Search results for "Biomedical"

showing 10 items of 2328 documents

Bioimaging: Imaging Bacterial Colonies and Phage-Bacterium Interaction at Sub-Nanometer Resolution Using Helium-Ion Microscopy (Adv. Biosys. 8/2017)

2017

BiomaterialsMaterials sciencechemistryResolution (electron density)Biomedical Engineeringchemistry.chemical_elementNanotechnologyNanometreIon microscopyGeneral Biochemistry Genetics and Molecular BiologyHeliumAdvanced Biosystems
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Handheld laser-fiber vibrometry probe for assessing auditory ossicles displacement

2021

Significance: Measurements of auditory ossicles displacement are commonly carried out by means of laser-Doppler vibrometry (LDV), which is considered to be a gold standard. The limitation of the LDV method, especially for in vivo measurements, is the necessity to expose an object in a straight line to a laser beam operating from a distance. An alternative to this approach is the use of a handheld laser-fiber vibrometry probe (HLFVP) with a curved tip. Aim: We evaluate the feasibility of an HLFVP with a curved tip for measuring sound-induced displacement of the auditory ossicles. Approach: A handheld vibrometer probe guiding the laser beam with a fiber-optic cable was used for displacement m…

BiomaterialsPaperSensinglaser-fiber vibrometerhandheld probeBiomedical Engineeringlaser-Doppler vibrometermiddle ear surgeryAtomic and Molecular Physics and Opticsmiddle ear mechanicsElectronic Optical and Magnetic MaterialsJournal of Biomedical Optics
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Sub-Cellular Scale Compartments: Printing Life-Inspired Subcellular Scale Compartments with Autonomous Molecularly Crowded Confinement (Adv. Biosys. …

2019

BiomaterialsScale (ratio)Biomedical EngineeringEnvironmental scienceNanotechnologyGeneral Biochemistry Genetics and Molecular BiologyInkjet printingAdvanced Biosystems
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Improved Bone Regeneration Using Biodegradable Polybutylene Succinate Artificial Scaffold in a Rabbit Model

2022

The treatment of extensive bone loss represents a great challenge for orthopaedic and reconstructive surgery. Most of the time, those treatments consist of multiple-stage surgeries over a prolonged period, pose significant infectious risks and carry the possibility of rejection. In this study, we investigated if the use of a polybutylene succinate (PBS) micro-fibrillar scaffold may improve bone regeneration in these procedures. In an in vivo rabbit model, the healing of two calvarial bone defects was studied. One defect was left to heal spontaneously while the other was treated with a PBS scaffold. Computed tomography (CT) scans, histological and immunohistochemical analyses were performed …

Biomaterialsbone defectbone regenerationpolybutylene succinatemicrofibrillar scaffoldBiomedical Engineeringrabbitbone reconstructionpolybutylene succinate; microfibrillar scaffold; rabbit; bone reconstruction; bone regeneration; bone defect
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Evaluation of Effects of Various Irrigating Solutions on Chemical Structure of Root Canal Dentin Using FTIR, SEM, and EDS: An In Vitro Study

2022

Background: Sequential chemical application for irrigating a root canal during chemomechanical debridement can affect the dentin microstructure. Understanding the effects of various irrigants on chemical properties of dentin can elucidate their effects on physical properties and thereby explain the higher incidence of structural failure in endodontically treated teeth. This in vitro research aimed to compare and evaluate the effects of three different irrigating solutions on the chemical structure of root canal dentin in extracted human teeth. Methods: Forty-eight extracted single-rooted mandibular premolar teeth were sectioned at the cemento–enamel junction by a diamond disc and were…

Biomaterialsendodonticsendodontics; irrigants; root dentin; sodium hypochlorite; silver citrate; ozonated olive oil; chemical propertiessodium hypochloriteBiomedical Engineeringsilver citrateroot dentinirrigantschemical propertiesozonated olive oil
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Dynamic Responsive Inguinal Scaffold Activates Myogenic Growth Factors Finalizing the Regeneration of the Herniated Groin

2022

Background: Postoperative chronic pain caused by fixation and/or fibrotic incorporation of hernia meshes are the main concerns in inguinal herniorrhaphy. As inguinal hernia is a degenerative disease, logically the treatment should aim at stopping degeneration and activating regeneration. Unfortunately, in conventional prosthetic herniorrhaphy no relationship exists between pathogenesis and treatment. To overcome these incongruences, a 3D dynamic responsive multilamellar scaffold has been developed for fixation-free inguinal hernia repair. Made of polypropylene like conventional flat meshes, the dynamic behavior of the scaffold allows for the regeneration of all typical inguinal components: …

Biomaterialstissue degeneration; regenerative scaffolds; tissue regeneration; muscle; muscle growth factors; neo-myogenesis; inguinal protrusion diseaseBiomedical Engineeringinguinal protrusion disease muscle muscle growth factors neo-myogenesis regenerative scaffolds tissue degeneration tissue regenerationJournal of Functional Biomaterials; Volume 13; Issue 4; Pages: 253
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Titanium Lattice Structures Produced via Additive Manufacturing for a Bone Scaffold: A Review

2023

The progress in additive manufacturing has remarkably increased the application of lattice materials in the biomedical field for the fabrication of scaffolds used as bone substitutes. Ti6Al4V alloy is widely adopted for bone implant application as it combines both biological and mechanical properties. Recent breakthroughs in biomaterials and tissue engineering have allowed the regeneration of massive bone defects, which require external intervention to be bridged. However, the repair of such critical bone defects remains a challenge. The present review collected the most significant findings in the literature of the last ten years on Ti6Al4V porous scaffolds to provide a comprehensive summa…

Biomaterialstitanium alloylattice structuresscaffoldsBiomedical Engineeringmechanical propertiesbone tissue engineeringadditive manufacturingJournal of Functional Biomaterials
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Low-fouling, mixed-charge poly-L-lysine polymers with anionic oligopeptide side-chains

2018

Biosensors and biomedical devices require antifouling surfaces to prevent the non-specific adhesion of proteins or cells, for example, when aiming to detect circulating cancer biomarkers in complex natural media (e.g., in blood plasma or serum). A mixed-charge polymer was prepared by the coupling of a cationic polyelectrolyte and an anionic oligopeptide through a modified "grafting-to" method. The poly-l-lysine (PLL) backbone was modified with different percentages (y%) of maleimide-NHS ester chains (PLL-mal(y%), from 13% to 26%), to produce cationic polymers with specific grafting densities, obtaining a mixed-charge polymer. The anionic oligopeptide structure (CEEEEE) included one cysteine…

Biomedical Engineering02 engineering and technology010402 general chemistry01 natural sciencesChemistry (all); Biomedical Engineering; Materials Science (all)AdsorptionPolymer chemistryMonolayerSide chainGeneral Materials Sciencechemistry.chemical_classificationChemistryChemistry (all)Cationic polymerizationGeneral ChemistryGeneral MedicinePolymerQuartz crystal microbalanceQuímica021001 nanoscience & nanotechnologyPolyelectrolyte0104 chemical sciencesSurface modificationMaterials Science (all)Materials nanoestructurats0210 nano-technology
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The Application of Machine Learning Algorithms to the Analysis of Electromyographic Patterns From Arthritic Patients

2009

The main aim of our study was to investigate the possibility of applying machine learning techniques to the analysis of electromyographic patterns (EMG) collected from arthritic patients during gait. The EMG recordings were collected from the lower limbs of patients with arthritis and compared with those of healthy subjects (CO) with no musculoskeletal disorder. The study involved subjects suffering from two forms of arthritis, viz, rheumatoid arthritis (RA) and hip osteoarthritis (OA). The analysis of the data was plagued by two problems which frequently render the analysis of this type of data extremely difficult. One was the small number of human subjects that could be included in the in…

Biomedical EngineeringArthritisElectromyographyMachine learningcomputer.software_genreGait (human)Musculoskeletal disorderArtificial IntelligenceInternal MedicineHumansMedicineGaitArtificial neural networkmedicine.diagnostic_testElectromyographybusiness.industryArthritisData CollectionGeneral NeuroscienceRehabilitationReproducibility of ResultsSignal Processing Computer-AssistedLinear discriminant analysismedicine.diseaseBiomechanical PhenomenaKernel methodROC CurveMultilayer perceptronArtificial intelligencebusinesscomputerAlgorithmAlgorithmsIEEE Transactions on Neural Systems and Rehabilitation Engineering
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Artificial chromosomes for antibiotic-producing actinomycetes.

2000

Bacteria belonging to the order Actinomycetales produce most microbial metabolites thus far described, several of which have found applications in medicine and agriculture. However, most strains were discovered by their ability to produce a given molecule and are, therefore, poorly characterized physiologically and genetically. Thus, methodologies for genetic manipulation of actinomycetes are not available and efficient tools have been developed for just a few strains. This constitutes a serious limitation to applying molecular genetics approaches to strain development and structural manipulation of microbial metabolites. To overcome this hurdle, we have developed bacterial artificial chrom…

Biomedical EngineeringBioengineeringHuman artificial chromosomeMolecular cloningApplied Microbiology and BiotechnologyStreptomycesPlasmidActinomycetalesEscherichia coliGenomic libraryGene LibraryGeneticsBacterial artificial chromosomebiologyModels GeneticStreptomyces coelicolorChromosomes Bacterialbiology.organism_classificationStreptomycesAnti-Bacterial AgentsBlotting SouthernMolecular MedicineActinomycetalesGenetic EngineeringBiotechnologyPlasmidsNature biotechnology
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