- K. Shemtov-Yona, D. Rittel, L. Levin and E. Machtei, (2012), “The Effect of Oral-Like Environment on Dental Implants’ Fatigue Performance”, Clinical Oral Implants Research 25, 2,e166-e170.
- K. Shemtov-Yona, D. Rittel, L. Levin and E. Machtei, (2014),”Effect of Dental Implant Diameter Fatigue Performance. Part I: Fatigue performance”, Clinical Implant Dentistry and Related Research, 16(2),172-177.
- K. Shemtov-Yona, D. Rittel E. Machtei and L. Levin, (2014), ”Effect of Dental Implant Diameter on Fatigue Performance. Part II: Failure Analysis”, Clinical Implant Dentistry and Related Research, 16(2),178-184.
- Shemtov-Yona, K. & Rittel, D. (2014), “Identification of Failure Mechanisms in Retrieved Fractured Dental Implants”, Engineering Failure Analysis. 38: 58-65.
- K. Shemtov-Yona, D. Rittel and A. Dorogoy, (2014), “Mechanical Assessment of Grit Blasting Surface Treatments of Dental Implants”, J. Mech. Behavior of Biomedical Biomaterials, 39, 375-390.
- K. Shemtov-Yona and D. Rittel, (2015), “On the Mechanical Integrity of Retrieved Dental Implants”, J. Mech. Behavior of Biomedical Biomaterials, 49, 290-299.
- K. Shemtov-Yona and D. Rittel, (2015), “An Overview of the Mechanical Integrity of Dental Implants”, invited paper, Biomedical Research International, 2015, article ID 547384.
- K. Shemtov-Yona and D. Rittel, (2016), “Random Spectrum Loading of Dental Implants: An Alternative Approach to Functional Performance Assessment”, J. Mech. Behavior of Biomedical Biomaterials, 62, 1-9.
- K. Shemtov-Yona and D. Rittel, (2016), “Fatigue Failure of Dental Implants in Simulated intraoral media”, J. Mech. Behavior of Biomedical Biomaterials, 62, 636-644.
- K. Shemtov-Yona and D. Rittel, (2016), “Fatigue of dental implants: facts and fallacies”, invited paper, Dentistry Journal, 4(2), 16.
- K. Shemtov-Yona, H. Stolero, L. Chaushu and C. Nemcovsky (2016) Root coverage: why, when and how? invited paper Shinanut 55: 14-20
- A. Dorogoy, D. Rittel, K. Shemtov-Yona and R. Korabi, (2017), “Modeling dental implant insertion”, J. Mech. Behavior of Biomedical Biomaterials, 68, 42-50.
- D. Rittel, A. Dorogoy and K. Shemtov-Yona, (2017), “Modelling dental implant extraction by pullout and torque and procedures”, J. Mech. Behavior of Biomedical Biomaterials, 71, 416-427.
- R. Korabi, K. Shemtov-Yona, A. Dorogoy and D. Rittel, (2017), “The failure envelope concept applied to the bone-dental implant system”, Scientific Reports, 7, 2051.
- R. Korabi, K. Shemtov-Yona and D. Rittel, (2017), “On stress/strain shielding and the material stiffness paradigm for dental implants”, Clin. Implant Dentistry and Related Research, DOI: 10.1111/cid.12509
- D. Rittel, K. Shemtov-Yona and R. Korabi, (2017), “Engineering dental implants”, invited paper, Current Oral Health Reports, 4(3), 239-247.
- D. Rittel, K. Shemtov-Yona and R. Lapovok, (2018), “Random spectrum fatigue performance of severely plastically deformed titanium for implant dentistry applications”, J. Mech. Behavior of Biomedical Biomaterials, 83, 94-101.
- D. Rittel, A. Dorogoy and K. Shemtov-Yona, (2018), “Modelling the effect of osseointegration on dental implant pullout and torque removal tests”, Clin. Implant Dentistry and Related Research, 20, 683-691.
- K. Shemtov-Yona, M. Ozcan and D. Rittel, (2018), “Fractographic characterization of fatigued zirconia dental implants tested in room air and saline solution”, Eng. Failure Analysis, 96, 298-310.
- D. Rittel, A. Dorogoy, G. Haïat and K. Shemtov-Yona, (2019), “Resonant frequency analysis of dental implants”, Medical Eng. & Physics, 66, 65-74.
- K. Shemtov-Yona, M. Özcan, A. Godinger, N. de Basso and D. Rittel, (2019), “Random spectrum fatigue of zirconia dental implants in air and saline solution”, Engng. Failure Analysis,106, 104160.
- A. Dorogoy, G. Haïat, K. Shemtov-Yona and D. Rittel, (2020), “Modelling ultrasonic wave propagation in a dental implant-bone system”, J. Mech. Behavior of Biomedical Matls, 103, 103547.
- S. Chen, D. Rittel and K. Shemtov-Yona, (2021), “The normal stiffness of the edentulous alveolar process”, Bone Reports, 14, 101066.
- K. Shemtov-Yona, (2021), “Quantitative assessment of the jawbone quality classification: A meta-analysis study”, PLoS ONE, 16(6), e0253283.
- J. Xie, D. Rittel, K. Shemtov-Yona, F.A. Shah and A. Palmquist, (2021), “A stochastic micro to macro mechanical model for the evolution of bone-implant interface stiffness”, Acta Biomaterialia, 131, 415-423.
- S. Levartovsky, H. Bohbot, K. Shemtov-Yona, T. Brosh, and R. Pilo (2021), “Effect of different surface treatments of lithium disilicate on the adhesive properties of resin cements”. Materials 14(12), 3302.
- S. Chen, D. Rittel and K. Shemtov-Yona, (2022), “Probing the sensitivity of the resonant frequency analysis to the dental implant-bone condition: A numerical study”, J. Mech. Behavior of Biomedical Biomaterials, 128, 105128.
- S. Gershov, J. Xie, F.A. Shah, K. Shemtov-Yona and D. Rittel (2022), “Modelling the resonant frequency associated with the Spatio-temporal evolution of the bone-dental implant interface”, Acta Biomaterialia, 154:302-311.
- S. Aharoni, D. Rittel and K. Shemtov-Yona, (2023), “Compressive mechanical behavior and failure of the pig bone rib and correlation to its morphological characteristics”, Mechanics of Materials, 185, 104767.
- K. Shemtov-Yona, A. Arieli, M. Barhum, R. Pilo and S. Levartovsky, (2023), “The effect of contaminating media on the static and dynamic mechanical resilience of dental implant abutments' screws”, Clin Implant Dent. Relat. Res. 2023,1–10.
- J. Xie, Y. Qiao, Z. Wang, Y. Qi, Q. Xu, K. Shemtov-Yona, P. Chen and Daniel Rittel, (2024), “Application of the Taguchi method to areal roughness-based surface topography control by waterjet treatments”, Applied Surface Science-Advances, 19, 100548.
- A. Shavit, D. Rittel and K. Shemtov-Yona, (2024), “The chemical and microstructural signature of peri-implantitis on titanium dental implants’ surface”, Applied Surface Science-Advances, 19, 100553.
- K. Shemtov‐Yona, A. Arieli, M. Barhum, R. Pilo & S. Levartovsky, (2023). The effect of contaminating media on the static and dynamic mechanical resilience of dental implant abutments' screws: In vitro study. Clinical Implant Dentistry and Related Research. https://doi.org/10.1111/cid.13271
- J. Xie, Y. Qiao, Y. Qi, Q. Xu, K. Shemtov-Yona, P. Chen, & D. Rittel (2024). Application of the Taguchi method to areal roughness-based surface topography control by waterjet treatments. Applied Surface Science Advances, 19, 100548.