review article | Q7318358 |
scholarly article | Q13442814 |
P50 | author | Maurizio Galderisi | Q37839585 |
Bruno Trimarco | Q38321707 | ||
P2093 | author name string | Roberta Esposito | |
Ciro Santoro | |||
Massimo Romano | |||
Francesco Rozza | |||
Maria Lembo | |||
Regina Sorrentino | |||
Valentina Capone | |||
P2860 | cites work | Stress echocardiography in heart failure | Q24800869 |
Pulmonary hypertension in heart failure preserved ejection fraction: prevalence, pathophysiology, and clinical perspectives | Q26865233 | ||
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Ramp exercise protocols for clinical and cardiopulmonary exercise testing. | Q33977374 | ||
Echocardiography may help detect pulmonary vasculopathy in the early stages of pulmonary artery hypertension associated with systemic sclerosis. | Q34013946 | ||
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Left ventricular global longitudinal strain is associated with exercise capacity in failing hearts with preserved and reduced ejection fraction | Q35018132 | ||
Current clinical applications of spectral tissue Doppler echocardiography (E/E' ratio) as a noninvasive surrogate for left ventricular diastolic pressures in the diagnosis of heart failure with preserved left ventricular systolic function | Q35741318 | ||
Applications of cardiopulmonary exercise testing in the management of cardiovascular and pulmonary disease | Q36035657 | ||
Determinants of VO2 max decline with aging: an integrated perspective | Q37112549 | ||
Established and novel clinical applications of diastolic function assessment by echocardiography | Q37902812 | ||
A meta-analysis of the prognostic significance of cardiopulmonary exercise testing in patients with heart failure | Q38021671 | ||
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Mechanisms of exercise intolerance in heart failure with preserved ejection fraction: the role of abnormal peripheral oxygen extraction | Q49799033 | ||
Cardiopulmonary Exercise Testing: What Is its Value? | Q49958671 | ||
Mechanisms of Effort Intolerance in Patients With Rheumatic Mitral Stenosis: Combined Echocardiography and Cardiopulmonary Stress Protocol. | Q51057769 | ||
Role of right ventricle and dynamic pulmonary hypertension on determining ΔVO2/ΔWork Rate flattening: insights from cardiopulmonary exercise test combined with exercise echocardiography. | Q51131543 | ||
Validation of a cardiopulmonary exercise test score in heart failure. | Q51205099 | ||
Discriminating Circulatory Problems From Deconditioning: Echocardiographic and Cardiopulmonary Exercise Test Analysis. | Q51441890 | ||
Usefulness of the evaluation of left ventricular diastolic function changes during stress echocardiography in predicting exercise capacity in patients with ischemic heart failure. | Q51717832 | ||
End-tidal carbon dioxide as a noninvasive indicator of cardiac index during circulatory shock. | Q52924288 | ||
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Cardiopulmonary Exercise Testing in the Clinical and Prognostic Assessment of Diastolic Heart Failure | Q56796643 | ||
Exercise-Stress Echocardiography and Effort Intolerance in Asymptomatic/Minimally Symptomatic Patients With Degenerative Mitral Regurgitation Combined Invasive-Noninvasive Hemodynamic Monitoring | Q57822607 | ||
Diagnosis of CTEPH versus IPAH using capillary to end-tidal carbon dioxide gradients | Q60363873 | ||
Value of peak exercise oxygen consumption for optimal timing of cardiac transplantation in ambulatory patients with heart failure | Q68205691 | ||
Cardiopulmonary exercise testing. Determinants of dyspnea due to cardiac or pulmonary limitation | Q72295951 | ||
End-tidal CO2 pressure decreases during exercise in cardiac patients: association with severity of heart failure and cardiac output reserve | Q74012881 | ||
Utility of metabolic exercise testing in distinguishing hypertrophic cardiomyopathy from physiologic left ventricular hypertrophy in athletes | Q74315525 | ||
Aerobic work capacity in men and women with special reference to age | Q79139176 | ||
Cardiopulmonary exercise test evidence of isolated right coronary artery disease | Q81550023 | ||
Reference values for cardiopulmonary exercise testing for sedentary and active men and women | Q82618785 | ||
Diastolic stress echocardiography: hemodynamic validation and clinical significance of estimation of ventricular filling pressure with exercise | Q83304489 | ||
The combined exercise stress echocardiography and cardiopulmonary exercise test for identification of masked heart failure with preserved ejection fraction in patients with hypertension | Q86110389 | ||
Determinants of Effort Intolerance in Patients With Heart Failure: Combined Echocardiography and Cardiopulmonary Stress Protocol | Q86424376 | ||
Diastolic bicycle stress echocardiography: Normal reference values in a middle age population | Q87292277 | ||
Individual Endurance Training Prescription with Heart Rate Variability | Q87356580 | ||
2017 AHA/ACC Focused Update of the 2014 AHA/ACC Guideline for the Management of Patients With Valvular Heart Disease: A Report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines | Q87598969 | ||
Cardiopulmonary exercise testing to detect chronic thromboembolic pulmonary hypertension in patients with normal echocardiography | Q87681091 | ||
Cardiopulmonary Exercise Test | Q89115021 | ||
Value of combined cardiopulmonary and echocardiography stress test to characterize the haemodynamic and metabolic responses of patients with heart failure and mid-range ejection fraction | Q91501319 | ||
Maximum oxygen consumption measurement: valuable biological marker in health and in sickness | Q95545133 | ||
P433 | issue | 1 | |
P304 | page(s) | 29 | |
P577 | publication date | 2019-12-03 | |
P1433 | published in | Cardiovascular Ultrasound | Q15765514 |
P1476 | title | Cardiopulmonary exercise testing and echocardiographic exam: an useful interaction | |
P478 | volume | 17 |
Q98647196 | The obesity paradox in the stress echo lab: fat is better for hearts with ischemia or coronary microvascular dysfunction | cites work | P2860 |
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