Literature DB >> 2809744

Noninvasive estimation of regional myocardial oxygen consumption by positron emission tomography with carbon-11 acetate in patients with myocardial infarction.

M N Walsh1, E M Geltman, M A Brown, C G Henes, C J Weinheimer, B E Sobel, S R Bergmann.   

Abstract

We previously demonstrated in experimental studies that myocardial oxygen consumption (MVO2) can be estimated noninvasively with positron emission tomography (PET) from analysis of the myocardial turnover rate constant (k) after administration of carbon-11 (11C) acetate. To determine regional k in healthy human subjects and to estimate alterations in MVO2 accompanying myocardial ischemia, we administered [11C]acetate to five healthy human volunteers and to six patients with myocardial infarction. Extraction of [11C]acetate by the myocardium was avid and clearance from the blood-pool rapid yielding myocardial images of excellent quality. Regional k was homogeneous in myocardium of healthy volunteers (coefficient variation = 11%). In patients, k in regions remote from the area of infarction was not different from values in myocardium of healthy human volunteers (0.061 +/- 0.025 compared with 0.057 +/- 0.008 min-1). In contrast, MVO2 in the center of the infarct region was only 6% of that in remote regions (p less than 0.01). In four patients studied within 48 hr of infarction and again more than seven days after the acute event, regional k and MVO2 did not change. The approach developed should facilitate evaluation of the efficacy of interventions designed to enhance recovery of jeopardized myocardium and permit estimation of regional MVO2 and metabolic reserve underlying cardiac disease of diverse etiologies.

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Year:  1989        PMID: 2809744

Source DB:  PubMed          Journal:  J Nucl Med        ISSN: 0161-5505            Impact factor:   10.057


  24 in total

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3.  Use of carbon 11-acetate for the measurement of myocardial oxygen consumption.

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4.  T(2) preparation method for measuring hyperemic myocardial O(2) consumption: in vivo validation by positron emission tomography.

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5.  Myocardial oxidative metabolism in normal subjects in fasting, glucose loading and dobutamine infusion states.

Authors:  N Tamaki; Y Magata; N Takahashi; M Kawamoto; T Torizuka; Y Yonekura; S Nishizawa; N Sadato; E Tadamura; S Ono
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Review 6.  Uses and limitations of positron emission tomography in clinical pharmacokinetics/dynamics (Part II).

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Review 7.  Imaging of myocardial fatty acid metabolism with PET.

Authors:  Steven R Bergmann
Journal:  J Nucl Cardiol       Date:  2007 May-Jun       Impact factor: 5.952

Review 8.  Investigation of myocardial metabolism for the study of the pathophysiology of cardiac disease.

Authors:  P G Camici
Journal:  J Nucl Cardiol       Date:  1994 Mar-Apr       Impact factor: 5.952

9.  Myocardial blood volume is associated with myocardial oxygen consumption: an experimental study with cardiac magnetic resonance in a canine model.

Authors:  Kyle S McCommis; Haosen Zhang; Thomas A Goldstein; Bernd Misselwitz; Dana R Abendschein; Robert J Gropler; Jie Zheng
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Review 10.  Assessment of viability after myocardial infarction. Clinical relevance and methodological problems.

Authors:  G Fragasso; A Margonato; S L Chierchia
Journal:  Int J Card Imaging       Date:  1993
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