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Bioengineering (Basel, Switzerland)|November 27, 2024
Novel Subperiosteal Device Geometry and Investigation of Efficacy on Surrounding Bone Formation and Bone-Bonding StrengthYoshiya Kaisaka, Masayoshi Uezono, Masaki Inoue, et al.
Journal of Cranio-Maxillo-Facial Surgery : Official Publication of the European Association for Cranio-Maxillo-Facial Surgery|May 19, 2025
Biomechanical analysis of stress distribution changes in the maxillomandibular complex following surgical correction for facial asymmetry with reverse occlusal cant: A pilot finite element studyNicha Kositkittiwanit, Takeshi Ogasawara, Masayoshi Uezono, et al.
Dento Maxillo Facial Radiology|March 20, 2025
Assessment of mandibular landmark specification: correspondence between two-dimensional radiography and three-dimensional computed tomographyMisato Shimizu, Yoshikazu Nakajima, Takeshi Ogasawara, et al.
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|April 5, 2013
Hydroxyapatite/collagen nanocomposite-coated titanium rod for achieving rapid osseointegration onto bone surfaceMasayoshi Uezono, Kazuo Takakuda, Masanori Kikuchi, et al.
Journal of the World Federation of Orthodontists|July 9, 2023
Cortical bone microdamage affects primary stability of orthodontic miniscrewPanida Methawit, Masayoshi Uezono, Takeshi Ogasawara, et al.
Journal of Biomedical Materials Research. Part A|March 31, 2021
Development of novel bone-like nanocomposite coating of hydroxyapatite/collagen on titanium by modified electrophoretic depositionKaori Iwanami-Kadowaki, Tetsuo Uchikoshi, Masayoshi Uezono, et al.
Materials (Basel, Switzerland)|April 30, 2021
Evaluation of Cortical Bone Microdamage and Primary Stability of Orthodontic Miniscrew Using a Human Bone AnalogueChutimont Teekavanich, Masayoshi Uezono, Kazuo Takakuda, et al.
Biomed Research International|February 3, 2018
Shape Optimization of Bone-Bonding Subperiosteal Devices with Finite Element AnalysisTakeshi Ogasawara, Masayoshi Uezono, Kazuo Takakuda, et al.
Biomaterials and Biosystems|February 16, 2026
Rapid bone formation and remodeling via vascular infiltration of a hydroxyapatite/collagen nanocomposite beneath the calvarial periosteumHanae Arai, Masayoshi Uezono, Masanori Kikuchi, et al.
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|May 1, 2019
Enhanced bone formation onto the bone surface using a hydroxyapatite/collagen bone-like nanocompositeTaizo Hiratsuka, Masayoshi Uezono, Kazuo Takakuda, et al.
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