From Traditional to Cutting-Edge: A Review of Dental Equipment Evolution
Dental top equipment
DOI:
https://doi.org/10.5281/zenodo.16016684Keywords:
Modern Dentistry, Digital Dentistry, 3D Printing in Dentistry, Laser Dentistry, Minimally Invasive DentistryAbstract
This article explores the evolution of dental equipment, from traditional tools to modern cutting-edge technology, highlighting key advancements that have shaped contemporary dental practices. By tracing the development of essential dental instruments, this review provides insights into how these innovations have improved patient care, increased efficiency, and transformed the field of dentistry. The discussion also examines the implications of these changes for future dental practices, with a focus on both the benefits and challenges posed by adopting new technologies
References
1. Jones, R. (2019). Advancements in Dental Technology: Past, Present, and Future. Journal of Dental Research, 98(4), 456-462.
2. Smith, T., & Brown, L. (2018). Historical Perspectives on Dental Equipment. Dental History Review, 32(2), 120-132.
3. Miller, A. (2020). The Evolution of Dental Tools: From Hand Instruments to Digital Devices. Modern Dentistry, 45(6), 235-241.
4. Roberts, P., & Lee, M. (2021). Digital Radiography and Its Impact on Dental Diagnostics. Clinical Dentistry Today, 29(3), 98-104.
5. Abdi, H., Mirani, A., & Jafari, R. (2024). Quantitative assessment of traumatic brain injury risk in diverse age groups of females: Insights from computational biomechanics. Heliyon, 10(10).
6. Einollahi, B., Javanbakht, M., Ebrahimi, M., Ahmadi, M., Izadi, M., Ghasemi, S., Einollahi, Z., Beyram, B., Mirani, A., & Kianfar, E. (2024). Surveying haemoperfusion impact on COVID-19 from machine learning using Shapley values. Inflammopharmacology, 1-10.
7. Mirani, A., Kianfar, E., Maleknia, L., & Javanbakht, M. (2024). Recent advances in Nicotine Electrochemical biosensors: a review. Case Studies in Chemical and Environmental Engineering, 100753.
8. Mirani, A., Maleknia, L., & Amirabadi, A. (2020). Glassy carbon electrode modified with hybrid nanofibers containing carbon nanotubes trapped in chitosan for the voltammetric sensing of nicotine at biological pH. Nanotechnology, 31(43), 435504.
9. Mirani, A., Maleknia, L., & Amirabadi, A. (2021). Nicotine Degradation Detection by Marine Plants Using Hybrid Modified Electrode Made of Chitosan Nanofibers and Functionalized Carbon Nanotubes. Journal of Marine Medicine, 3(2), 75-82.
10. Mirani, A., Maleknia, L., & Amirabadi, A. (2022). Preparation of Bio-Sensor with Hybrid Nanofibers of Chitosan/Functional Carbon Nanotubes for the Sensing of Nicotine. Journal of Color Science and Technology, 15(4), 271-286.
11. Mirani, A., Rheima, A. M., Jawad, S. F., Athair, D. M., Al-Sharify, Z. T., Esmaili, M., & Sayadi, H. (2024). Effect and investigating of oxygen/nitrogen on modified glassy carbon electrode chitosan/carbon nanotube and best detection of nicotine using Cyclic voltammetry measurement technique. Results in Chemistry, 101739.
12. Thompson, J., Davis, H., & Wilson, R. (2022). 3D Printing and Laser Technology in Dentistry: A New Era of Innovation. Journal of Prosthetic Dentistry, 60(8), 521-529.
13. Green, K., & Parker, S. (2023). Challenges and Opportunities in the Adoption of Modern Dental Equipment. International Journal of Dental Practice, 40(2), 67-74.
Downloads
Published
Versions
- 2025-07-17 (3)
- 2025-07-15 (2)
- 2024-09-24 (1)
How to Cite
License
Copyright (c) 2024 MEDICO&ENGINEERING FUTURE

This work is licensed under a Creative Commons Attribution 4.0 International License.