quantitative radionuclide angiocardiography - définition. Qu'est-ce que quantitative radionuclide angiocardiography
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Qu'est-ce (qui) est quantitative radionuclide angiocardiography - définition

NUCLEAR MEDICINE IMAGING THE VENTRICLES OF THE HEART
MUGA; MUGA scan; Radionuclide ventriculography; SYMA scan; Radionuclide angiocardiography
  • Normal MUGA scan

Quantitative trait locus         
  • A QTL for [[osteoporosis]] on the human chromosome 20
  • Example of a genome-wide scan for QTL of [[osteoporosis]]
DNA LOCUS ASSOCIATED WITH VARIATION IN A QUANTITATIVE TRAIT
Qtl; Qtl mapping; QTL; QTL mapping; Quantative trait loci; Quantative trait locus; Quantitative trait loci; Polygenic inheritance; Polygenic traits; Quantitative Trait Gene; Quantitative trait gene; QTG; Quantitative Trait Locus; Multifactorial inheritance; Quantitative Trait Loci; Mapping of Quantitative Trait Loci; Polygenic character; Multifactorial trait; Mapping of quantitative trait loci; Complex Trait; Linkage based QTL mapping; Quantitative trait loci mapping
A quantitative trait locus (QTL) is a locus (section of DNA) that correlates with variation of a quantitative trait in the phenotype of a population of organisms. QTLs are mapped by identifying which molecular markers (such as SNPs or AFLPs) correlate with an observed trait.
Quantitative research         
ALL PROCEDURES FOR THE NUMERICAL REPRESENTATION OF EMPIRICAL FACTS
Quantitative method; Quantitative property; Quantitative methods; Quantitative data; Quantitative assessment; Quantitatively; Quantitative study; Quantitative Methods; Quantitative observations; Quantitative data analysis; Quantitative approach; Quantitative methodology
Quantitative research is a research strategy that focuses on quantifying the collection and analysis of data. It is formed from a deductive approach where emphasis is placed on the testing of theory, shaped by empiricist and positivist philosophies.
McNamara fallacy         
MAKING A DECISION BASED SOLELY ON QUANTITATIVE OBSERVATIONS (OR METRICS) AND IGNORING ALL OTHERS
Quantitative fallacy; McNamara fallacies
The McNamara fallacy (also known as the quantitative fallacy), named for Robert McNamara, the US Secretary of Defense from 1961 to 1968, involves making a decision based solely on quantitative observations (or metrics) and ignoring all others. The reason given is often that these other observations cannot be proven.

Wikipédia

Radionuclide angiography

Radionuclide angiography is an area of nuclear medicine which specialises in imaging to show the functionality of the right and left ventricles of the heart, thus allowing informed diagnostic intervention in heart failure. It involves use of a radiopharmaceutical, injected into a patient, and a gamma camera for acquisition. A MUGA scan (multigated acquisition) involves an acquisition triggered (gated) at different points of the cardiac cycle. MUGA scanning is also called equilibrium radionuclide angiocardiography, radionuclide ventriculography (RNVG), or gated blood pool imaging, as well as SYMA scanning (synchronized multigated acquisition scanning).

This mode of imaging uniquely provides a cine type of image of the beating heart, and allows the interpreter to determine the efficiency of the individual heart valves and chambers. MUGA/Cine scanning represents a robust adjunct to the now more common echocardiogram. Mathematics regarding acquisition of cardiac output (Q) is well served by both of these methods as well as other inexpensive models supporting ejection fraction as a product of the heart/myocardium in systole. The advantage of a MUGA scan over an echocardiogram or an angiogram is its accuracy. An echocardiogram measures the shortening fraction of the ventricle and is limited by the user's ability. Furthermore, an angiogram is invasive and, often, more expensive. A MUGA scan provides a more accurate representation of cardiac ejection fraction.