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Scientific Reports|May 4, 2025
Innovative colorimetric thermal study of methylcellulose hydrogel via smartphone imagingItai Danieli, Daniel RittelJournal of the Mechanical Behavior of Biomedical Materials|October 7, 2021
Hyperelastic modeling of solid methyl cellulose hydrogel under quasi-static compressionOrel Guetta, Daniel RittelDentistry Journal|March 23, 2018
Fatigue of Dental Implants: Facts and FallaciesKeren Shemtov-Yona, Daniel RittelBiomed Research International|November 20, 2015
An Overview of the Mechanical Integrity of Dental ImplantsKeren Shemtov-Yona, Daniel RittelJournal of the Mechanical Behavior of Biomedical Materials|October 3, 2025
Bone morphology and mechanical Behavior: New insights into cortical and trabecular failure under compressionNicole Limzider, Daniel Rittel, Keren Shemtov-YonaScientific Reports|October 27, 2024
Factual observations of dynamic bone crushingSagi Aharoni, Daniel Rittel, Keren Shemtov-YonaClinical Implant Dentistry and Related Research|June 14, 2017
On stress/strain shielding and the material stiffness paradigm for dental implantsRaoof Korabi, Keren Shemtov-Yona, Daniel RittelClinical Implant Dentistry and Related Research|July 28, 2018
Modeling the effect of osseointegration on dental implant pullout and torque removal testsDaniel Rittel, Avraham Dorogoy, Keren Shemtov-YonaChemical Communications (Cambridge, England)|September 26, 2018
Impact-induced gelation in aqueous methylcellulose solutionsGalit Parvari, Yonatan Rotbaum, Yoav Eichen, et al.Clinical Implant Dentistry and Related Research|July 12, 2012
Effect of dental implant diameter on fatigue performance. Part I: mechanical behaviorKeren Shemtov-Yona, Daniel Rittel, Liran Levin, et al.Pageof 2