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Optimizing Preclinical Skill Assessment for Handpiece-Naïve Students: A Strategic Approach
Reinhard Chun Wang Chau1, Szabolcs Felszeghy2, Maria F Sittoni-Pino3
1Faculty of Dentistry, University of Hong Kong, Hong Kong SAR 999077, China.
This novel multi-layered dental drilling plate shows promise for preclinical training, offering good drilling quality and visibility. However, its realism in simulating natural tooth tissues needs further refinement for enhanced dental education.
Area of Science:
- Dental Education
- Simulation-Based Training
- Preclinical Dental Skills
Background:
- Preclinical dental training relies on simulation tools for fine motor skill development.
- Traditional plastic teeth lack realistic tactile feedback.
- Systematic evaluations of multi-layered drilling plates are limited.
Purpose of the Study:
- To evaluate the educational utility of a novel multi-layered drilling plate.
- To assess the perceived realism of the drilling plate simulating enamel, dentin, and pulp.
- To compare the plate's realism and utility against natural dental tissues and existing tools.
Main Methods:
- Seventy dental educators from 14 institutions assessed the drilling plates.
- Standardized protocols and quantitative ratings (1-10 scale) were used.
- Statistical analysis included the Mann-Whitney U Test and Krippendorff's alpha for reliability.
Main Results:
- High scores for drilling quality (enamel: 7.80, dentin: 7.27, pulp: 7.48) and surface smoothness (8.17).
- 90% passing grades indicated high educational utility, rejecting the null hypothesis.
- Significant differences in realism from natural tissues were found (p < 0.05), with poor inter-rater reliability.
Conclusions:
- The drilling plate demonstrates potential for preclinical dental skill development.
- Further research is needed to compare its efficacy against existing tools and assess student outcomes.
- Refinement is required, particularly for dentin haptic simulation, to fully validate its use.
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