DOI QR코드

DOI QR Code

치과용 초음파 스케일러/수술기 통합 시스템의 스케일링 및 절삭 시 온도 변화에 관한 연구

A Study on Temperature Changes during Bone Scaling and Cutting of Dental Ultrasonic Scaling/Surgery System

  • 사민우 (SJ TOOLS 기업부설연구소) ;
  • 고태조 (영남대학교 기계공학부) ;
  • 김종영 (안동대학교 기계공학과)
  • Sa, Min-Woo (Research Institute, SJ TOOLS) ;
  • Ko, Tae-Jo (School of Mechanical Engineering, Yeungnam University) ;
  • Kim, Jong Young (Department of Mechanical Engineering, Andong National University)
  • 투고 : 2019.12.24
  • 심사 : 2020.01.14
  • 발행 : 2020.02.29

초록

While dental clinics still use the ultrasonic scaling/surgery tool for teeth scaling and cleaning the tool's use is expanding steadily to include treatment of damaged teeth and bone tissue. In this study, a handpiece moving system (HMS) was developed to evaluate bone scaling and cutting in the field of dentistry. The HMS, through a scaling test of bone using a scaler tip, it was able to identify surface damage. Additionally, a thermos-graphic camera was used to observe the temperature distribution that occurred during the bone scaling and cutting process. Consequently, we found that increasing the working load increased the amount of surface damage. Changes in temperature distribution occurred slowly and were maintained within safety bounds for 10 minutes. Going forward, we will compare the HMS performance on scaling and cutting with other devices.

키워드

참고문헌

  1. Gurenlian, J. R., "The Role of Dental Plaque Biofilm in Oral Health," Journal of Dental Hygiene, Vol. 81, No. 5, 2007.
  2. Shaddox, L. M. and Walker, C., "Treating chronic periodontitis: current status, challenges, and future directions," Clinical Cosmetic Investing Dental, Vol. 2, pp. 79-91, 2010. https://doi.org/10.2147/CCIDE.S7712
  3. Kenneth, W. Aschheim, "Esthetic Dentistry: A Clinical Approach to Techniques and Materials," Book Aid International, 2014.
  4. Vercellotti, T., "Technological Characterstics and Clinical Indications of Piezoelectric Bone Surgery," Miverva Stomatologica, Vol. 53, pp. 207-214, 2004.
  5. Lee, J.-H., Oh, J.-M., Hong, Y. W., Kim, S. K., Paik, J. H., Lee, Y.-J., Lee, J.-B. and Lee, S.-D., “Design and Evaluation of Ultrasonic Bone Surgical Instruments for Dental Application,” Journal of the Korean Institute of Electrical and Engineers, Vol. 25, No. 12, pp. 990-995, 2012. https://doi.org/10.4313/JKEM.2012.25.12.990
  6. Hennet, P., "Piezoelectric Bone Surgery: A Review of the Literature and Potential Applications in Veterinary Oral Maxillofacial Surgery," Frontiers in Veterinary Science, Vol. 2, No. 8, 2015.
  7. Magrin, G. L., Sigua-Rodriquez, E. A., Goulart, D. R. and Asprino, L., "Piezosurgery in Bone Augmentation Procedures Previous to Dental Implant Surgery: A Review of the Literature," The Open Dentistry Journal, Vol. 9, pp. 426-430, 2015. https://doi.org/10.2174/1874210601509010426
  8. Leong, T., Ashokkumar, M. and Kentish, S., “The Fundamentals of Power Ultrasound-A Review,” Acoustics Australia, Vol. 39, No. 2, pp. 54-63, 2011.
  9. Kwon, S. J., Park, Y. J., Jun, S. H., Ahn, J.-S., Lee, I. B., Cho, B. H., Son, H. H. and Seo, D. G., “Thermal Irritation of Teeth during Dental Treatment Procedures,” Restorative Dentistry & Endodontics, Vol. 38, No. 3, pp. 105-112, 2013. https://doi.org/10.5395/rde.2013.38.3.105
  10. Hong, J. W., "Effect of Wear on Tooth Surface and Efficiency of New Ultrasonic Scaler Tip," School of Dentistry, Master's Degree, Seoul National University, South Korea, 2013.
  11. Baek, S.-H., Shon, W.-J., Bae, K.-S., Kum, K.-Y., Lee, W.-C. and Park, Y.-S., "Evaluation of the Safety and Efficiency of Novel Metallic Ultrasonic Scaler Tip on Titanium Surfaces," Clinical Oral Implants Research, Vol. 23, pp. 1269-1274, 2012. https://doi.org/10.1111/j.1600-0501.2011.02302.x
  12. Harder, S., Wolfart, S., Mehl, C. and Kern, M., “Performance of Ultrasonic Devices for Bone Surgery and Associated Intraosseous Temperature Development,” The International Journal of Oral & Maxillofacial Implants, Vol. 24, No. 3, pp. 484-490, 2009.
  13. Sa, M. W., Shim, H. R., Ko, T. J., Lee, J. M. and Kim, J. Y., “A Study about Experimental Evaluation of an Ultrasonic Surgery Unit for Bone Cutting,” Journal of the Korean Society of Manufacturing Process Engineers, Vol. 15, No. 1, pp. 1-7, 2016. https://doi.org/10.14775/ksmpe.2016.15.1.001
  14. Lea, S. C, Felver, V, Landini, G. and Walmsley, A. D., “Ultrasonic Scaler Oscillations and Tooth-surface Defects,” Journal of Dental Research, Vol. 88, No. 3, pp. 229-234, 2009. https://doi.org/10.1177/0022034508330267
  15. Cardoni, A., MacBeath, A. and Lucas, M., "Methods for Reducing Cutting Temperature in Ultrasonic Cutting of Bone," Ultrasonics, Vol. 44, pp. 37-42, 2006. https://doi.org/10.1016/j.ultras.2006.06.046
  16. Eriksson, A. R., Albrektsson, T. and Albrektsson, B, R., “Heat Caused by Drilling Cortical Bone: Temperature Measured In Vivo in Patients and Animals,” Acta Orthopaedica Scandinavica, Vol. 55, No. 6, pp. 629-631, 1984. https://doi.org/10.3109/17453678408992410