Search results for "Ionizing radiation"

showing 10 items of 103 documents

Micro- to Nanoscale Bio-Hybrid Hydrogels Engineered by Ionizing Radiation

2021

Bio-hybrid hydrogels consist of a water-swollen hydrophilic polymer network encapsulating or conjugating single biomolecules, or larger and more complex biological constructs like whole cells. By modulating at least one dimension of the hydrogel system at the micro- or nanoscale, the activity of the biological component can be extremely upgraded with clear advantages for the development of therapeutic or diagnostic micro- and nano-devices. Gamma or e-beam irradiation of polymers allow a good control of the chemistry at the micro-/nanoscale with minimal recourse to toxic reactants and solvents. Another potential advantage is to obtain simultaneous sterilization when the absorbed doses are wi…

Materials sciencePolymerslcsh:QR1-502Nanotechnology02 engineering and technologyReview010402 general chemistry01 natural sciencesBiochemistrylcsh:MicrobiologyIonizing radiationradiation chemistrymicro-/nano-gel patternsHydrophilic polymersnanogelsTissue engineeringRadiation Ionizingradiation chemistry; micro-/nano-gel patterns; nanogels; bio-hybrid hydrogels; drug delivery; tissue engineeringMolecular BiologyNanoscopic scalechemistry.chemical_classificationBiomoleculeHydrogelsPolymer021001 nanoscience & nanotechnology0104 chemical scienceschemistrytissue engineeringSelf-healing hydrogelsDrug deliverydrug deliveryNanoparticlesbio-hybrid hydrogelsSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technology
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An EPR method for discriminating radiation beams in ammonium tartrate and tooth enamel

2008

The radiation linear energy transfer (LET), which is the energy released by ionizing radiation per path unit, arouses great scientific interest because the biological damage produced by ionizing radiation in tissues is strictly related to LET. Radiation beams with different LETs will cause different spatial energy distribution and therefore different effects inside matter. In the last twenty years the EPR spectroscopy has become a valuable dosimetric tool. This technique allows absorbed dose measurements through the detection of free radicals produced by ionizing radiation in organic and/or inorganic compounds. In this work we have analyzed the possibility of using the acquisition of two co…

Materials scienceRenewable Energy Sustainability and the EnvironmentHealth Toxicology and MutagenesisPublic Health Environmental and Occupational HealthLinear energy transferRadiationIonizing radiationlaw.inventionNuclear Energy and EngineeringlawAbsorbed doseDosimetryIrradiationAtomic physicsSafety Risk Reliability and QualityElectron paramagnetic resonanceAbsorption (electromagnetic radiation)Waste Management and DisposalRadioprotection
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The additive dose method for dose estimation in irradiated oregano by thermoluminescence technique

2009

The ionizing radiation treatment of food is nowadays a worldwide recognized tool for food preservation, provided that proper and validated identification methods are available and used. The thermoluminescence (TL) technique is one of the physical methods recommended by the European Committee for Standardization to distinguish irradiated from not irradiated samples, for food containing silicate minerals as contaminants, such as spices and aromatic herbs, which are among the most frequently irradiated foods. The experimental results presented in this work show that, at least up to the highest tested doses (2 kGy), it is possible to set up a procedure to estimate the actual dose in the irradia…

Materials sciencebusiness.industryRadiochemistryFood preservationContaminationFood safetyThermoluminescenceSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Ionizing radiationThermoluminescence food irradiation detection of irradiated foodDose estimationFood irradiationIrradiationbusinessFood ScienceBiotechnology
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SU-E-T-691: Shielding Evaluation of a Treatment Room with An Electronic Brachytherapy System

2015

Purpose: Esteya™ (Elekta) is a brachytherapy electronic system used for treating skin cancer lesions. This unit is based on a 69.5 kV X-ray source and a surface applicator which produces a circular beam of a specific diameter, which varies from 1 to 3 cm. This study aims to establish the radiation protection measures for the system. Methods: A characterization of the scattered and leakage radiation of the system was implemented by means of experimental measurements. The scattered radiation measurements were performed with a Berthold LB133 ionization chamber, evaluating the dose rate for different distances from the applicator surface. The patient was simulated through water equivalent solid…

Materials sciencebusiness.industrymedicine.medical_treatmentBrachytherapyGeneral MedicineIonizing radiationLead shieldingAbsorbed doseIonization chamberElectromagnetic shieldingmedicineDosimetryRadiation protectionbusinessNuclear medicineMedical Physics
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Nanoengineered Gd3Al2Ga3O12 Scintillation Materials with Disordered Garnet Structure for Novel Detectors of Ionizing Radiation

2019

The authors are grateful to Baker Hughes a GE Company for support of this activity. This work has also been supported by grant N14.W03.31.0004 from the Government of the Russian Federation.

Materials sciencedisordered crystal02 engineering and technologyNanoengineeringscintillatorsScintillator01 natural sciencesIonizing radiation0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]luminescenceGeneral Materials Scienceco-precipitation010302 applied physicsScintillationbusiness.industryDetectormulticomponent garnetGeneral Chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsOptoelectronicsnanoengineering0210 nano-technologybusinessLuminescence
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Shared learning process among students of the Health Sciences and Electronic Engineering Department and students of professional training in the area…

2019

[EN] The objective of this proposal for educational innovation is to facilitate the learning of complex concepts and their relationship with reality, through peer-to-peer training, in where two scenarios will be shared: university and professional training. We propose an experience in which University students in the area of Electronic Technology and Health, specifically from the degrees of Industrial Electronics Engineering, Physiotherapy and Nursing, previously trained in the concepts of radiation and its types, infrared radiation, its use in health in both treatment and diagnosis, thermoregulation and thermography with the visual thinking tool, can transversally share a teaching scenario…

Medical educationVisual thinkingHigher educationProcess (engineering)Shared learningbusiness.industryTeachingProfessional developmentEducational systemsHigher EducationNon-ionizing radiationTermoregulationThermografyLearningTeaching tranversalityPsychologybusinessInfrared radiationVisual thinkingEducational systems5th International Conference on Higher Education Advances (HEAd'19)
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Whole-Body Magnetic Resonance Imaging: Current Role in Patients with Lymphoma.

2021

Imaging of lymphoma is based on the use of 18F-fluorodeoxyglucose positron emission tomography/computed tomography (18F-FDG-PET/CT) and/or contrast-enhanced CT, but concerns have been raised regarding radiation exposure related to imaging scans in patients with cancer, and its association with increased risk of secondary tumors in patients with lymphoma has been established. To date, lymphoproliferative disorders are among the most common indications to perform whole-body magnetic resonance imaging (MRI). Whole-body MRI is superior to contrast-enhanced CT for staging the disease, also being less dependent on histology if compared to 18F-FDG-PET/CT. As well, it does not require exposure to i…

Medicine (General)medicine.medical_specialtydiffusion-weighted imagingClinical BiochemistryWhole body imagingLymphoproliferative disorderslymphomaReviewwhole-body imaging030218 nuclear medicine & medical imagingIonizing radiation03 medical and health sciencesR5-9200302 clinical medicinehemic and lymphatic diseasesmedicinemagnetic resonance imagingmedicine.diagnostic_testbusiness.industryCancerMagnetic resonance imagingstagingmedicine.diseaseLymphomaPositron emission tomography030220 oncology & carcinogenesisRadiologybusinessDiffusion MRIDiagnostics (Basel, Switzerland)
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Dose determination using alanine detectors in a mixed neutron and gamma field for boron neutron capture therapy of liver malignancies

2011

IntroductionBoron Neutron Capture Therapy for liver malignancies is being investigated at the University of Mainz. One important aim is the set-up of a reliable dosimetry system. Alanine dosimeters have previously been applied for dosimetry of mixed radiation fields in antiproton therapy, and may be suitable for measurements in mixed neutron and gamma fields.Materials and MethodsTwo experiments have been carried out in the thermal column of the TRIGA Mark II reactor at the University of Mainz. Alanine dosimeters have been irradiated in a phantom and in liver tissue.ResultsFor the interpretation and prediction of the dose for each pellet, beside the results of the measurements, calculations …

Monte Carlo methodBoron Neutron Capture TherapyImaging phantomTRIGAIonizing radiationRadiation MonitoringHumansMedicineDosimetryRadiology Nuclear Medicine and imagingNeutronRadiometryNeutronsAlanineDosimeterPhantoms Imagingbusiness.industryLiver NeoplasmsRadiochemistryDose-Response Relationship RadiationHematologyGeneral MedicineNeutron captureLiverOncologyGamma RaysbusinessNuclear medicineMonte Carlo MethodActa Oncologica
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Magnetic field effects on tritium release from neutron-irradiated beryllium pebbles

2007

The effects of temperature, magnetic field (MF), and ionizing radiation on the release of tritium from the Be pebbles irradiated in the BERYLLIUM experiment in 1994 in Petten, The Netherlands (irradiation neutron fluence 1.24×10 25 m -2 , irradiation temperature 780 K, and 3 H content 7 appm) were investigated in this study. Simultaneous action of these factors corresponds to the real operating conditions of the blanket of a fusion reactor. The total amount of tritium in a separate pebble, the chemical forms of localized tritium (T 0 , T 2 , and T + ), and the tritium distribution in the pebble volume were determined by a lyomethod (dissolution). Thermoannealing experiments were performed a…

Nuclear and High Energy Physics020209 energyRadiochemistrychemistry.chemical_element02 engineering and technologyFusion powerCondensed Matter PhysicsIonizing radiation020303 mechanical engineering & transports0203 mechanical engineeringNuclear Energy and EngineeringchemistryNeutron flux0202 electrical engineering electronic engineering information engineeringTritiumNeutronIrradiationBerylliumPebble
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Ionizing radiation induced curing of epoxy resin for advanced composites matrices

2005

Abstract The radiation curing of an epoxy monomer in the presence of an iodonium salt, as photo initiator, is studied. Systems with different concentrations of photo initiators have been polymerized via both gamma rays and e-beam, at various dose rates. The aim of this work is to investigate how the photo initiator concentration and the irradiation dose rate affect the temperature of the systems during curing and how the different thermal histories influence the dynamic mechanical thermal properties of the obtained materials.

Nuclear and High Energy PhysicsMaterials scienceRadiation curingGamma rayEpoxyIonizing radiationchemistry.chemical_compoundMonomerchemistryPolymerizationvisual_artPolymer chemistryAdvanced composite materialsvisual_art.visual_art_mediumEpoxy resinIrradiationComposite materialInstrumentationCuring (chemistry)CompositesNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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