Search results for "Myocardial Perfusion Imaging"

showing 4 items of 14 documents

Stress-first single photon emission computed myocardial perfusion imaging

2016

Background. Myocardial perfusion imaging (MPI) with single photon emission tomography (SPET) is widely used in coronary artery disease evaluation. Recently major dosimetric concerns have arisen. The aim of this study was to evaluate if a pre-test scoring system could predict the results of stress SPET MPI, thus avoiding two radionuclide injections. Methods. All consecutive patients (n=309) undergoing SPET MPI during the first 6 months of 2014 constituted the study group. The scoring system is based on these characteristics: age >65 years (1 point), diabetes (2 points), typical chest pain (2 points), congestive heart failure (3 points), abnormal ECG (4 points), male gender (4 points), and…

Myocardial Perfusion Imaging Coronary Artery Disease Radiation Dose Stress-FirstRadiation DoseMyocardial Perfusion ImagingArticlesCoronary Artery DiseaseStress-First
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The appropriate and justified use of medical radiation in cardiovascular imaging: a position document of the ESC Associations of Cardiovascular Imagi…

2014

The benefits of cardiac imaging are immense, and modern medicine requires the extensive and versatile use of a variety of cardiac imaging techniques. Cardiologists are responsible for a large part of the radiation exposures every person gets per year from all medical sources. Therefore, they have a particular responsibility to avoid unjustified and non-optimized use of radiation, but sometimes are imperfectly aware of the radiological dose of the examination they prescribe or practice. This position paper aims to summarize the current knowledge on radiation effective doses (and risks) related to cardiac imaging procedures. We have reviewed the literature on radiation doses, which can range …

Prenatal Diagnosimedicine.medical_treatmentScintigraphyImagingPregnancyRisk FactorsPrenatal DiagnosisCancer; Cardiovascular disease; Imaging; Radiation; Radiological protection; Risk; Cardiac Imaging Techniques; Cardiology; Child; Female; Heart Diseases; Humans; Informed Consent; Occupational Exposure; Pregnancy; Pregnancy Complications; Prenatal Diagnosis; Radiation Injuries; Radiation Protection; Risk Factors; Tomography X-Ray Computed; Unnecessary Procedures; Radiation Dosage; Cardiology and Cardiovascular MedicineRadiation InjurieChildTomographyRadiological protectionCardiac imagingCancerRadiationInformed Consentmedicine.diagnostic_testCardiovascular diseasePregnancy ComplicationX-Ray ComputedHeart DiseaseFemaleRadiologyCardiology and Cardiovascular MedicineHumanUnnecessary ProcedureRiskmedicine.medical_specialtyModern medicineHeart DiseasesCardiologyUnnecessary ProceduresRadiation DosageMyocardial perfusion imagingRadiation ProtectionOccupational ExposuremedicineMedical imagingHumansMedical physicsRadiation Injuriesta3126Cardiac Imaging Techniquebusiness.industryRisk FactorPercutaneous coronary interventionMED/11 - MALATTIE DELL'APPARATO CARDIOVASCOLAREta3121Pregnancy ComplicationsCardiac Imaging TechniquesCardiac Imaging TechniquesRadiation protectionTomography X-Ray Computedbusiness
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Myocardial blood flow quantification for evaluation of coronary artery disease by computed tomography

2017

During the last decade coronary computed tomography angiography (CTA) has become the preeminent non-invasive imaging modality to detect coronary artery disease (CAD) with high accuracy. However, CTA has a limited value in assessing the hemodynamic significance of a given stenosis due to a modest specificity and positive predictive value. In recent years, different CT techniques for detecting myocardial ischemia have emerged, such as CT-derived fractional flow reserve (FFR-CT), transluminal attenuation gradient (TAG), and myocardial CT perfusion (CTP) imaging. Myocardial CTP imaging can be performed with a single static scan during first pass of the contrast agent, with monoenergetic or dual…

medicine.medical_specialtyCardiac computed tomographyMyocardial blood flow quantificationPerfusion scanningFractional flow reserveReview Article030204 cardiovascular system & hematology030218 nuclear medicine & medical imagingCoronary artery disease03 medical and health sciencesMyocardial perfusion imaging0302 clinical medicineStress imagingInternal medicinemedicinemedicine.diagnostic_testbusiness.industryMyocardial perfusion imagingmedicine.diseaseRegadenosonDipyridamoleCoronary artery disease (CAD)StenosisCardiologyRadiologyCoronary vasodilatorbusinessCardiology and Cardiovascular MedicineSettore MED/36 - Diagnostica Per Immagini E Radioterapiamedicine.drug
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Quantitative myocardial perfusion magnetic resonance imaging: the impact of pulsatile flow on contrast agent bolus dispersion.

2011

Myocardial blood flow (MBF) can be quantified using T1-weighted first-pass magnetic resonance imaging (MRI) in combination with a tracer-kinetic model, like MMID4. This procedure requires the knowledge of an arterial input function which is usually estimated from the left ventricle (LV). Dispersion of the contrast agent bolus may occur between the LV and the tissue of interest. The aim of this study was to investigate the dispersion under conditions of physiological pulsatile blood flow, and to simulate its effect on MBF quantification. The dispersion was simulated in coronary arteries using a computational fluid dynamics (CFD) approach. Simulations were accomplished on straight vessels wit…

medicine.medical_specialtyMaterials scienceTime FactorsRadiological and Ultrasound Technologymedicine.diagnostic_testPulsatile flowMyocardial Perfusion ImagingContrast MediaMagnetic resonance imagingBlood flowMagnetic Resonance ImagingCoronary arteriesDiffusionCoronary circulationmedicine.anatomical_structureInternal medicineCoronary CirculationPulsatile FlowDispersion (optics)medicineCardiologyRadiology Nuclear Medicine and imagingBolus (digestion)Perfusioncirculatory and respiratory physiologyPhysics in medicine and biology
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