo-lithography resins. Rapid Prototyp J. 1999;5:120-128. https://doi.org/10.1108/13552549910278946
  10. Cho HG, Moon BY. Study on the changes of ophthalmic plastic lens due to heating. J Korean Ophthalmic Opt Soc. 2011;16:247-253.
  11. Park GC, Yu ST. UV generation technology using carbon nanotube-based electron beam. KIDS. 2020;21:13-19.
  12. Kim DY, Lee GY, Kang HW, Yang CS. Comparative analysis of strain according to two wavelengths of light source and constant temperature bath deposition in ultravioletcuring resin for dental three-dimensional printing. J Tech Dent. 2020;42:208-212. https://doi.org/10.14347/jtd.2020.42.3.208
  13. Park DK, Chang IT, Kim KN. A study on the dimensional changes of heat curing acrylic resins using holographic interferometry. J Korean Acad Prosthodont. 1995;33:48-74.
  14. Chae SY, Vang MS. Dimensional stability and surface morphology of various denture resins. J Korean Acad Prosthodont. 1992;30:401-410.
  15. Lemos CAA, Verri FR, Gomes JML, Santiago Junior JF, Moraes SLD, Pellizzer EP. Bilateral balanced occlusion compared to other occlusal schemes in complete dentures: a systematic review. J Oral Rehabil. 2018;45:344-354. https://doi.org/10.1111/joor.12607
  16. Goodacre BJ, Goodacre CJ, Baba NZ, Kattadiyil MT. Comparison of denture base adaptation between CAD-CAM and conventional fabrication techniques. J Prosthet Dent. 2016;116:249-256. https://doi.org/10.1016/j.prosdent.2016.02.017
  17. Park JY, Kim DY, Kim WS, Lee GY, Jeong ID, Bae SY, et al. Three-dimensional analysis of artificial teeth position according to three type complete mandibular denture before and after polymerization. J Korean Acad Dent Technol. 2018;40:217-224.