Hemodynamic Heterogeneity of Reduced Cardiac Reserve Unmasked by Volumetric Exercise Echocardiography.
cardiac reserve
end-diastolic volume
end-systolic volume
heart rate
stress echocardiography
Journal
Journal of clinical medicine
ISSN: 2077-0383
Titre abrégé: J Clin Med
Pays: Switzerland
ID NLM: 101606588
Informations de publication
Date de publication:
29 Jun 2021
29 Jun 2021
Historique:
received:
27
05
2021
revised:
23
06
2021
accepted:
23
06
2021
entrez:
2
7
2021
pubmed:
3
7
2021
medline:
3
7
2021
Statut:
epublish
Résumé
Two-dimensional volumetric exercise stress echocardiography (ESE) provides an integrated view of left ventricular (LV) preload reserve through end-diastolic volume (EDV) and LV contractile reserve (LVCR) through end-systolic volume (ESV) changes. To assess the dependence of cardiac reserve upon LVCR, EDV, and heart rate (HR) during ESE. We prospectively performed semi-supine bicycle or treadmill ESE in 1344 patients (age 59.8 ± 11.4 years; ejection fraction = 63 ± 8%) referred for known or suspected coronary artery disease. All patients had negative ESE by wall motion criteria. EDV and ESV were measured by biplane Simpson rule with 2-dimensional echocardiography. Cardiac index reserve was identified by peak-rest value. LVCR was the stress-rest ratio of force (systolic blood pressure by cuff sphygmomanometer/ESV, abnormal values ≤2.0). Preload reserve was defined by an increase in EDV. Cardiac index was calculated as stroke volume index * HR (by EKG). HR reserve (stress/rest ratio) <1.85 identified chronotropic incompetence. Of the 1344 patients, 448 were in the lowest tertile of cardiac index reserve with stress. Of them, 303 (67.6%) achieved HR reserve <1.85; 252 (56.3%) had an abnormal LVCR and 341 (76.1%) a reduction of preload reserve, with 446 patients (99.6%) showing ≥1 abnormality. At binary logistic regression analysis, reduced preload reserve (odds ratio [OR]: 5.610; 95% confidence intervals [CI]: 4.025 to 7.821), chronotropic incompetence (OR: 3.923, 95% CI: 2.915 to 5.279), and abnormal LVCR (OR: 1.579; 95% CI: 1.105 to 2.259) were independently associated with lowest tertile of cardiac index reserve at peak stress. Heart rate assessment and volumetric echocardiography during ESE identify the heterogeneity of hemodynamic phenotypes of impaired chronotropic, preload or LVCR underlying a reduced cardiac reserve.
Sections du résumé
BACKGROUND
BACKGROUND
Two-dimensional volumetric exercise stress echocardiography (ESE) provides an integrated view of left ventricular (LV) preload reserve through end-diastolic volume (EDV) and LV contractile reserve (LVCR) through end-systolic volume (ESV) changes.
PURPOSE
OBJECTIVE
To assess the dependence of cardiac reserve upon LVCR, EDV, and heart rate (HR) during ESE.
METHODS
METHODS
We prospectively performed semi-supine bicycle or treadmill ESE in 1344 patients (age 59.8 ± 11.4 years; ejection fraction = 63 ± 8%) referred for known or suspected coronary artery disease. All patients had negative ESE by wall motion criteria. EDV and ESV were measured by biplane Simpson rule with 2-dimensional echocardiography. Cardiac index reserve was identified by peak-rest value. LVCR was the stress-rest ratio of force (systolic blood pressure by cuff sphygmomanometer/ESV, abnormal values ≤2.0). Preload reserve was defined by an increase in EDV. Cardiac index was calculated as stroke volume index * HR (by EKG). HR reserve (stress/rest ratio) <1.85 identified chronotropic incompetence.
RESULTS
RESULTS
Of the 1344 patients, 448 were in the lowest tertile of cardiac index reserve with stress. Of them, 303 (67.6%) achieved HR reserve <1.85; 252 (56.3%) had an abnormal LVCR and 341 (76.1%) a reduction of preload reserve, with 446 patients (99.6%) showing ≥1 abnormality. At binary logistic regression analysis, reduced preload reserve (odds ratio [OR]: 5.610; 95% confidence intervals [CI]: 4.025 to 7.821), chronotropic incompetence (OR: 3.923, 95% CI: 2.915 to 5.279), and abnormal LVCR (OR: 1.579; 95% CI: 1.105 to 2.259) were independently associated with lowest tertile of cardiac index reserve at peak stress.
CONCLUSIONS
CONCLUSIONS
Heart rate assessment and volumetric echocardiography during ESE identify the heterogeneity of hemodynamic phenotypes of impaired chronotropic, preload or LVCR underlying a reduced cardiac reserve.
Identifiants
pubmed: 34209955
pii: jcm10132906
doi: 10.3390/jcm10132906
pmc: PMC8267648
pii:
doi:
Types de publication
Journal Article
Langues
eng
Subventions
Organisme : The study was funded partly by the Italian National Research Council (Ageing project)
ID : P001328
Références
Clin Cardiol. 2020 May;43(5):423-429
pubmed: 32073676
J Nucl Cardiol. 2008 May-Jun;15(3):353-62
pubmed: 18513642
Eur J Heart Fail. 2013 Jul;15(7):776-85
pubmed: 23426022
Eur Heart J. 2009 Dec;30(24):3027-36
pubmed: 19720638
Am J Cardiol. 2019 Sep 15;124(6):972-977
pubmed: 31324358
JACC Heart Fail. 2015 Oct;3(10):803-14
pubmed: 26449998
J Am Soc Echocardiogr. 2020 Jan;33(1):1-41.e8
pubmed: 31740370
Eur Heart J Cardiovasc Imaging. 2015 Apr;16(4):353
pubmed: 25681828
Cardiovasc Ultrasound. 2017 Jan 18;15(1):3
pubmed: 28100277
J Am Coll Cardiol. 2003 Sep 3;42(5):823-30
pubmed: 12957427
Eur J Heart Fail. 2019 Dec;21(12):1605-1613
pubmed: 31667987
J Am Soc Echocardiogr. 2003 Jun;16(6):646-55
pubmed: 12778025
JAMA. 1999 Feb 10;281(6):524-9
pubmed: 10022108
ESC Heart Fail. 2020 Dec 3;:
pubmed: 33274601
Eur Heart J. 2016 Jul 14;37(27):2129-2200
pubmed: 27206819
Kardiol Pol. 2019;77(2):164-172
pubmed: 30644080
JACC Heart Fail. 2018 Feb;6(2):117-126
pubmed: 29413366
JACC Cardiovasc Imaging. 2016 Jul;9(7):769-782
pubmed: 27318718
Eur J Prev Cardiol. 2016 Jan;23(1):71-7
pubmed: 26358991
Circ Heart Fail. 2018 Aug;11(8):e004969
pubmed: 30354566
J Am Soc Echocardiogr. 2017 Feb;30(2):101-138
pubmed: 28164802
ESC Heart Fail. 2015 Sep;2(3):121-132
pubmed: 27708854
Circulation. 2013 Aug 20;128(8):873-934
pubmed: 23877260
Cardiovasc Ultrasound. 2011 Nov 21;9:36
pubmed: 22104611
Curr Treat Options Cardiovasc Med. 2019 Apr 13;21(4):20
pubmed: 30982123
Int J Cardiol. 2017 Dec 15;249:479-485
pubmed: 28986062
J Am Soc Echocardiogr. 2018 Jun;31(6):692-701
pubmed: 29625884
Minerva Cardioangiol. 2020 Jul 10;:
pubmed: 32657562
Circulation. 1996 Apr 15;93(8):1485-7
pubmed: 8608613