Search results for "Titanium implant"

showing 9 items of 9 documents

Skull Bone Defects Reconstruction with Custom-Made Titanium Graft shaped with Electron Beam Melting Technology: Preliminary Experience in a Series of…

2017

Background: Cranioplasty represents a challenge in neurosurgery. Its goal is not only plastic reconstruction of the skull but also to restore and preserve cranial function, to improve cerebral hemodynamics, and to provide mechanical protection of the neural structures. The ideal material for the reconstructive procedures and the surgical timing are still controversial. Many alloplastic materials are available for performing cranioplasty and among these, titanium still represents a widely proven and accepted choice. Methods: The aim of our study was to present our preliminary experience with a “custom-made” cranioplasty, using electron beam melting (EBM) technology, in a series of ten patien…

AdultMaleDecompressive Craniectomymedicine.medical_treatmentchemistry.chemical_elementDentistryNeurosurgical ProceduresCranioplasty030218 nuclear medicine & medical imagingProsthesis Implantation03 medical and health sciencesImaging Three-Dimensional0302 clinical medicineFreezingElectron beam melting technologymedicineHumansSkull boneReconstructive Surgical ProceduresCustom-made titanium implantsAgedRetrospective StudiesTitaniumSettore MED/27 - Neurochirurgiabusiness.industrySkullMiddle AgedCranioplastySkullmedicine.anatomical_structurechemistry3D computer-aided design and computer-aided manufacturing (CAD/CAM) technologiesCerebral hemodynamicsComputer-Aided DesignFemaleSkull bone defectsTomography X-Ray Computedbusiness030217 neurology & neurosurgeryTitaniumBiomedical engineering
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In vitro assessment of a novel additive manufactured titanium implant abutment

2021

Background Dental implant temporization remains a clinical challenge. A novel abutment simplifying the procedure was developed, but conventional fabrication was costly and unpredictable. A workflow was developed to fabricate the novel abutment using additive manufacturing. This in vitro investigation assessed the additive manufactured (AM) novel abutments to conventionally manufactured (CM) abutments. Material and methods The AM abutments were fabricated in dental-grade titanium (Ti-6Al-4V) using Selective Laser Melting and were post-processed. The CM abutments were milled and subsequently laser welded manually. Pin strength of the abutments was assessed using a universal loading machine. T…

Artificial boneTitanium implantMaterials scienceImplant dentistrybusiness.industrymedicine.medical_treatmentResearchAbutment3D printingchemistry.chemical_element030206 dentistry03 medical and health sciences0302 clinical medicinechemistry030220 oncology & carcinogenesisBiomaterials and Bioengineering in DentistrymedicineSelective laser meltingDental implantbusinessGeneral DentistryUNESCO:CIENCIAS MÉDICASTitaniumBiomedical engineering
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Fracture resistance and the mode of failure produced in metal-free crowns cemented onto zirconia abutments in dental implants.

2019

The purpose of the investigation was to analyze fracture resistance and mode of failure of zirconium oxide (zirconia) abutments placed on dental implants bearing crowns of different esthetic materials: zirconia, lithium disilicate (LDS), and nano-ceramic resin, for replacing single teeth in the anterior sector. Eighty implant-abutment-crown units were divided into four groups: Group T-MC (control): 20 metal-ceramic crowns cemented onto titanium abutments; Group Z-Z: 20 zirconia crowns on zirconia abutments; Group Z-LD: 20 lithium disilicate crowns on zirconia abutments; and Group Z-NCR: 20 nano-ceramic resin crowns on zirconia abutments. Specimens underwent a fatiguing process (dynamic load…

CeramicsTeethMedical Implantsmedicine.medical_treatmentDentistry02 engineering and technologyMaterial Fatigue0302 clinical medicineMaterials PhysicsMaterials TestingMedicine and Health SciencesCubic zirconiaDental Restoration FailureMaterialsDental CementumTitaniumProstheticsMultidisciplinaryCrownsPhysicsQRClassical Mechanics021001 nanoscience & nanotechnologyChemistryPhysical SciencesMedicineEngineering and TechnologyAnatomy0210 nano-technologyTitaniumResearch ArticleBiotechnologyChemical ElementsMaterials scienceScienceBiomaterial ImplantsMaterials ScienceAbutmentchemistry.chemical_elementBioengineeringLithiumCrown (dentistry)Anterior region03 medical and health sciencesmedicineHumansTitanium ImplantsDental ImplantsDamage Mechanicsbusiness.industryBiology and Life Sciences030206 dentistryDental PorcelainAssistive TechnologieschemistryMetal freeJawFracture (geology)Zirconium oxideMedical Devices and EquipmentZirconiumbusinessDigestive SystemHeadPloS one
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Fracture resistance after implantoplasty in three implant-abutment connection designs

2020

Background To assess the effect of implantoplasty and implant-abutment design on the fracture resistance and macroscopic morphology of narrow-diameter (3.5 mm) dental implants. Material and Methods Screw-shaped titanium dental implants (n = 48) were studied in vitro. Three groups (n = 16) were established, based on implant-abutment connection type: external hexagon, internal hexagon and conical. Eight implants from each group were subjected to an implantoplasty procedure; the remaining 8 implants served as controls. Implant wall thickness was recorded. All samples were subjected to a static strength test. Results The mean wall thickness reductions varied between 106.46 and 153.75 µm. The me…

Dental Stress AnalysisTitanium implantMaterials scienceCirurgia dentalchemistry.chemical_elementDental Abutments03 medical and health sciences0302 clinical medicineFlexural strengthDental AbutmentsMaterials TestingGeneral DentistryEndosseous dental implantsDental ImplantsTitaniumOrthodonticsCrownsResearchConnection (principal bundle)030206 dentistry:CIENCIAS MÉDICAS [UNESCO]OtorhinolaryngologychemistryDental surgeryUNESCO::CIENCIAS MÉDICASFracture (geology)SurgeryImplants dentals intraossisImplantImplantologyImplant abutmentTitanium
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Effects of various hygiene procedures on the surface characteristics of titanium abutments.

1996

The use of cleaning instruments on titanium implants may cause undesired surface alterations. In a qualitative and quantitative assessment of these alterations, 5 titanium implant abutments were treated with a steel curet, a prototype pure titanium curet, an air abrasive polishing system, and an ultrasonic system. Custom-made polymer templates, used to secure the curet to a vertical guide bar and a spring scale to maintain a constant instrument pressure, guaranteed a standardized procedure and reproducible results. The ultrasonic and the air abrasive polishing method were also standardized. Evaluation by scanning electron microscopy (SEM) revealed surface alterations for all instruments and…

MicroscopeTitanium implantMaterials scienceScanning electron microscopeSurface PropertiesUltrasonic TherapyDentistrychemistry.chemical_elementPolishingDental Abutmentslaw.inventionCurettagelawQuantitative assessmentPressureDental ImplantsTitaniumMicroscopy Confocalbusiness.industryAbrasiveDental ProphylaxisReproducibility of ResultsDental PolishingchemistrySteelMicroscopy Electron ScanningPeriodonticsUltrasonic sensorbusinessPlasticsBiomedical engineeringTitaniumJournal of periodontology
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Immediate Loading in Atrophic Jaws: Zygomatic Implants

2019

The zygomatic fixture is an extended length (35–55 mm) titanium implant, placed into the zygomatic and maxillary alveolar bone. It was designed for situations where atrophy of the posterior maxilla complicates or prevents the placing of conventional implants. The use of zygomatic implants avoids the need for bone grafting, shortens treatment times, and reduces morbidity. They have also been used in patients with maxillectomies resulting from tumors or diseases associated with atrophic conditions of the maxilla.

OrthodonticsTitanium implantbusiness.industrymedicine.medical_treatmentBone graftingmedicine.diseaseAtrophyImmediate loadingMaxillaMedicineIn patientbusinessPosterior maxillaDental alveolus
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Combined surgical and prosthetic approach for rehabilitation of frontonasal defect using custom made titanium implant: a case report

2011

Cranial vault deformities as a sequelae to trauma may be as high as 70%. The basic indications for cranioplasty are improvement of disfigured aesthetics and to provide protection to the intra-cranial contents. The possibility of producing custom-made implants opened a new era in the reconstructive surgery of the craniofacial deformities. The outcome of craniofacial bone reconstruction is thought to be dependent on surgical skills, quality of adjacent soft tissues, size and location of the bone defect and choice of repair method. The use of autologous bone for craniofacial reconstruction may be restricted due to limited amounts of donor bone. Combined surgical and prosthetic rehabilitation o…

Reconstructive surgerymedicine.medical_specialtyTitanium implantRehabilitationbusiness.industrymedicine.medical_treatmentSoft tissueDentistryOdontología:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludCranioplastySurgeryClinical reportUNESCO::CIENCIAS MÉDICASCranial vaultmedicineCraniofacialbusinessGeneral DentistryJournal of Clinical and Experimental Dentistry
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Barbed Dental Ti6Al4V Alloy Screw : Design and Bench Testing

2023

Background context. Dental implants are designed to replace a missing tooth. Implant stability is vital to achieving osseointegration and successful implantation. Although there are many implants available on the market, there is room for improvement. Purpose. We describe a new dental implant with improved primary stability features. Study design. Lab bench test studies. Methods. We evaluated the new implant using static and flexion–compression fatigue tests with compression loads, 35 Ncm tightening torque, displacement control, 0.01 mm/s actuator movement speed, and 9–10 Hz load application frequency, obtaining a cyclic load diagram. We applied variable cyclic loadings of prede…

bone–implant interactions; osseointegration; titanium implants; porous implants; 3D printingGeneral Materials ScienceCirurgia Aparells i instruments
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Bacterial inactivation/sterilization by argon plasma treatment on contaminated titanium implant surfaces: in vitro study

2015

Background: Surface treatment by argon plasma is widely used as the last step of the manufacturing process of ti- tanium implant fixtures before their sterilization by gamma rays. The possibility of using such a technology in the daily clinical practice is particularly fascinating. The aim of the present study was to assess the effects of the argon plasma treatment on different titanium implant surfaces previously exposed in vitro to bacterial contamination. Material and Methods: Sterile c.p. titanium implant discs with turned (T, Sa: 0.8μm), sandblasted/acid-etched (SAE, Sa: 1.3μm) and titanium plasma sprayed (TPS, Sa: 3.0μm) surface were used in this study. A strain of Ag- gregatibacter a…

medicine.medical_specialtyTitanium implantMaterials sciencePlasma GasesSurface Propertieschemistry.chemical_elementPlasma treatmentOdontología02 engineering and technologyAggregatibacter actinomycetemcomitans03 medical and health sciences0302 clinical medicineArgon plasma titanium implant surface Aggregatibacter actinomycetemcomitans.Aggregatibacter actinomycetemcomitanmedicineIn vitro studyArgonGeneral DentistryDecontaminationDental ImplantsTitaniumColony-forming unitArgonBacteriaResearchRadiochemistrySterilization030206 dentistrySterilization (microbiology)Contamination:CIENCIAS MÉDICAS [UNESCO]021001 nanoscience & nanotechnologyCiencias de la saludSurgeryArgon plasmaOtorhinolaryngologychemistryUNESCO::CIENCIAS MÉDICASEquipment ContaminationSurgeryOral SurgeryTitanium implant surface0210 nano-technologyTitanium
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