Search results for " Devices"

showing 10 items of 517 documents

Late onset of dropped head syndrome following mantle radiation therapy for Hodgkin lymphoma.

2018

Dropped head syndrome (DHS) is a rare condition, characterised by weakness of the cervical paraspinal muscles with sagging of the head. It is usually seen in association with neurological disorders and rarely can follow radiotherapy. We report a case of a 54-year-old man survivor of Hodgkin lymphoma (HL), who developed DHS 28 years after radiotherapy. He was referred to our department due to progressive weakness and atrophy of cervical paraspinal and shoulder girdle musculature. Physical and neurophysiological examination, electromyography and MRI confirmed the diagnosis of DHS. In the following years, there was no progression of symptoms.

Malemedicine.medical_specialtyWeaknessOrthotic DevicesNeuromuscular diseaseTime Factorsmedicine.medical_treatmentLate onsetElectromyographyMuscular Atrophy Spinal03 medical and health sciences0302 clinical medicineAtrophyCancer SurvivorsNeck MusclesRare DiseasePhysiotherapy (rehabilitation)medicineHumansBrachial Plexus NeuropathiesSpinal cordmedicine.diagnostic_testRadiotherapybusiness.industryGeneral MedicineSyndromeNeuromuscular diseaseMiddle Agedmedicine.diseaseSpinal cordHodgkin DiseaseExercise TherapyRadiation therapymedicine.anatomical_structureTreatment Outcome030220 oncology & carcinogenesisShoulder girdleSettore MED/26 - NeurologiaRadiologymedicine.symptomHaematology (incl blood transfusion)business030217 neurology & neurosurgeryBMJ case reports
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Ischemic stroke risk during long-term follow up in patients with successful catheter ablation for atrial fibrillation in Korea

2018

The interruption of oral anticoagulation therapy (OAC) after CA of atrial fibrillation (AF) is controversial. The purpose of this study was to evaluate the relationship between successful long-term outcomes of catheter resection and SR maintenance and ischemic stroke risk in Korea. We studied 1,548 consecutive patients who were followed up for more than 2 years after CA of AF. We investigated the incidence of ischemic stroke during long-term follow-up. Compared to the AF recurrence group (n = 619), the sinus rhythm (SR) maintenance group (n = 929) had more paroxysmal AF (74.6% versus 44.4%, p<0.001), smaller LA size (39.9±5.7mm versus 42.3±6.0mm, p<0.001), and younger age (54.2±10.9 years v…

Malemedicine.medical_treatmentAnticoagulant Therapylcsh:Medicine030204 cardiovascular system & hematologyAntiplatelet TherapyPathology and Laboratory MedicineVascular MedicineBrain IschemiaGeographical LocationsElectrocardiography0302 clinical medicineRisk FactorsAtrial FibrillationMedicine and Health SciencesMedicineSinus rhythm030212 general & internal medicinelcsh:ScienceMultidisciplinaryPharmaceuticsIncidence (epidemiology)IncidenceAtrial fibrillationMiddle AgedStrokeCatheterCardiovascular TherapyBioassays and Physiological AnalysisNeurologyCardiologyCatheter AblationFemaleArrhythmiaResearch ArticleBiotechnologymedicine.medical_specialtyCathetersAsiaLong term follow upCerebrovascular DiseasesCardiologyCatheter ablationHemorrhageResearch and Analysis Methods03 medical and health sciencesSigns and SymptomsDrug TherapyDiagnostic MedicineInternal medicineRepublic of KoreaHumansIn patientIschemic StrokeKoreabusiness.industrylcsh:RElectrophysiological TechniquesBiology and Life Sciencesmedicine.diseaseIschemic strokePeople and Placeslcsh:QMedical Devices and EquipmentCardiac ElectrophysiologybusinessFollow-Up StudiesPLoS ONE
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Three dimensional reconstruction to visualize atrial fibrillation activation patterns on curved atrial geometry

2021

BackgroundThe rotational activation created by spiral waves may be a mechanism for atrial fibrillation (AF), yet it is unclear how activation patterns obtained from endocardial baskets are influenced by the 3D geometric curvature of the atrium or ‘unfolding’ into 2D maps. We develop algorithms that can visualize spiral waves and their tip locations on curved atrial geometries. We use these algorithms to quantify differences in AF maps and spiral tip locations between 3D basket reconstructions, projection onto 3D anatomical shells and unfolded 2D surfaces.MethodsWe tested our algorithms in N = 20 patients in whom AF was recorded from 64-pole baskets (Abbott, CA). Phase maps were generated by…

Malemedicine.medical_treatmentGeometryProjection (mathematics)Atrial FibrillationMedicine and Health SciencesElectrochemistryPower DistributionAtrium (heart)Cardiac AtriaSpiralPhysicsNumerical AnalysisMultidisciplinaryApplied MathematicsSimulation and ModelingQRAtrial fibrillationSignal Processing Computer-AssistedHeartMiddle AgedAblationChemistrymedicine.anatomical_structurePhysical SciencesCatheter AblationMedicineEngineering and TechnologyGravitational singularityFemaleAnatomyElectrophysiologic Techniques CardiacAlgorithmsArrhythmiaResearch ArticleBiotechnologyPower GridsCathetersSciencePhase (waves)CardiologyGeometryBioengineeringCurvatureResearch and Analysis MethodsImaging Three-DimensionalmedicineHumansImatges tridimensionals en medicinaCurvatureElectrode PotentialsBiology and Life Sciencesmedicine.diseaseInterpolationEnergy and PowerCardiovascular AnatomyMedical Devices and EquipmentMathematics
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Training-induced changes in daily energy expenditure: Methodological evaluation using wrist-worn accelerometer, heart rate monitor, and doubly labele…

2019

IntroductionWrist-mounted motion sensors can quantify the volume and intensity of physical activities, but little is known about their long-term validity. Our aim was to validate a wrist motion sensor in estimating daily energy expenditure, including any change induced by long-term participation in endurance and strength training. Supplemental heart rate monitoring during weekly exercise was also investigated.MethodsA 13-day doubly labeled water (DLW) measurement of total energy expenditure (TEE) was performed twice in healthy male subjects: during two last weeks of a 12-week Control period (n = 15) and during two last weeks of a 12-week combined strength and aerobic Training period (n = 13…

MalesykeFITNESSPhysiologyACCURACYphysical activityliikuntabioenergeticsAccelerometerBiochemistryFatsDAILY PHYSICAL-ACTIVITY0302 clinical medicineHeart Rateenergy metabolismAccelerometryheart ratestrength trainingMedicine and Health SciencesPublic and Occupational Health030212 general & internal medicineaineenvaihduntarasvatMultidisciplinaryexerciseQRWristLipidsSports ScienceTIMEINSIGHTSPhysiological ParametersStrength TrainingMedicinesykemittaritvoimaharjoittelufyysinen aktiivisuusResearch ArticlePhysical Conditioning HumanAdultmedicine.medical_specialtyfatsBODY-COMPOSITIONStrength trainingScienceCardiologyDrinkingDoubly labeled waterBioenergeticsbody weightWearable Electronic DevicesYoung Adult03 medical and health sciencesPhysical medicine and rehabilitationHeart ratemedicineHumansAerobic exerciseResting energy expenditureVALIDITYSports and Exercise MedicineDeuterium OxideExerciseLife StylebioenergetiikkaMonitoring PhysiologicINTENSITYbusiness.industryBody WeightHeart rate monitorBiology and Life SciencesWaterPhysical Activity030229 sport sciencesIntensity (physics)MetabolismPhysical FitnessPhysical EnduranceEnergy MetabolismPhysiological ProcessesbusinessPLOS ONE
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Afterglow, TL and OSL properties of Mn2+-doped ZnGa2O4 phosphor

2019

The work was supported by Latvian Research Council via LZP-2018/1–0214 research project as well as the Latvian-Ukrainian Joint Research Project (LV-UA/2016/1 in Latvia and M/8-2018 (No. 0118U001672) in Ukraine), and by the NATO SfP Project G4649. The work was also partially supported by the Polish National Science Center (project 2018/31/B/ST8/00774). A. Luchechko gratefully acknowledges a grant from Institute of Physics PAS for a research visit to the Institute.

Materials for devices0301 basic medicineMaterials scienceOptical spectroscopyAnalytical chemistrylcsh:Medicinechemistry.chemical_elementPhosphorManganeseengineering.materialRadiation7. Clean energyArticleIon03 medical and health sciences0302 clinical medicine:NATURAL SCIENCES:Physics [Research Subject Categories]lcsh:ScienceMultidisciplinarylcsh:RDopingSpinelMaterials scienceAfterglow030104 developmental biologychemistryengineeringlcsh:QLuminescence030217 neurology & neurosurgeryScientific Reports
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Relative Humidity Dependent Resistance Switching of Bi2S3Nanowires

2017

Electrical properties of Bi2S3nanowires grown using a single source precursor in anodic aluminum oxide templates are sensitive to the relative humidity in an inert gas environment. Dynamic sensing dependency is obtained and shows presence of spontaneous resistance switching effect between low and high relative humidity states. Employing the thermionic field emission theory, heights of Schottky barriers are estimated from the current-voltage characteristics and in relation to the humidity response. The change of Schottky barrier height is explained by local changes in physically adsorbed water molecules on the surface of the nanowire.

Materials scienceArticle SubjectSchottky barrierNanowireSemiconductor nanowiresBi2S3 nanowires02 engineering and technologyFunctional devices010402 general chemistry01 natural sciencesAdsorptionlcsh:Technology (General)MoleculeGeneral Materials ScienceRelative humidityInert gasNanowiresfood and beveragesHumiditySchottky diode021001 nanoscience & nanotechnologyhumanitiesDynamic sensing dependencySchottky barriers0104 chemical sciencesChemical physicslcsh:T1-9950210 nano-technologyJournal of Nanomaterials
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Chitosan-Coating Deposition via Galvanic Coupling

2019

A galvanic method to deposit chitosan coatings on stainless steel substrate is reported. Deposition of suitable coatings is desired to improve biocompatibility and corrosion resistance of metallic medical devices to be implanted in human body. In the present work, a thin hydrogel layer of chitosan was deposited on 304SS by a galvanic displacement reaction, which is advantageous first as it does not require external power supply. 304SS was immersed into an aqueous solution of chitosan/lactic acid and electrochemically coupled with magnesium acting as a sacrificial anode. SEM images showed the formation of a uniform layer of chitosan with a thickness controlled by deposition time. Corrosion t…

Materials scienceBiocompatibilityGalvanic anodegalvanic deposition0206 medical engineeringBiomedical Engineeringmacromolecular substances02 engineering and technologyengineering.materialCorrosionBiomaterialsChitosanchemistry.chemical_compoundCoatingGalvanic cellSettore ING-IND/24 - Principi Di Ingegneria ChimicaAqueous solutiontechnology industry and agriculturemedical devices biomaterialbiocoatingSettore ING-IND/34 - Bioingegneria Industriale021001 nanoscience & nanotechnology020601 biomedical engineering304SS stainless steelBiomaterialSettore ING-IND/23 - Chimica Fisica ApplicatachemistryChemical engineeringengineeringcytotoxicitychitosan0210 nano-technologyLayer (electronics)
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Optical Forging of Graphene into Three-Dimensional Shapes

2017

Atomically thin materials, such as graphene, are the ultimate building blocks for nanoscale devices. But although their synthesis and handling today are routine, all efforts thus far have been restricted to flat natural geometries, since the means to control their three-dimensional (3D) morphology has remained elusive. Here we show that, just as a blacksmith uses a hammer to forge a metal sheet into 3D shapes, a pulsed laser beam can forge a graphene sheet into controlled 3D shapes in the nanoscale. The forging mechanism is based on laser-induced local expansion of graphene, as confirmed by computer simulations using thin sheet elasticity theory. peerReviewed

Materials scienceBioengineeringNanotechnology02 engineering and technology01 natural sciencesForginglaw.inventionStrain engineeringForgelaw0103 physical sciencesgrafeeniGeneral Materials ScienceHammer010306 general physicsta116Nanoscopic scalenanoscale devicesta114GrapheneMechanical EngineeringgrapheneGeneral ChemistryThin sheet021001 nanoscience & nanotechnologyCondensed Matter Physics3d shapesEngineering physicsoptical forging0210 nano-technologyNano Letters
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Dynamics of human cancer cell lines monitored by electrical and acoustic fluctuation analysis.

2010

Early determination of the metastatic potential of cancer cells is a crucial step for successful oncological treatment. Besides the remarkable progress in molecular genomics- or proteomics-based diagnostics, there is a great demand for in vitro biosensor devices that allow rapid and selective detection of the invasive properties of tumor cells. Here, the classical cancer cell motility in vitro assays for migration and invasion relying on Boyden chambers are compared to a real-time biosensor that analyzes the dynamic properties of adherent cells electro-acoustically with a time resolution on the order of seconds. The sensor relies on the well-established quartz crystal microbalance technique…

Materials scienceBiophysics02 engineering and technologyBiosensing TechniquesProteomicsBiochemistryCrystal03 medical and health sciencesHT29 CellsCell Line TumorNeoplasmsHumans030304 developmental biology0303 health sciencesbiosensor devices; cancer cells; tumor cellsDynamics (mechanics)Quartz crystal microbalanceAcousticsMicro-Electrical-Mechanical Systems021001 nanoscience & nanotechnologyCell cultureCancer cellBiophysics0210 nano-technologyBiosensorIntegrative biology : quantitative biosciences from nano to macro
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Origin of the Chemiresistive Response of Ultrathin Films of Conductive Metal–Organic Frameworks

2018

Conductive metal-organic frameworks are opening new perspectives for the use of these porous materials for applications traditionally limited to more classical inorganic materials, such as their integration into electronic devices. This has enabled the development of chemiresistive sensors capable of transducing the presence of specific guests into an electrical response with good selectivity and sensitivity. By combining experimental data with computational modelling, a possible origin for the underlying mechanism of this phenomenon in ultrathin films (ca. 30 nm) of Cu-CAT-1 is described. ispartof: ANGEWANDTE CHEMIE-INTERNATIONAL EDITION vol:57 issue:46 pages:15086-15090 ispartof: location…

Materials scienceChemistry MultidisciplinaryQuímica organometàl·licaNanotechnology02 engineering and technology010402 general chemistry01 natural sciencesCatalysischemiresistive sensingmolecular devicesELECTRICAL-CONDUCTIVITYultrathin filmsElectronicsmetal-organic frameworksElectrical conductorScience & Technologyelectrical conductivity010405 organic chemistryGeneral ChemistryConductivitat elèctricaGeneral Medicine021001 nanoscience & nanotechnology0104 chemical sciencesChemistryPhysical SciencesMetal-organic frameworkInorganic materials0210 nano-technologyPorous mediumAngewandte Chemie
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