Search results for "Ionizing Radiation"

showing 10 items of 103 documents

Toxicity of a dental adhesive compared with ionizing radiation and zoledronic acid

2015

Background: To determine the toxicity of aqueous dilutions of a universal self-priming dental adhesive (DA) and comparing these with those elicited by exposure to ionizing radiation (IR), Zoledronic acid (Z) treatment and the synergic effects of the combined treatment with IR+Z. Material and Methods: The genotoxic effect of DA was determined by the increase in the frequency of micronuclei in cytokinesis-blocked in cultured human lymphocytes before and after exposure to 2Gy of X-rays. The cytotoxic effect was studied by using the MTT cell viability test in normal prostate cell lines (PNT2) after exposure to different X-ray doses (0Gy-20Gy). The cell lines divided into different groups and tr…

Programmed cell deathDental CementsOdontologíaPharmacologymedicine.disease_causeZoledronic AcidIonizing radiationToxicologyPolymethacrylic AcidsRadiation IonizingToxicity TestsmedicineCytotoxic T cellHumansViability assayLymphocytesGeneral DentistryCells CulturedOral Medicine and PathologyDiphosphonatesChemistryResearchImidazoles:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludIn vitroOtorhinolaryngologyToxicityMicronucleus testUNESCO::CIENCIAS MÉDICASSurgeryGenotoxicity
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Discrimination of Radiation Quality Through Second Harmonic Out-of-Phase cw-ESR Detection

2014

The ability to discriminate the quality of ionizing radiation is important because the biological effects produced in tissue strongly depends on both absorbed dose and linear energy transfer (LET) of ionizing particles. Here we present an experimental electron spin resonance (ESR) analysis aimed at discriminating the effective LETs of various radiation beams (e.g., 19.3 MeV protons, 60Co photons and thermal neutrons). The measurement of the intensities of the continuous wave spectrometer signal channel first harmonic in-phase and the second harmonic out-of-phase components are used to distinguish the radiation quality. A computational analysis, was carried out to evaluate the dependence of …

Quality ControlTime FactorsPhotonTime FactorBiophysicsLinear energy transferRadiationIonizing radiationQuality (physics)OpticsRadiation IonizingLinear Energy TransferRadiology Nuclear Medicine and imagingMicrowavesRadiationChemistrybusiness.industryElectron Spin Resonance SpectroscopySettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)EPR spectroscopy; radiation effectsBiophysicAbsorbed doseradiation effectsHarmonicContinuous waveAtomic physicsbusinessMicrowaveEPR spectroscopyRadiation Research
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Thermoluminescence properties of AlN ceramics

1998

Abstract The paper describes thermoluminescence (TL) properties of AlN:Y 2 O 3 ceramics irradiated with ionising radiation. A high TL sensitivity of AlN:Y 2 O 3 ceramics to radiation encouraged a study of the AlN ceramics for application as a dosimetric material. The paper presents experimental data on: glow curve, emission spectrum, dose response, energy dependence, influence of heating rate and fading rate. The measured TL characteristics were compared with those of well-known, widely used TLDs, i.e. LiF:Mg,Ti, LiF:Mg,Cu,P and Al 2 O 3 :C. It is concluded that AlN:Y 2 O 3 ceramics showing a radiation sensitivity which is approximately 50 times greater than that of LiF:Mg,Ti is an interest…

RadiationMaterials scienceAnalytical chemistrychemistry.chemical_elementMineralogyYttriumRadiationThermoluminescenceIonizing radiationchemistryvisual_artvisual_art.visual_art_mediumDosimetryCeramicIrradiationLuminescenceInstrumentationRadiation Measurements
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Watch glasses exposed to 6 MV photons and 10 MeV electrons analysed by means of ESR technique: A preliminary study

2011

Abstract In this work we report a case study of the ESR response of watch glasses exposed to 6 MV photons and to 10 MeV electrons. The choice of watch glasses is justified by the fact that watch glasses are very close to the exposed individual. For both types of radiation beams, the absorbed doses belong to the range between 1 and 20 Gy. The samples have been irradiated in water-equivalent plastic phantom with a linear accelerator used for radiotherapy. After exposure watch glass samples have been cut in small strip-shaped pieces with suitable size to be put into the quartz tube for ESR measurements. The signal induced by radiation (RIS) lies in the g ∼ 2 region and must be discriminated fr…

RadiationMaterials sciencePhotonRadiochemistryRadiationLinear particle acceleratorIonizing radiationAbsorbed doseDosimetryESR dosimetry watch glassIrradiationWatch glassAtomic physicsInstrumentation
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The use of theranostic gadolinium-based nanoprobes to improve radiotherapy efficacy

2014

International audience; A new efficient type of gadolinium-based theranostic agent (AGuIX) has recently been developed for magnetic resonance imaging (MRI)-guided radiotherapy. These new particles consist of a polysiloxane network surrounded by a number of gadolinium chelates, usually 10. Due to their small size (<5 nm), AGuIX typically exhibit biodistributions that are almost ideal for diagnostic and therapeutic purposes. For example, while a significant proportion of these particles accumulate in tumours, the remainder is rapidly eliminated by the renal route. In addition, these particles present no evidence of toxicity, in the absence of irradiation with up to 10 times the planned dose f…

Radiation-Sensitizing Agentsmedicine.medical_treatmentGadoliniumContrast MediaGadoliniumReview Article02 engineering and technologyQUANTUM DOTSIonizing radiation[ SDV.CAN ] Life Sciences [q-bio]/CancerMicechemistry.chemical_compound0302 clinical medicineNuclear magnetic resonanceNeoplasmsIN-VIVOmedicine.diagnostic_testNEUTRON-CAPTURE THERAPYGeneral Medicine021001 nanoscience & nanotechnologyMagnetic Resonance Imaging3. Good health030220 oncology & carcinogenesis/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_being0210 nano-technologyMRIMaterials scienceRadiotherapy and OncologySiloxanesMOTEXAFIN GADOLINIUMchemistry.chemical_element[SDV.CAN]Life Sciences [q-bio]/Cancer03 medical and health sciences[SDV.CAN] Life Sciences [q-bio]/CancerSDG 3 - Good Health and Well-beingIn vivoRADIATION-THERAPYmedicineAnimalsHumansBREAST-CANCERRadiology Nuclear Medicine and imagingIrradiationbusiness.industryMagnetic resonance imagingModels TheoreticalRadiation therapychemistryMotexafin gadoliniumGOLD NANOPARTICLESNanoparticlesParticleCONTRAST AGENTSIONIZING-RADIATIONNuclear medicinebusiness
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Caveolin-1, breast cancer and ionizing radiation

2015

Breast cancer (BC) recovery has increased in recent years thanks to efforts of Omics-based research in this field. However, despite the important results obtained, BC remains a complex multifactorial pathology that is difficult to treat appropriately. Caveolin-1 (CAV1), the basic constituent protein of specialized plasma membrane invaginations called caveolae, is emerging as a potential therapeutic biomarker in BC. This factor may modulate BC response to chemotherapy and radiation therapy. In addition, recent reports describe the key role of CAV1 during cell response to oxidative stress. The aim of the present review was to describe the biological roles of CAV1 in BC considering its contras…

RadiotherapyAnimalCAV1; biomarker; breast cancer; ionizing radiation; review; Animals; Biomarkers Tumor; Breast Neoplasms; Caveolin 1; Cell Transformation Neoplastic; Female; Gene Expression Regulation Neoplastic; Humans; Molecular Targeted Therapy; Radiotherapy; Receptor Epidermal Growth Factor; Radiation IonizingCaveolin 1reviewBreast NeoplasmsErbB ReceptorsGene Expression Regulation Neoplasticbreast cancerCell Transformation NeoplasticCAV1Radiation IonizingBiomarkers TumorAnimalsHumansbiomarkerFemaleMolecular Targeted TherapyReceptor Epidermal Growth Factorionizing radiationBreast NeoplasmHuman
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Protecting sensitive patient groups from imaging using ionizing radiation: effects during pregnancy, in fetal life and childhood

2019

The frequency of imaging examinations requiring radiation exposure in children (especially CT) is rapidly increasing. This paper reviews the current evidence in radiation protection in pediatric imaging, focusing on the recent knowledge of the biological risk related to low doses exposure. Even if there are no strictly defined limits for patient radiation exposure, it is recommended to try to keep doses as low as reasonably achievable (the ALARA principle). To achieve ALARA, several techniques to reduce the radiation dose in radiation-sensitive patients groups are reviewed. The most recent recommendations that provide guidance regarding imaging of pregnant women are also summarized, and the…

Riskmedicine.medical_specialtyNeoplasms Radiation-InducedRadiation DosageRadiation ToleranceRisk AssessmentPediatric radiology030218 nuclear medicine & medical imagingIonizing radiation03 medical and health sciencesFetus0302 clinical medicineReference ValuesPregnancyRadiation IonizingmedicineHumansRadiology Nuclear Medicine and imagingGonadsRadiation InjuriesChildIntensive care medicineComputed tomographyRadiation-induced cancerNeuroradiologyRadiation protectionPregnancyFetusmedicine.diagnostic_testbusiness.industryInterventional radiologyGeneral MedicineRadiation Exposuremedicine.diseaseRadiographyPediatric RadiologyChild PreschoolFluoroscopy030220 oncology & carcinogenesisFemaleRadiation-induced cancerRadiation protectionTomography X-Ray ComputedbusinessDNA DamageLa radiologia medica
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Rare-earth doped silica optical fibres for ionizing radiation detection

2016

Scintillating silica optical fibre sensors have shown interesting results for ionizing radiation monitoring and therefore can be useful for dosimetry applications in medical field. In fact, they enable a remote, punctual and real-time dose assessment (Mones et al., 2008). In addition, the high radiation hardness that characterizes silica optical fibers, makes these systems promising for radiation detection in high energy physics experiments (Chiodini et al., 2014). This work aims to review the recent progresses in the development and characterization of rare-earth doped silica fibres. The radioluminescent and dosimetric properties of Ce, Eu, Yb and Pr-doped silica matrices are described and…

Settore FIS/01 - Fisica SperimentaleRare-earth silica optical fibres ionizing radiation detectionSettore FIS/03 - Fisica Della MateriaSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)
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DOES STILL EXIST A CORRELATION BETWEEN X-RAYS OCCUPATIONAL EXPOSURE AND BENIGN NODULAR THYROID DISEASE?

2019

Objective: The prevalence of benign nodular thyroid disease in the general population is high, as shown by various studies, and the diagnosis is eased by the improved diagnostic capacity of the instruments used. The aim of the present study is the evaluation of occupational exposure to ionizing radiation as a possible significant risk factor in the determinism of this pathology. Method: A cross-sectional observational study in “A category” X-ray exposed workers (doctors, nurses, technicians) of the University Hospital of Palermo, compared with a sample of the general population, was carried out from June 2016 to June 2017. We evaluated data obtained from the Personal Health Records, includi…

Settore MED/44 - Medicina Del Lavorobenign thyroid nodules ionizing radiation X-rays exposed workers occupational disease.
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Interventistica eco-guidata per l’articolazione d’anca

2013

Lo scopo di questo lavoro è di rivedere le principali applicazioni della interventistica eco-guidata d’anca, descrivendone le indicazioni e la metodologia. L’ecografia è una metodica considerata sicura per i pazienti, in quanto non è stato dimostrato un possibile danno dovuto all’energia trasmessa dagli ultrasuoni ai tessuti del paziente, contrariamente alle metodiche che fanno uso di radiazioni ionizzanti, come la radiografia convenzionale e la tomografia computerizzata. Inoltre, l’ecografia risulta rapida ed efficace nel guidare l’ago verso la sede voluta evitando di intercettare strutture vascolari e/o nervose, consentendo quindi una maggiore sicurezza, rispetto alle tecniche interventis…

The purpose of this work is to review the main applications of ultrasound-guided hip intervention al procedures describing the indications and methodology. Ultrasound is a method considered safe for patients as it has not been shown a possible damage due to ultrasound energy transmitted towards the patient's tissues as opposed to methods that make use of ionizing radiation such as conventional radiography and computed tomography. In addition ultrasound is quick and effective in guiding the needle to the desired location avoiding vascular and/or nerve structures thus enabling greater security compared to the techniques performed in interventional fluoroscopy which also have the disadvantage of a large delivery of ionizing radiation for both patient and operator. Several authors have described the main techniques of ultrasound-guided hip intervention and its various applications that can be both diagnostic (as in the case of joint fluid aspiration to assess the presence or absence of septic arthritis) and therapeutic (as in the case of drugs inoculations or evacuation of exceeding intra-articular fluid).
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