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Effects of adenosine and regadenoson on hemodynamics measured using cardiovascular magnetic resonance imaging

BACKGROUND: Adenosine or regadenoson vasodilator stress cardiovascular magnetic resonance (CMR) is an effective non-invasive strategy for evaluating symptomatic coronary artery disease. Vasodilator injection typically precedes ventricular functional sequences to efficiently reduce overall scanning t...

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Autores principales: Thomas, Dustin M., Minor, Matthew R., Aden, James K., Lisanti, Christopher J., Steel, Kevin E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5713097/
https://www.ncbi.nlm.nih.gov/pubmed/29202847
http://dx.doi.org/10.1186/s12968-017-0409-8
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author Thomas, Dustin M.
Minor, Matthew R.
Aden, James K.
Lisanti, Christopher J.
Steel, Kevin E.
author_facet Thomas, Dustin M.
Minor, Matthew R.
Aden, James K.
Lisanti, Christopher J.
Steel, Kevin E.
author_sort Thomas, Dustin M.
collection PubMed
description BACKGROUND: Adenosine or regadenoson vasodilator stress cardiovascular magnetic resonance (CMR) is an effective non-invasive strategy for evaluating symptomatic coronary artery disease. Vasodilator injection typically precedes ventricular functional sequences to efficiently reduce overall scanning times, though the effects of vasodilators on CMR-derived ventricular volumes and function are unknown. METHODS: We prospectively enrolled 25 healthy subjects to undergo consecutive adenosine and regadenoson administration. Short axis CINE datasets were obtained on a 1.5 T scanner following adenosine (140mcg/kg/min IV for 6 min) and regadenoson (0.4 mg IV over 10 s) at baseline, immediately following administration, at 5 min intervals up to 15 min. Hemodynamic response, bi-ventricular volumes and ejection fractions were determined at each time point. RESULTS: Peak heart rate was observed early following administration of both adenosine and regadenoson. Heart rate returned to baseline by 10 min post-adenosine while remaining elevated at 15 min post-regadenoson (p = 0.0015). Left ventricular (LV) ejection fraction (LVEF) increased immediately following both vasodilators (p < 0.0001 for both) and returned to baseline following adenosine by 10 min (p = 0.8397). Conversely, LVEF following regadenoson remained increased at 10 min (p = 0.003) and 15 min (p = 0.0015) with a mean LVEF increase at 15 min of 4.2 ± 1.3%. Regadenoson resulted in a similar magnitude reduction in both LV end-diastolic volume index (LVEDVi) and LV end-systolic volume index (LVESVi) at 15 min whereas LVESVi resolved at 15 min following adenosine and LVEDVi remained below baseline values (p = 0.52). CONCLUSIONS: Regadenoson and adenosine have significant and prolonged impact on ventricular volumes and LVEF. In patients undergoing vasodilator stress CMR where ventricular volumes and LVEF are critical components to patient care, ventricular functional sequences should be performed prior to vasodilator use or consider the use of aminophylline in the setting of regadenoson. Additionally, heart rate resolution itself is not an effective surrogate for return of ventricular volumes and LVEF to baseline.
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spelling pubmed-57130972017-12-06 Effects of adenosine and regadenoson on hemodynamics measured using cardiovascular magnetic resonance imaging Thomas, Dustin M. Minor, Matthew R. Aden, James K. Lisanti, Christopher J. Steel, Kevin E. J Cardiovasc Magn Reson Research BACKGROUND: Adenosine or regadenoson vasodilator stress cardiovascular magnetic resonance (CMR) is an effective non-invasive strategy for evaluating symptomatic coronary artery disease. Vasodilator injection typically precedes ventricular functional sequences to efficiently reduce overall scanning times, though the effects of vasodilators on CMR-derived ventricular volumes and function are unknown. METHODS: We prospectively enrolled 25 healthy subjects to undergo consecutive adenosine and regadenoson administration. Short axis CINE datasets were obtained on a 1.5 T scanner following adenosine (140mcg/kg/min IV for 6 min) and regadenoson (0.4 mg IV over 10 s) at baseline, immediately following administration, at 5 min intervals up to 15 min. Hemodynamic response, bi-ventricular volumes and ejection fractions were determined at each time point. RESULTS: Peak heart rate was observed early following administration of both adenosine and regadenoson. Heart rate returned to baseline by 10 min post-adenosine while remaining elevated at 15 min post-regadenoson (p = 0.0015). Left ventricular (LV) ejection fraction (LVEF) increased immediately following both vasodilators (p < 0.0001 for both) and returned to baseline following adenosine by 10 min (p = 0.8397). Conversely, LVEF following regadenoson remained increased at 10 min (p = 0.003) and 15 min (p = 0.0015) with a mean LVEF increase at 15 min of 4.2 ± 1.3%. Regadenoson resulted in a similar magnitude reduction in both LV end-diastolic volume index (LVEDVi) and LV end-systolic volume index (LVESVi) at 15 min whereas LVESVi resolved at 15 min following adenosine and LVEDVi remained below baseline values (p = 0.52). CONCLUSIONS: Regadenoson and adenosine have significant and prolonged impact on ventricular volumes and LVEF. In patients undergoing vasodilator stress CMR where ventricular volumes and LVEF are critical components to patient care, ventricular functional sequences should be performed prior to vasodilator use or consider the use of aminophylline in the setting of regadenoson. Additionally, heart rate resolution itself is not an effective surrogate for return of ventricular volumes and LVEF to baseline. BioMed Central 2017-12-04 /pmc/articles/PMC5713097/ /pubmed/29202847 http://dx.doi.org/10.1186/s12968-017-0409-8 Text en © The Author(s). 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Thomas, Dustin M.
Minor, Matthew R.
Aden, James K.
Lisanti, Christopher J.
Steel, Kevin E.
Effects of adenosine and regadenoson on hemodynamics measured using cardiovascular magnetic resonance imaging
title Effects of adenosine and regadenoson on hemodynamics measured using cardiovascular magnetic resonance imaging
title_full Effects of adenosine and regadenoson on hemodynamics measured using cardiovascular magnetic resonance imaging
title_fullStr Effects of adenosine and regadenoson on hemodynamics measured using cardiovascular magnetic resonance imaging
title_full_unstemmed Effects of adenosine and regadenoson on hemodynamics measured using cardiovascular magnetic resonance imaging
title_short Effects of adenosine and regadenoson on hemodynamics measured using cardiovascular magnetic resonance imaging
title_sort effects of adenosine and regadenoson on hemodynamics measured using cardiovascular magnetic resonance imaging
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5713097/
https://www.ncbi.nlm.nih.gov/pubmed/29202847
http://dx.doi.org/10.1186/s12968-017-0409-8
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