Search results for " BIOMEDICAL"

showing 10 items of 480 documents

Viability and Stimulation of Human Stem Cells from the Apical Papilla (hSCAPs) Induced by Silicate-Based Materials for Their Potential Use in Regener…

2020

Blood clot formation in the apical third of the root canal system has been shown to promote further root development and reinforcement of dentinal walls by the deposition of mineralized tissue, resulting in an advancement from traditional apexification procedures to a regenerative endodontic treatment (RET) for non-vital immature permanent teeth. Silicate-based hydraulic biomaterials, categorized as bioactive endodontic cements, emerged as bright candidates for their use in RET as coronal barriers, sealing the previously induced blood clot scaffold. Human stem cells from the apical papilla (hSCAPs) surviving the infection may induce or at least be partially responsible for the regeneration …

Regenerative endodonticsmedicine.medical_treatmentRoot canal0206 medical engineeringReview02 engineering and technologyhuman stem cells from the apical papillalcsh:Technology03 medical and health sciences0302 clinical medicinemedicineGeneral Materials ScienceViability assaylcsh:Microscopylcsh:QC120-168.85lcsh:QH201-278.5lcsh:TChemistryGrowth factorIn vitro toxicology030206 dentistrysilicate-based materials020601 biomedical engineeringregenerative endodontic treatmentRUNX2medicine.anatomical_structurelcsh:TA1-2040Cancer researchApexificationlcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineeringStem celllcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Materials
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Remineralization ability of two hydraulic calcium-silicate based dental pulp capping materials: Cell-independent model

2019

Background This study aimed to evaluate remineralizing ability of two hydraulic calcium-silicate cements (Biodentine and TheraCal LC). Material and Methods Artificial carious lesions were introduced into the pulpal floors (1-1.5 mm) and axial walls of occlusal prepared cavity halves through pH cycling. Cycling was made through demineralizing solution (pH 3), for 8 hours and remineralizing solution (pH 7) for 16 hours. The total period of pH cycling was 14 days. Prepared cavities with the tested materials seated directly on the pulpal floor and in contact with the axial walls were stored in phosphate buffer solutions (PBS) (pH 7.2–7.4). The changes in the weight percentages (wt%) of calcium …

RemineralisationResearchPhosphorus0206 medical engineeringDental Pulp Cappingchemistry.chemical_element02 engineering and technologyCalcium:CIENCIAS MÉDICAS [UNESCO]021001 nanoscience & nanotechnology020601 biomedical engineeringSurface mappingchemistry.chemical_compoundmedicine.anatomical_structurestomatognathic systemchemistryUNESCO::CIENCIAS MÉDICASBiomaterials and Bioengineering in DentistryCalcium silicateDentinmedicine0210 nano-technologyGeneral DentistryIncubationNuclear chemistryJournal of Clinical and Experimental Dentistry
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Translational Research in Thrombosis and Haemostasis.

2019

Research designmedicine.medical_specialtyHemostasisPractice patternsbusiness.industryMEDLINEAdministration OralAnticoagulantsTranslational researchThrombosisHematologymedicine.diseaseThrombosisTranslational Research BiomedicalResearch DesignGermanymedicinePrevalenceHumansPractice Patterns Physicians'Intensive care medicinebusinessHamostaseologie
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Four-year outcomes of full-arch fixed dental prostheses using CAD/CAM frameworks : a retrospective review of 15 cases

2018

The aim of this report is to analyze the clinical performance of 20 full-arch implant-supported titanium frameworks using CAD/CAM (Computer-Aided Design and Computer-Aided Manufacturing) technology. One hundred and four implants were placed in 15 patients using a one-stage protocol. After planning the location of all implants via 3-dimensional software (NobleClinician), 4-8 implants were placed in each edentulous arch based on anatomical measurements. Twenty edentulous arches were treated with full arch implant-supported fixed dental prostheses utilizing CAD/CAM milled titanium frameworks . All patients were followed up for 48±4 months. Clinical performance of the implants and restorations …

Retrospective reviewProsthetic Dentistrybusiness.industrymedicine.medical_treatment0206 medical engineeringClinical performanceDentistryCADCase Report030206 dentistry02 engineering and technology:CIENCIAS MÉDICAS [UNESCO]020601 biomedical engineeringProsthesis03 medical and health sciences0302 clinical medicineUNESCO::CIENCIAS MÉDICASmedicineImplantArchbusinessGeneral DentistrySurvival rateOcclusal Adjustment
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Solubility and pH of bioceramic root canal sealers: A comparative study

2017

Background This study compared the solubility and the pH of different root canal sealers in vitro. Material and Methods BioRoot™RCS, TotalFill BC Sealer, MTA Fillapex, SealapexTM, AH Plus, EasySeal, Pulp Canal Sealer™ and N2 were tested. Similar specimens were prepared using ring molds with an internal diameter of 20 ± 0,1 mm and a height of 1,5 ± 0,1 mm and digitally weighted to register the mass of each specimen before and after immersion in distilled water. Solubility was determined after 24 hours and statistically analysed using a one-way ANOVA test and post-hoc Tukey test. The pH value was measured by a digital pH meter after 3 and 24 hours from manipulation. Results BioRoot™RCS and To…

Root canal0206 medical engineeringAlkalinityDentistry02 engineering and technologyBioceramicpH meterOperative Dentistry and Endodontics03 medical and health sciences0302 clinical medicinemedicinePulp canalSolubilityGeneral Dentistrybusiness.industryChemistryResearch030206 dentistry:CIENCIAS MÉDICAS [UNESCO]020601 biomedical engineeringmedicine.anatomical_structureDistilled waterUNESCO::CIENCIAS MÉDICASTukey's range testbusinessNuclear chemistryJournal of Clinical and Experimental Dentistry
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Effect of antibacterial/adhesive approaches on bonding durability of fiber posts cemented with self-etch resin cement

2017

Background Longevity of post-retained restoration is highly depended on bonding stability of fiber post (FP) to root dentin. This study evaluated the effect of different antibacterial/adhesive approaches on bonding durability of FPs luted into root canal with a self-etch cement. Material and methods Seventy-two human maxillary central incisor roots were divided into six groups after endodontic treatment, based on the antibacterial/adhesive treatments as follows: 1)ED primer II (ED, control); 2) Clearfil Protect Bond (PB); 3) 2% chlorhexidine (CH) pretreatment + ED primer II (CH+ED); 4) CH-incorporated into ED primer II (CH in ED); 5) CH pretreatment + Clearfil SE Bond (CH+SE); and 6)CH-inco…

Root canal0206 medical engineeringDentistry02 engineering and technologyOperative Dentistry and Endodontics03 medical and health sciences0302 clinical medicinemedicineFiberFiber postsGeneral DentistryBond strengthChemistrybusiness.industryResearchChlorhexidine030206 dentistry:CIENCIAS MÉDICAS [UNESCO]020601 biomedical engineeringDurabilitymedicine.anatomical_structureSelf etchUNESCO::CIENCIAS MÉDICASAdhesivebusinessNuclear chemistrymedicine.drugJournal of Clinical and Experimental Dentistry
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Change of Direction Biomechanics in a 180-Degree Pivot Turn and the Risk for Noncontact Knee Injuries in Youth Basketball and Floorball Players.

2021

Background: Studies investigating biomechanical risk factors for knee injuries in sport-specific tasks are needed. Purpose: To investigate the association between change of direction (COD) biomechanics in a 180-degree pivot turn and knee injury risk among youth team sport players. Study Design: Cohort study; Level of evidence, 2. Methods: A total of 258 female and male basketball and floorball players (age range, 12-21 years) participated in the baseline COD test and follow-up. Complete data were obtained from 489 player-legs. Injuries, practice, and game exposure were registered for 12 months. The COD test consisted of a quick ball pass before and after a high-speed 180-degree pivot turn o…

SOCCERMaleKnee JointpolvetApplied psychologyCRUCIATE LIGAMENT INJURYPoison control02 engineering and technologyCohort StudiesFEMALE BASKETBALL0302 clinical medicineMedicinerisk factorsOrthopedics and Sports Medicine315 Sport and fitness sciencesTeam handballChildkohorttitutkimusLicenseurheiluvammatACL injuriesJOINTriskitekijätCreative commonsASSOCIATIONArticlesmusculoskeletal systemBiomechanical PhenomenaFemalebiomekaniikkateam sportsTEAM HANDBALLloukkaantuminen (fyysinen)musculoskeletal diseasesAdultBasketballInjury controlAdolescentknee injuries0206 medical engineeringPhysical Therapy Sports Therapy and RehabilitationBasketballbiomechanicsMECHANISMS03 medical and health sciencesYoung AdultDROP JUMPSHumansjoukkueurheiluDegree (angle)Kneebusiness.industryAnterior Cruciate Ligament Injuriesscreening030229 sport sciences3126 Surgery anesthesiology intensive care radiology020601 biomedical engineering3141 Health care scienceNEUROMUSCULAR CONTROLPROSPECTIVE COHORTvammatbusinessKnee injurieshuman activitiesurheilijatThe American journal of sports medicine
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Biologic response of inguinal hernia prosthetics: a comparative study of conventional static meshes versus 3D dynamic implants.

2015

Despite improvements in prosthetics and surgical techniques, the rate of complications following inguinal hernia repair remains high. Among these, discomfort and chronic pain have become a source of increasing concern among surgeons. Poor quality of tissue ingrowth, such as thin scar plates or shrinking scars-typical results with conventional static implants and plugs-may contribute to these adverse events. Recently, a new type of 3D dynamically responsive implant was introduced to the market. This device, designed to be placed fixation-free, seems to induce ingrowth of viable and structured tissue instead of regressive fibrotic scarring. To elucidate the differences in biologic response be…

Sampling StudieTime FactorsTime FactorProstheses and ImplantBiomedical EngineeringMedicine (miscellaneous)BioengineeringBiocompatible MaterialsHernia InguinalPolypropylenesProsthesis DesignSampling StudiesStatistics NonparametricImaging Three-DimensionalProstheseTensile StrengthMaterials TestingHumansHerniorrhaphyBiocompatible MaterialMedicine (all)Inguinal herniaImplantTissue scaffoldProstheses and ImplantsSurgical MeshBiomaterialImmunohistochemistryProsthesis FailureSettore MED/18 - Chirurgia GeneraleTissue regenerationBiomaterials; Herniorrhaphy; Implants; Inguinal hernia; Prostheses; Tissue regeneration; Tissue scaffolds; Biocompatible Materials; Hernia Inguinal; Herniorrhaphy; Humans; Imaging Three-Dimensional; Immunohistochemistry; Materials Testing; Polypropylenes; Prosthesis Design; Prosthesis Failure; Sampling Studies; Statistics Nonparametric; Tensile Strength; Time Factors; Prostheses and Implants; Surgical Mesh; Biomaterials; Biomedical Engineering; Bioengineering; Medicine (miscellaneous); Medicine (all)PolypropyleneHumanArtificial organs
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2020

In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold for large bone defect treatment (LBDT). Microporous, polylactic acid (PLA) scaffolds showed good healing results in small animals. However, transfer to large animal models is not easily achieved simply by upscaling the design. Increasing diffusion distances have a negative impact on cell survival and nutrition supply, leading to cell death and ultimately implant failure. Here, a novel scaffold architecture was designed to meet all requirements for an advanced bone substitute. Biofunctional, porous subunits in a load-bearing, compression-resistant frame structure characterize this approach. An o…

Scaffold0206 medical engineeringCell02 engineering and technologyMicroporous materialMatrix (biology)021001 nanoscience & nanotechnologyCell morphology020601 biomedical engineeringchemistry.chemical_compoundmedicine.anatomical_structurePolylactic acidchemistryFluorescence microscopemedicineGeneral Materials Science0210 nano-technologyCytotoxicityBiomedical engineeringMaterials
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Electrospun PHEA-PLA/PCL Scaffold for Vascular Regeneration: A Preliminary in Vivo Evaluation

2017

Abstract Background There is increasing interest in the development of vessel substitutes, and many studies are currently focusing on the development of biodegradable scaffolds capable of fostering vascular regeneration. We tested a new biocompatible and biodegradable material with mechanical properties similar to those of blood vessels. Methods The material used comprises a mixture of α,β-poly(N-2-hydroxyethyl)- d,l -aspartamide (PHEA) and polylactic acid (PLA), combined with polycaprolactone (PCL) by means of electrospinning technique. Low-molecular-weight heparin was also linked to the copolymer. A tubular PHEA-PLA/PCL sample was used to create an arteriovenous fistula in a pig model wit…

ScaffoldMaterials scienceBiocompatibilityPolymersSwinePolyesters0206 medical engineering02 engineering and technologySettore MED/22 - Chirurgia VascolareNeovascularizationchemistry.chemical_compoundPolylactic acidBlood vessel prosthesismedicineAnimalsTransplantationRegeneration (biology)Bioabsorbable scaffold Bioengineered vascular scaffold Experimental surgery021001 nanoscience & nanotechnology020601 biomedical engineeringBlood Vessel ProsthesisSettore MED/18 - Chirurgia GeneraleCoagulative necrosischemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoPolycaprolactoneSurgerymedicine.symptomPeptides0210 nano-technologyBiomedical engineeringTransplantation Proceedings
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