Measurementof Myocardial Blood Flow Using a Co-InjectionTechnique for Technetium99m- Teboroxime,Technetium9 6-Sestamibiand Thaffium-20 1 (original) (raw)

Measurement of myocardial blood flow using a co-injection technique for technetium-99m-teboroxime, technetium-96-sestamibi and thallium-201

John Pirro

Journal of nuclear medicine : official publication, Society of Nuclear Medicine, 1992

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Radionuclide determination of myocardial blood flow

Ernest Stokely

Seminars in Nuclear Medicine, 1973

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Total and Regional Coronary Blood Flow Measured by Radioactive Microspheres in Conscious and Anesthetized Dogs

Julien Hoffman

Circulation Research, 1969

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Direct comparison of [13N]ammonia and [15O]water estimates of perfusion with quantification of regional myocardial blood flow by microspheres

Michel Pauw

Circulation, 1993

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Total and Regional Myocardial Blood Flow Measurements with 25 , 15 , 9 , and Filtered 1-10 Diameter Microspheres and Antipyrine in Dogs and Sheep

Julien Hoffman

Circulation Research, 1974

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10µ Diameter Microspheres and Antipyrine in Dogs and Sheep Total and Regional Myocardial Blood Flow Measurements with 25µ, 15µ, 9µ, and Filtered

Julien Hoffman

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Technetium-99m-tetrofosmin to assess myocardial blood flow: experimental validation in an intact canine model of ischemia

Diwakar Jain

Journal of nuclear medicine : official publication, Society of Nuclear Medicine, 1994

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Flow Versus Uptake Comparisons of Thallium-201 with Technetium-99m Perfusion Tracers in a Canine Model of Myocardial Ischemia

Ronald Millard

The Journal of Nuclear Medicine, 1997

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Simplified Quantification of Myocardial Flow Reserve with flurpiridaz F 18: Validation with Microspheres in a Pig Model

S. Reder

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Absolute quantitation of myocardial blood flow with 201Tl and dynamic SPECT in canine: optimisation and validation of kinetic modelling

Stefan Eberl

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Quantification of myocardial blood flow and flow reserve: Technical aspects

Robert Dekemp

Journal of Nuclear Cardiology, 2010

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Myocardial Technetium99m-Teboroxime Uptake duringAdenosine-Induced Hyperemia in Dogs with Either a Critical or Mild Coronary Stenosis: Comparison to Thallium201and Regional Blood Flow

Juris Simanis

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The distribution of myocardial flow

Wolfgang Schaper

Basic Research in Cardiology, 1974

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Static versus dynamic teboroxime myocardial perfusion SPECT in canines

Grant Gullberg

IEEE Transactions on Nuclear Science, 2000

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Quantitative assessment of magnetic resonance derived myocardial perfusion measurements using advanced techniques: microsphere validation in an explanted pig heart system

Nicolas Smith, Maria Siebes

Journal of Cardiovascular Magnetic Resonance, 2014

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Early myocardial clearance kinetics of technetium-99m-teboroxime differentiate normal and flow-restricted canine myocardium at rest

David Glover

Journal of nuclear medicine : official publication, Society of Nuclear Medicine, 1993

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Myocardial kinetics of TcN-NOET: a neutral lipophilic complex tracer of regional myocardial blood flow

Roberto Pasqualini

Journal of nuclear medicine : official publication, Society of Nuclear Medicine, 1995

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Myocardial clearance kinetics of technetium-99m-SQ30217: a marker of regional myocardial blood flow

Neil Petry

Journal of nuclear medicine : official publication, Society of Nuclear Medicine, 1990

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Two hemodynamic problems commonly associated with the microsphere technique for measuring regional blood flow in rats

Tom smith

Journal of pharmacological methods, 1985

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New myocardial perfusion imaging agents: Description and applications

George Hermann

American Heart Journal, 1988

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SPECT imaging of teboroxime during myocardial blood flow changes

Grant Gullberg

IEEE Transactions on Nuclear Science, 2000

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Quantification of subendocardial and subepicardial blood flow using 15O-labeled water and PET: experimental validation

Ornella Rimoldi

Journal of nuclear medicine : official publication, Society of Nuclear Medicine, 2006

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Myocardial tissue perfusion determined by particulate and diffusible tracers during ischaemia: what is measured?

Danny O'Hare

Cardiovascular Research, 1996

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The effect of collateral flow and myocardial viability on the distribution of technetium-99m sestamibi in a closed-chest model of coronary occlusion and reperfusion

Panithaya Chareonthaitawee

European Journal of Nuclear Medicine and Molecular Imaging, 2000

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Evaluation of the Novel Myocardial Perfusion Positron-Emission Tomography Tracer 18F-BMS-747158-02: Comparison to 13N-Ammonia and Validation With Microspheres in a Pig Model

Takahiro Higuchi

Circulation, 2009

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Initial Characterization of an 18F-Labeled Myocardial Perfusion Tracer

Takahiro Higuchi

Journal of Nuclear Medicine, 2008

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Measurement of myocardial blood flow with oxygen-15 labelled water: comparison of different administration protocols

john clark

European Journal of Nuclear Medicine and Molecular Imaging, 1998

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Comparison of technetium-99m sestamibi and thallium-201 retention characteristics in canine myocardium

ngoc ngoc nguyen

Journal of The American College of Cardiology, 1992

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Flow-dependent uptake of I-123-CMICE-013, a novel SPECT perfusion agent, compared to standard tracers

Rachel Timmins, Yin Duan

Journal of nuclear medicine : official publication, Society of Nuclear Medicine, 2015

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Assessment of myocardial perfusion by positron emission tomography

Marcus Wiemer

The American Journal of Cardiology, 1991

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A quantitative index of regional blood flow in canine myocardium derived noninvasively with N-13 ammonia and dynamic positron emission tomography

Christoph Nienaber

Journal of the American College of Cardiology, 1991

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Quantification of regional myocardial blood flow in vivo with H215O

Jane Sykes

Circulation, 1984

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Kaufmann PA, Gnecchi-Ruscone T, Yap JT, Rimoldi O, Camici PG. Assessment of the reproducibility of baseline and hyperemic myocardial blood flow measurements with 15O-labeled water and PET

Tomaso Gnecchi-Ruscone

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Myocardial blood flow quantification with SPECT and conventional tracers: a critical appraisal

Kenichi Nakajima

Journal of nuclear cardiology : official publication of the American Society of Nuclear Cardiology, 2014

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