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Biomedical subjects

A A Garvin

Publications and source records attributed to A A Garvin.

2 recordsLinked to original sources

Myocardial perfusion imaging using single-photon emission computed tomography.

Myocardial perfusion single-photon emission computed tomography (SPECT) provides three-dimensional physiological information to assess myocardial blood flow at stress and rest and myocardial viability. The availability of perfusion agents with different uptake mechanisms, thallium 201, technetium 99m-sestamibi, and 99mTc-teboroxime, has created considerable flexibility in how these agents are imaged and interpreted. The higher photon flux and fixed distribution of 99mTc sestamibi allows for multiple-gated acquisition, which yields the potential for the assessment of myocardial thickening. Pharmacological agents, such as dipyridamole, adenosine, and dobutamine, may be used with myocardial perfusion SPECT as an alternate stress procedure in patients who cannot exercise adequately. SPECT reconstruction is limited by the current lack of clinically implemented algorithms to compensate for photon scatter and attenuation or for finite spatial resolution. Data-based quantification procedures that compare a patient's results to a database of normal patients assist the diagnosticians in circumventing these limitations.

Algorithms↗

Clinical nuclear imaging techniques for the diagnosis and evaluation of acute myocardial infarction.

The use of nuclear imaging techniques allows the accurate detection of myocardial infarction, determination of the impact of infarction on ventricular performance, assessment of the myocardial salvage with thrombolysis, identification of preserved regional metabolism in jeopardized myocardial segments, and the elucidation of inducible reversible ischemia requiring aggressive therapeutic intervention. Assessment of myocardial salvage after thrombolysis or revascularization can be accomplished with serial perfusion imaging. Infarct-avid imaging with Tc-99m-PYP can be used to rapidly determine the size and location of the acute transmural myocardial infarction. In the future, however, the improved image quality and diagnostic accuracy of immunoscintigraphy with antimyosin antibodies may supplant PYP imaging. Studies of global ventricular function can be performed at rest, or with multiple interventions using portable scintigraphic devices. The measurement of the dynamic response of left ventricular ejection fraction over time shows promise for risk stratification. As yet, there has been no comprehensive comparison of the relative predictive value of metabolic imaging parameters, perfusion/antibody uptake mismatch, Tl-201 redistribution, or ejection fraction response data. Such a comparison could optimize the diagnostic algorithm for post-infarction damage assessment and risk stratification.

Coronary Disease↗