Search results for "genetics [Genetic Variation]"

showing 10 items of 3029 documents

Comparative Analysis of Periodontal Pain According to the Type of Precision Orthodontic Appliances: Vestibular, Lingual and Aligners. A Prospective C…

2021

The objective of this prospective clinical study was to analyze the pain (intensity, location and type) that patients presented after the placement of different types of orthodontic appliances: conventional, low friction, lingual and aligners. The sample consisted of 120 patients divided into four groups: conventional (CON), low friction (LF), lingual (LO) and aligners (INV). The participants were given the Short-Form McGill Pain Questionnaire (Ortho-SF-MPQ), where they had to record the pain intensity (no pain, mild, moderate or intense) and the periodontal location at different time points, from the first 4 h to 7 days after the start of treatment. In all the study groups, the most freque…

Study groupsQH301-705.5DentistryOdontologíaLow frictionLingual orthodonticsBiologyArticleGeneral Biochemistry Genetics and Molecular Biology03 medical and health scienceslingual orthodonticsTratamiento médico0302 clinical medicinepain030212 general & internal medicineBiology (General)degree of painVestibular systemGeneral Immunology and MicrobiologyMild painbusiness.industryalignersInvisalign030206 dentistryIntensity (physics)low-friction bracketsOrtodonciaMcGill Pain QuestionnaireProspective clinical studyDolorGeneral Agricultural and Biological Sciencesbusinessorthodonticslocation
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2020

The fruit of date palm trees are an important part of the diet for a large portion of the Middle East and North Africa. The fruit is consumed both fresh and dry and can be stored dry for extended periods of time. Date fruits vary significantly across hundreds of cultivars identified in the main regions of cultivation. Most dried date fruit are low in sucrose but high in glucose and fructose. However, high sucrose content is a distinctive feature of some date fruit and affects flavor as well as texture and water retention. To identify the genes controlling high sucrose content, we analyzed date fruit metabolomics for association with genotype data from 120 date fruits. We found significant a…

SucroseEcologyfood and beveragesPlant physiologyFructosePlant ScienceBiologySelective breedingBiochemistry Genetics and Molecular Biology (miscellaneous)Horticulturechemistry.chemical_compoundInvertasechemistryCultivarAlleleGeneEcology Evolution Behavior and SystematicsPlant Direct
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Freezing without surrounding cryomedium preserves the endothelium and its function in human internal mammary arteries

2005

Abstract Purpose Cryopreserved human blood vessels may become important tools in bypass surgery. Optimal cryopreservation of an arterial graft should, therefore, preserve both histological and physiological characteristics of smooth muscle and endothelium comparable to the unfrozen artery. Methods Rings from human internal mammary arteries (IMA) were investigated in vitro either unfrozen or after immersion into a cryomedium (RPMI 1640 containing 1.8 M Me2SO and 0.1 M sucrose) and cryostorage with and without surrounding medium. Results In unfrozen IMA, neither contractile responses to noradrenaline (NA) nor endothelium-dependent relaxant responses to acetylcholine (ACH) was modified after e…

SucrosePathologymedicine.medical_specialtyEndotheliumBiologyGeneral Biochemistry Genetics and Molecular BiologyCryopreservationAndrologyNorepinephrinechemistry.chemical_compoundCryoprotective AgentsFreezingmedicineHumansDimethyl SulfoxideEndotheliumMammary ArteriesPhorbol 1213-DibutyrateProtein Kinase CProtein kinase CCryopreservationDose-Response Relationship DrugDimethyl sulfoxideTemperatureMuscle SmoothGeneral MedicineAcetylcholineCulture MediaCold TemperatureEnzyme ActivationMicroscopy ElectronDose–response relationshipmedicine.anatomical_structurechemistryCarcinogensMicroscopy Electron ScanningMammary arteryEndothelium VascularTissue PreservationGeneral Agricultural and Biological SciencesAcetylcholinemedicine.drugArteryCryobiology
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Author Correction: Induced unconventional superconductivity on the surface states of Bi2Te3 topological insulator

2018

Topological superconductivity is central to a variety of novel phenomena involving the interplay between topologically ordered phases and broken-symmetry states. The key ingredient is an unconventional order parameter, with an orbital component containing a chiral p x + ip y wave term. Here we present phase-sensitive measurements, based on the quantum interference in nanoscale Josephson junctions, realized by using Bi2Te3 topological insulator. We demonstrate that the induced superconductivity is unconventional and consistent with a sign-changing order parameter, such as a chiral p x + ip y component. The magnetic field pattern of the junctions shows a dip at zero externally applied magneti…

SuperconductivityPhysicsMultidisciplinaryCondensed matter physicsScienceQGeneral Physics and AstronomyOrder (ring theory)General ChemistryScattering processAstrophysics::Cosmology and Extragalactic AstrophysicsArticleGeneral Biochemistry Genetics and Molecular BiologyCondensed Matter::SuperconductivityTopological insulatorMathematics::Category TheoryArrowAstrophysics::Solar and Stellar Astrophysicslcsh:QAuthor Correctionlcsh:ScienceAstrophysics::Galaxy AstrophysicsSurface statesNature Communications
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Enhanced superconductivity in atomically thin TaS2

2016

The ability to exfoliate layered materials down to the single layer limit has presented the opportunity to understand how a gradual reduction in dimensionality affects the properties of bulk materials. Here we use this top–down approach to address the problem of superconductivity in the two-dimensional limit. The transport properties of electronic devices based on 2H tantalum disulfide flakes of different thicknesses are presented. We observe that superconductivity persists down to the thinnest layer investigated (3.5 nm), and interestingly, we find a pronounced enhancement in the critical temperature from 0.5 to 2.2 K as the layers are thinned down. In addition, we propose a tight-binding …

SuperconductivityWork (thermodynamics)Materials scienceScienceTantalumFOS: Physical sciencesGeneral Physics and Astronomychemistry.chemical_element02 engineering and technology01 natural sciencesArticleGeneral Biochemistry Genetics and Molecular BiologySuperconductivity (cond-mat.supr-con)Mesoscale and Nanoscale Physics (cond-mat.mes-hall)0103 physical sciences010306 general physicsSuperconductivitatSuperconductivityCoupling constantMultidisciplinaryCondensed Matter - Mesoscale and Nanoscale PhysicsAtomically thinCondensed matter physicsCondensed Matter - SuperconductivityQDisulfide bondFísicaGeneral ChemistryCiència dels materials021001 nanoscience & nanotechnologychemistry0210 nano-technologyLayer (electronics)Single layerCurse of dimensionality
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Coherent coupling between vortex bound states and magnetic impurities in 2D layered superconductors

2021

Bound states in superconductors are expected to exhibit a spatially resolved electron-hole asymmetry which is the hallmark of their quantum nature. This asymmetry manifests as oscillations at the Fermi wavelength, which is usually tiny and thus washed out by thermal broadening or by scattering at defects. Here we demonstrate theoretically and confirm experimentally that, when coupled to magnetic impurities, bound states in a vortex core exhibit an emergent axial electron-hole asymmetry on a much longer scale, set by the coherence length. We study vortices in 2H-NbSe2 and in 2H-NbSe1.8S0.2 with magnetic impurities, characterizing these with detailed Hubbard-corrected density functional calcu…

Superconductivityelectronic-structureScienceGeneral Physics and AstronomyFOS: Physical sciences01 natural sciences7. Clean energyTopologyGeneral Biochemistry Genetics and Molecular BiologyArticle010305 fluids & plasmasMarie curieSuperconducting properties and materialsSuperconductivity (cond-mat.supr-con)Condensed Matter - Strongly Correlated ElectronsMagnetic properties and materialsOriganumCondensed Matter::Superconductivity0103 physical sciencesBound stateMesoscale and Nanoscale Physics (cond-mat.mes-hall)010306 general physicsSuperconductivitatMaterialsSuperconductivityPhysicsMultidisciplinaryStrongly Correlated Electrons (cond-mat.str-el)Condensed Matter - Mesoscale and Nanoscale Physicsmajorana fermionsCondensed Matter - SuperconductivityQcoreFísicaGeneral ChemistrylineHumanities
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A combined small-angle neutron and X-ray scattering study of block copolymers micellisation in supercritical carbon dioxide

2003

Small angle neutron and X-ray scattering (SANS and SAXS) are used to investigate the monomer–aggregate transition of fluorocarbon–hydrocarbon diblock copolymers in supercritical carbon dioxide. SANS data are analyzed using a polydisperse sphere core–shell model. Synchrotron SAXS data have been collected by profiling the pressure at different temperatures, and critical micellization densities have been obtained for a series of diblock solutions. Finally pressure jump experiments, combined with synchrotron SAXS, have revealed two steps in the dynamics of the formation of the aggregates.

Supercritical carbon dioxideScatteringChemistrySmall-angle X-ray scatteringAstrophysics::High Energy Astrophysical PhenomenaAnalytical chemistryX-raySmall-angle neutron scatteringGeneral Biochemistry Genetics and Molecular BiologySynchrotronlaw.inventionCondensed Matter::Soft Condensed MatterlawPolymer chemistryCopolymerNeutronJournal of Applied Crystallography
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Internet of Things with Deep Learning-Based Face Recognition Approach for Authentication in Control Medical Systems

2022

Internet of Things (IoT) with deep learning (DL) is drastically growing and plays a significant role in many applications, including medical and healthcare systems. It can help users in this field get an advantage in terms of enhanced touchless authentication, especially in spreading infectious diseases like coronavirus disease 2019 (COVID-19). Even though there is a number of available security systems, they suffer from one or more of issues, such as identity fraud, loss of keys and passwords, or spreading diseases through touch authentication tools. To overcome these issues, IoT-based intelligent control medical authentication systems using DL models are proposed to enhance the security f…

Support Vector MachineGeneral Immunology and MicrobiologyArticle SubjectDatabases FactualSARS-CoV-2Applied MathematicsAutomated Facial RecognitionInternet of ThingsCOVID-19General MedicineEquipment DesignVDP::Teknologi: 500::Industri- og produktdesign: 640General Biochemistry Genetics and Molecular BiologyPattern Recognition AutomatedDeep LearningVDP::Teknologi: 500::Bioteknologi: 590VDP::Teknologi: 500::Medisinsk teknologi: 620Modeling and SimulationHumansComputer SimulationAlgorithmsComputer Security
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Printing Life-Inspired Subcellular Scale Compartments with Autonomous Molecularly Crowded Confinement.

2019

A simple, rapid, and highly controlled platform to prepare life-inspired subcellular scale compartments by inkjet printing has been developed. These compartments consist of fL-scale aqueous droplets (few µm in diameter) incorporating biologically relevant molecular entities with programmed composition and concentration. These droplets are ink-jetted in nL mineral oil drop arrays allowing for lab-on-chip studies by fluorescence microscopy and fluorescence life time imaging. Once formed, fL-droplets are stable for several hours, thus giving the possibility of readily analyze molecular reactions and their kinetics and to verify molecular behavior and intermolecular interactions. Here, this pla…

Surface PropertiesDNA hairpinBiomedical EngineeringGeneral Biochemistry Genetics and Molecular BiologyFluorescenceBiomaterialsSettore CHIM/01molecular crowdingbiomolecular confinementlife-like compartmentFluorescence microscopeInkjet printinginkjet printingBiochemistry Genetics and Molecular Biology (all)ChemistryDrop (liquid)Intermolecular forceLife timeDNABiomaterialFluorescencebiomolecular confinement; DNA hairpins; inkjet printing; life-like compartments; molecular crowdingDNA hairpinslife-like compartmentsPrinting Three-DimensionalBiophysicsMolecular probeAdvanced biosystems
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Queen loss increases worker survival in leaf-cutting ants under paraquat-induced oxidative stress

2021

Longevity is traded off with fecundity in most solitary species, but the two traits are positively linked in social insects. In ants, the most fecund individuals (queens and kings) live longer than the non-reproductive individuals, the workers. In many species, workers may become fertile following queen loss, and recent evidence suggests that worker fecundity extends worker lifespan. We postulated that this effect is in part owing to improved resilience to oxidative stress, and tested this hypothesis in three Myrmicine ants: Temnothorax rugatulus, and the leaf-cutting ants Atta colombica and Acromyrmex echinatior . We removed the queen from colonies to induce worker reproduction and subjec…

SurvivalbiologyTemnothorax rugatulusAntsHerbicidesOffspringved/biologymedia_common.quotation_subjectReproduction (economics)ved/biology.organism_classification_rank.speciesAtta colombicaLongevityZoologyArticlesOxidantsbiology.organism_classificationFecundityGeneral Biochemistry Genetics and Molecular BiologyOxidative StressSpecies SpecificityAnimalsAcromyrmex echinatiorGeneral Agricultural and Biological SciencesSocialitymedia_commonPhilosophical Transactions of the Royal Society B: Biological Sciences
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