Search results for " Nuclear Medicine and Medical Imaging"

showing 4 items of 4 documents

Ultrasound Curricula of Student Education in Europe : Summary of the Experience

2020

Abstract Background Despite the increasing role of ultrasound, structured ultrasound teaching is only slowly being integrated into the curricula of medical schools and universities all over Europe. Aim To survey the current situation at European universities regarding the integration of ultrasound in student medical education and to report on models of student ultrasound training from selected European universities. Methods A questionnaire survey focusing on the implementation of curricular ultrasound education was sent out to the 28 presidents of the national ultrasound societies of the European Federation of Societies for Ultrasound in Medicine and Biology (EFSUMB), who were asked to dist…

lcsh:Medical physics. Medical radiology. Nuclear medicineguideline; methods & techniques; teaching; ultrasoundMedical educationbusiness.industryultrasoundlcsh:R895-920lcsh:Reducationlcsh:MedicineQuestionnaireCore curriculumStudent educationmethods & techniquesteachingMedicineOriginal ArticleRadiology Nuclear Medicine and imagingRadiologi och bildbehandlingbusinessCurriculumguidelineRadiology Nuclear Medicine and Medical Imaging
researchProduct

The use of in vivo confocal microscopy in fungal keratitis – Progress and challenges

2022

Fungal keratitis (FK) is a serious and sight-threatening corneal infection with global reach. The need for prompt diagnosis is paramount, as a delay in initiation of treatment could lead to irreversible vision loss. Current “gold standard” diagnostic methods, namely corneal smear and culture, have limitations due to diagnostic insensitivity and their time-consuming nature. PCR is a newer, complementary method used in the diagnosis of fungal keratitis, whose results are also sample-dependent. In vivo confocal microscopy (IVCM) is a promising complementary diagnostic method of increasing importance as it allows non-invasive real-time direct visualization of potential fungal pathogens and mani…

KeratitisIn vivo confocal microscopyArtificial intelligenceMicroscopy ConfocalCorneaOphthalmologyVDP::Medisinske Fag: 700::Klinisk medisinske fag: 750::Oftalmologi: 754Fungal keratitisArtificial IntelligenceFungal keratitis; Cornea; Diagnostics; In vivo confocal microscopy; Artificial intelligenceHumansRadiologi och bildbehandlingCorneal UlcerEye Infections FungalDiagnosticsRadiology Nuclear Medicine and Medical Imaging
researchProduct

Source strength determination in iridium-192 and cobalt-60 brachytherapy : A European survey on the level of agreement between clinical measurements …

2021

Background and purpose: Brachytherapy treatment outcomes depend on the accuracy of the delivered dose distribution, which is proportional to the reference air-kerma rate (RAKR). Current societal recommendations require the medical physicist to compare the measured RAKR values to the manufacturer source calibration certificate. The purpose of this work was to report agreement observed in current clinical practice in the European Union. Materials and methods: A European survey was performed for high- and pulsed-dose-rate (HDR and PDR) highenergy sources (Ir-192 and Co-60), to quantify observed RAKR differences. Medical physicists at eighteen hospitals from eight European countries were contac…

medicine.medical_specialtymedicine.medical_treatmentBrachytherapyTreatment outcomeBrachytherapyR895-920HDRDose distributionMedical physicistMedical physics. Medical radiology. Nuclear medicinePDRmedicinemedia_common.cataloged_instanceRadiology Nuclear Medicine and imagingMedical physicsOriginal Research ArticleEuropean unionRC254-282media_commonRadiationCobalt 60 brachytherapybusiness.industryRAKRNeoplasms. Tumors. Oncology. Including cancer and carcinogensCertificateSource strengthCalibrationRadiologi och bildbehandlingbusinessRAKR; Calibration; HDR; PDR; BrachytherapyRadiology Nuclear Medicine and Medical Imaging
researchProduct

GEC-ESTRO ACROP recommendations on calibration and traceability of LE-LDR photon-emitting brachytherapy sources at the hospital level

2019

Prostate brachytherapy treatment using permanent implantation of low-energy (LE) low-dose rate (LDR) sources is successfully and widely applied in Europe. In addition, seeds are used in other tumour sites, such as ophthalmic tumours, implanted temporarily. The calibration issues for LE-LDR photon emitting sources are specific and different from other sources used in brachytherapy. In this report, the BRAPHYQS (BRAchytherapy PHYsics Quality assurance System) working group of GEC-ESTRO, has developed the present recommendations to assure harmonized and high-quality seed calibration in European clinics. There are practical aspects for which a clarification/procedure is needed, including aspect…

medicine.medical_specialtyTraceabilityComputer scienceCalibration (statistics)medicine.medical_treatmentBrachytherapyBrachytherapy030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicinemedicineHumansRadiology Nuclear Medicine and imagingMedical physicsPhotonsbusiness.industryLE-LDRBrachytherapy; LE-LDR; Seeds; CalibrationHospital levelRadiotherapy DosageHematologyHospitalsOncology030220 oncology & carcinogenesisSeedsCalibrationRadiologi och bildbehandlingbusinessQuality assuranceProstate brachytherapyRadiology Nuclear Medicine and Medical Imaging
researchProduct