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TS System - Osstem.

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Architectural Features of the <strong>TS</strong>III HA Implant<strong>TS</strong> <strong>System</strong> ReferencesClinical StudyJune-Cheol Hwang, Hong-Young Choi, Tae-Gwan EomScientific Poster, <strong>Osstem</strong> World Meeting 20111. Choon-Mo Yang. Immediate Implant Placement and Immediate Loading with <strong>Osstem</strong> <strong>TS</strong>III Implant <strong>System</strong> and Chair-side Provisional Restoration inMandibular Anterior Partial Edentulism. Scientific Poster, <strong>Osstem</strong> World Meeting 2011.2. Hyun-Ki Cho. Immediate placement of dental implant - <strong>TS</strong>III SA Implant clinical result. Scientific Poster, <strong>Osstem</strong> World Meeting 2011.<strong>TS</strong> <strong>System</strong> Pre-Clinical StudyObjective:The highly crystallized <strong>TS</strong>III HA implant was uniquely treatedafter the hydroxyapatite (HA) coating process.In this study, the structural characteristics of the HA-coated<strong>TS</strong>III HA implant were evaluated.Study design:The structural characteristics of two products: the <strong>Osstem</strong><strong>TS</strong>III HA implant (∅4.0 x 10mm) and the Zimmer <strong>TS</strong>V HAimplant (∅4.1 x 11mm) were compared and examinedbased on product design, surface image, degree ofcrystallinity, stability of HA coating layer after implantationin pig bone, tensile bonding strength, and shear bondingstrength.Results:1) Surface morphology observation:In Fig. 1, the typical HA surface with a plasma spray isshown through the SEM image of a <strong>TS</strong>III and <strong>TS</strong>V implantsurface.<strong>TS</strong>III HA<strong>TS</strong>V HAFig. 1. SEM morphology observation of the implanta) <strong>TS</strong>III HA, b)<strong>TS</strong>V HA.3) Stability of HA coating layer after implantationThe SEM observation result of the HA coating layer wasaltogether excellent after implanting a <strong>TS</strong>III HA and <strong>TS</strong>V HAimplant with the implanted torque of a 35 Ncm in the pigbone.Fig. 3. HA coating surface as observed with SEM after implanting it with theimplanted torque of a 35Ncm in the pig bone. a)<strong>TS</strong>III HA, b)<strong>TS</strong>V HA.4) Tensile and shear strength evaluation[Mpa][Mpa]3. Hak Oh. Immediate Loading of <strong>TS</strong>III HA, <strong>TS</strong>III SA Implant system. Scientific Poster, <strong>Osstem</strong> World Meeting 2011.4. Young-Kyun Kim, Ji-Hyun Bae. Subjective satisfaction of clinician and Short-termClinical Evaluation of <strong>Osstem</strong> <strong>TS</strong>III SA Implant. J Korean Cilnical Implant2010;30(7):430-43.Pre-Clinical StudyBiology1. Hong-Young Choi, Su-Kyung Kim, Jae-Jun Park, Tae-Gwan Eom. Enhancement of in Vitro Osteogenesis on Sandblasted and Acid Etched Surfaces withRough Micro-topography. Scientific Poster, <strong>Osstem</strong> World Meeting 2011.2. Hong-Young Choi, Jae-June Park, Su-Kyung Kim, Tae-Gwan Eom. The Effects of Surface Roughness on the Sandblasted with Large Grit Alumina andAcid Etched Surface Treatment: In Vitro Evaluation. Scientific Poster, <strong>Osstem</strong> World Meeting 2011.3. Hong-Young Choi, Jae-June Park, In-Hee Cho, Tae-Gwan Eom. The Effects of Surface Roughness on the Sandblasted with Large Grit Alumina and AcidEtched Surface Treatment: In Vivo Evaluation. Scientific Poster, <strong>Osstem</strong> World Meeting 2011.4. In-Hee Cho, Hong-Young Choi, Woo-Jung Kim, Tae-Gwan Eom. Biomechanical and Histomorphometrical Evaluation of Bone-Implant Integration at SandBlasting with Alumina and Acid Etching (SA) Surface. Scientific Poster, 19th Annual Scientific Congress of EAO 2010.5. Tae-Gwan Eom, Gyeo-Rok Jeon, Chang-Mo Jeong, Young-Kyun Kim, Su-Gwan Kim, In-Hee Cho, Yong-Seok Cho, Ji-Su Oh. Experimental Study of BoneResponse to Hydroxyapatite Coating Implants: BIC and Removal Torque Test. Submitted to Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2011.6. Tae-Gwan Eom, Young-Kyun Kim, Jong-Hwa Kim, In-Hee Cho, Chang-Mo Jeong, Yong-Seok Cho. Experimental Study about the Bony Healing ofHydroxyapatite Coating Implants. J Korean Assoc Oral Maxillofac Surg 2011;37(4):295-300.7. Min-Woo Kim, Tae-Gwan Eom. Surface Property Evaluation According to the High Crystallinity of the <strong>TS</strong>III HA Implant. Scientific Poster, <strong>Osstem</strong> WorldMeeting 2011.8. June-Cheol Hwang, Hong-Young Choi, Tae-Gwan Eom. Architectural Feature of <strong>TS</strong>III HA Implant. Scientific Poster, <strong>Osstem</strong> World Meeting2011<strong>TS</strong> <strong>System</strong> References2) Degree of crystallinityCrystallinity 68.2%Amorphous CaPPre-Clinical StudyBiomechanics1. Tae-Gwan Eom, Seung-Woo Suh, Myung-Duk Kim, Young-Kyun Kim, Seok-Gyu Kim. Influence of Implant Length and Insertion Depth on Stress Analysis:a Finite Element Study. Scientific Poster, Academy of KSME 2011.2. Tae-Gwan Eom, In-Ho Kim, Insertion Torque Sensitivity of <strong>TS</strong>IV SA Fixture in Artificial Bone Model. Scientific Poster, <strong>Osstem</strong> World Meeting 2011.IntensityCrystallinity 98%Method- Tensile TEST : ASTM F1147-05 / - Shear TEST : ASTM F1044-052-theta(degree)Conclusions:The <strong>TS</strong>III HA implant displayed excellent initial stability andplacement convenience in terms of design in the structuralanalysis. The quality and performance of this HA coatingproduct are considered equal to the products of renownedmanufacturers overseas.Fig. 2. The comparison of the X-ray diffraction pattern of HA specialprocessing. Before (a) and after (b).2021

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