Have a personal or library account? Click to login
The assessment of temperature amplitude arising during the implant bed formation in relation to variable preparation parameters – in vitro study Cover

The assessment of temperature amplitude arising during the implant bed formation in relation to variable preparation parameters – in vitro study

Open Access
|Oct 2021

References

  1. Alwan A., The effect of heat on osseointegration in two steps dental implant, EJPMR, 2017, 4 (6), 126–127.
  2. Augustin G., Davila S., Mihoci K., Udiljak T., Vedrina D.S., Antabak A., Thermal osteonecrosis and bone drilling parameters revisited, Arch. Orthop. Trauma Surg., 2008, 128, 71–77.
  3. Benington I.C., Biagioni P.A., Briggs J., Sheridan S., Lamey P.J., Thermal changes observed at implant sites during internal and external irrigation, Clin. Oral Implants Res., 2002, 13, 293–297.
  4. Brisman D.L., The effect of speed, pressure, and time on bone temperature during the drilling of implant sites, Int. J. Oral Maxillofac. Implants, 1996, 11, 35–37.
  5. Chacon G.E., Bower D.L., Larsen P.E., McGlumphy E.A., Beck F.M., Heat production by 3 implant drill systems after repeated drilling and sterilization, J. Oral Maxillofac. Surg., 2006, 64 (2), 265–269.
  6. Carvalho A.C., Queiroz T.P., Okamoto R., Margonar R., Garcia I.R., Jr, Magro Filho O., Evaluation of bone heating, immediate bone cell viability, and wear of high-resistance drills after the creation of implant osteotomies in rabbit tibias, Int. J. Oral Maxillofac. Implants, 2011, 26, 1193–1201.
  7. Eriksson R.A., Albrektsson T., Magnusson B., Assessment of bone viability after heat trauma. A histological, histochemical and vital microscopic study in the rabbit, Scand. J. Plast. Reconstr. Surg., 1984, 18, 261–268.
  8. Eriksson A., Albrektsson T., Grane B., McQueen D., Thermal injury to bone. A vital-microscopic description of heat effects, Int. J. Oral Surg., 1982, 11, 115–121.
  9. Feine J.S., Carlsson G.E., Awad M.A., Chehade A., Duncan W.J., Gizani S., Head T., Heydecke G., Lund J.P., MacEntee M., Mericske-Stern R., Mojon P., Morais J.A., Naert I., Payne A.G.T., Penrod J., Stoker G.T., Tawse-Smith A., Taylor T.D., Thomason J.M., Thomson W.M., Wismeijer D., The McGill consensus statement on overdentures. Mandibular two-implant overdentures as first choice standard of care for edentulous patients, Montreal, Quebec, Int. J. Oral Maxillofac. Implants, 2002, 17 (4), 601–602.
  10. Flanagan D., Osteotomy irrigation: Is it necessary?, Implant Dent., 2010, 19, 241–249.
  11. Gil J.J., Díaz I., Accini F., Inferring Material Properties in Robotic Bone Drilling Processes, Acta Bioeng. Biomech., 2019, 21 (3), 109–111.
  12. Głowacki J., Tomanik M., Pezowicz C., Krauss H., Mechanical and histomorphometrical evaluation of false and floating ribs of young adults with idiopathic scoliosis, Acta Bioeng. Biomech., 2020, 22 (2), 3–10.
  13. Ihde S., Pałka Ł., Janeczek M., Kosior P., Kiryk J., Dobrzyński M., Bite Reconstruction in the Aesthetic Zone Using One-Piece Bicortical Screw Implants, Case Rep. Dent., 2018, 29, 4671482.
  14. Jastrzębski D., Perz R., Rib kinematics analysis in oblique and lateral impact tests, Acta Bioeng. Biomech., 2020, 22 (1), 1–9.
  15. Kalidindi V., Optimization of Drill Design and Coolant Systems during Dental Implant Surgery, Master’s Thesis, University of Kentucky, Lexington, KY, USA, 2004.
  16. Kim S.J., Yoo J., Kim Y.S., Shin S.W., Temperature change in pig rib bone during implant site preparation by low-speed drilling, J. Oral Maxillofac. Surg., 2010, 5, 522–527.
  17. Kirstein K., Horochowska M., Jagiełło J., Bubak J., Chrószcz A., Kuropka P., Dobrzyński M., Poradowski D., Michałek M., Borawski W., Janeczek M., Dental Implant Site Drilling and Induced Morphological Changes Correlated with Temperature in Pig’s Rib Used as the Human Jaw Model, Appl. Sci., 2021, 11, 2493, 1–11.
  18. Kirstein K., Dobrzynski M., Kosior P., Chrószcz A., Dudek K., Fita K., Parulska O., Rybak Z., Skalec A., Szklarz Sz., Janeczek M., Infrared Thermographic Assessment of Cooling Effectiveness in Selected Dental Implant Systems, BioMed Research International, 2016, Article ID 1879468, DOI: 10.1155/2016/1879468.
  19. Markovic A., Mišić T., Milicic B., Calvo-Guirado J.L., Aleksić Z., Ðinić A., Heat generation during implant placement in low-density bone: Effect of surgical technique, insertion torque and implant macro design, Clin. Oral Implants Res., 2013, 24, 798–805.
  20. Mercan U., Sumer M., Kaya O.A., Keskiner I., Meral D.G., Erdogan O., An In-vitro study on thermal changes during implant drilling with different irrigation volumes, Niger J. Clin. Pract., 2019, 22, 350–354.
  21. Nam O., Yu W., Choi M.Y., Kyung H.M., Monitoring of bone temperature during osseous preparation for orthodontic micro-screw implants: Effect of motor speed and pressure, Key Eng. Mater, 2006, 321–322, 1044–1047.
  22. Oh H.J., Wikesjo U.M., Kang H.S., Ku Y., Eom T.G., Koo K.T., Effect of implant drill characteristics on heat generation in osteotomy sites: a pilot study, Clin. Oral Implants Res., 2011, 22, 722–726.
  23. Scarano A., Piattelli A., Assenza B.,Carinci F., di Donato L., Romani G.L., Merla A., Infrared thermographic evaluation of temperature modifications induced during implant site preparation with cylindrical versus conical drills, Clin. Implant Dent. Relat. Res., 2011, 13, 319–323.
  24. Sharawy M., Misch C.E., Weller N., Tehemar S., Heat Generation during Implant Drilling: The Significance of Motor Speed, J. Oral Maxillofac. Surg., 2002, 60, 1160–1169.
  25. Sener B.C., Dergin G., Gursoy B., Kelesoglu E., Slih I., Effects of irrigation temperature on heat control in vitro at different drilling depths, Clin. Oral Implants Res., 2009, 20, 294–298.
  26. Sumer M., Misir A.F., Telcioglu N.T., Guler A.U., Yenisey M., Comparison of heat generation during implant drilling using stainless steel and ceramic drills, J. Oral Maxillofac. Surg., 2011, 69, 1350–1354.
  27. Trisi P., Berardini M., Falco A., Vulpiani M.P., Effect of Temperature on the Dental Implant Osseointegration Development in Low-Density Bone: An In Vivo Histological Evaluation, Implant Dent., 2015, 24 (1), 96–100.
DOI: https://doi.org/10.37190/abb-01858-2021-02 | Journal eISSN: 2450-6303 | Journal ISSN: 1509-409X
Language: English
Page range: 163 - 173
Submitted on: Jun 3, 2021
|
Accepted on: Oct 5, 2021
|
Published on: Oct 26, 2021
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2021 Piotr Kosior, Anna Nikodem, Marta Kozuń, Krzysztof Dudek, Maciej Janeczek, Maciej Dobrzyński, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.