In Vitro Micro-CT Assessment of a Novel Implant–Abutment Connection Under Static and Cyclic Loading
Abstract
1. Introduction
2. Materials and Methods
2.1. Study Design and Experimental Workflow
2.2. Experimental Sites and Standards
2.3. Implant System and Design Characteristics
2.4. Static and Cyclic Loading Under Different Insertion Torques
2.5. Randomization and Allocation
- - Group 1—Control (C): One specimen with a KS implant inserted at 35 Ncm, used exclusively for calibration of the MTS Acumen testing system and for baseline micro-CT assessment of the implant–abutment interface.
- - Group 2—Group A (35 Ncm): Six specimens identified by one black reference mark and labeled A1–A6. Five specimens (A1–A5) were subjected to static and/or cyclic loading protocols. One specimen (A6) was subjected to static loading until fracture or until a maximum load of 1400 N was reached.
- - Group 3—Group B (70 Ncm): Six specimens identified by two black reference marks and labeled B1–B6. Five specimens (B1–B5) were subjected to static and/or cyclic loading protocols. One specimen (B6) was subjected to static loading until fracture or until a maximum load of 1400 N was reached.
2.5.1. Micro-CT Baseline Assessment
2.5.2. Loading Protocols and Micro-CT Evaluation
2.5.3. Outcome Measures and Statistics
- − Cracks or fissures within the implant or abutment components.
- − Discontinuities at the implant–abutment interface.
- − Permanent deformation or distortion of the conical geometry.
- − Localized defects or material irregularities.
- − Visible microgaps along the interface.
3. Results
3.1. Results of Static and Cyclic Loading Tests
3.2. Micro-CT Evaluation of the Implant–Abutment Interface
4. Discussion
5. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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| Protocol | Samples | Static Loading | Cyclic Loading | Cycles | Frequency (Hz) | Max Load (N) | Micro-CT Evaluation |
|---|---|---|---|---|---|---|---|
| Static and Low-Cycle Loading | A1, B1 | 400 N–120 s | 0–200 N | 1K | 5 | 400 | Post-loading |
| Static Loading—Intermediate Cyclic Loading | A2, B2 | 400 N–120 s | 0–400 N | 1K | 5 | 400 | Post-loading |
| Progressive Cyclic Loading | A3, B3 | None | 0–400 N | 3K | 5 | 400 | Post-loading |
| Progressive Cyclic Loading | A4, B4 | None | 0–400 N | 5K | 5 | 400 | Post-loading |
| Extended Cyclic Loading | A5, B5 | None | 0–400 N | 10K | 5 | 400 | Post-loading |
| Static Loading to Failure | A6, B6 | Until fracture (or 1400 N) | None | - | - | 1400 | Post-loading |
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© 2026 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license.
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Tallarico, M.; Melodia, D.; Zadrozny, L.; Cacciò, C.; Meloni, S.M.; Lumbau, A.I.; Catapano, S.; Baldari, R.; Molak, R.; Jaroszewicz, J.; et al. In Vitro Micro-CT Assessment of a Novel Implant–Abutment Connection Under Static and Cyclic Loading. Appl. Sci. 2026, 16, 2394. https://doi.org/10.3390/app16052394
Tallarico M, Melodia D, Zadrozny L, Cacciò C, Meloni SM, Lumbau AI, Catapano S, Baldari R, Molak R, Jaroszewicz J, et al. In Vitro Micro-CT Assessment of a Novel Implant–Abutment Connection Under Static and Cyclic Loading. Applied Sciences. 2026; 16(5):2394. https://doi.org/10.3390/app16052394
Chicago/Turabian StyleTallarico, Marco, Dario Melodia, Lukasz Zadrozny, Carlotta Cacciò, Silvio Mario Meloni, Aurea Immacolata Lumbau, Santo Catapano, Riccardo Baldari, Rafał Molak, Jakub Jaroszewicz, and et al. 2026. "In Vitro Micro-CT Assessment of a Novel Implant–Abutment Connection Under Static and Cyclic Loading" Applied Sciences 16, no. 5: 2394. https://doi.org/10.3390/app16052394
APA StyleTallarico, M., Melodia, D., Zadrozny, L., Cacciò, C., Meloni, S. M., Lumbau, A. I., Catapano, S., Baldari, R., Molak, R., Jaroszewicz, J., & Cervino, G. (2026). In Vitro Micro-CT Assessment of a Novel Implant–Abutment Connection Under Static and Cyclic Loading. Applied Sciences, 16(5), 2394. https://doi.org/10.3390/app16052394

