Stress echo 2020: the international stress echo study in ischemic and non-ischemic heart disease
Eugenio Picano1, Quirino Ciampi2, Rodolfo Citro3
1Institute of Clinical Physiology, National Research Council, Pisa, Italy. picano@ifc.cnr.it.
Insights
This study investigates new applications for stress echocardiography (SE) beyond coronary artery disease (CAD), aiming to establish its safety and prognostic value in various cardiac conditions. The research will standardize SE procedures and validate emerging imaging signs for improved patient outcomes.
Area of Science:
- Cardiology
- Medical Imaging
- Diagnostic Echocardiography
Background:
- Stress echocardiography (SE) is guideline-established for coronary artery disease (CAD).
- SE applications are expanding beyond traditional uses.
- Prospective research on diverse SE applications and signs is lacking.
Purpose of the Study:
- To prospectively investigate SE applications in and beyond CAD.
- To evaluate novel SE signs beyond regional wall motion abnormalities.
- To assess the safety, feasibility, and prognostic value of SE in various clinical scenarios.
Main Methods:
- Prospective, multicenter, international, observational study.
- >100 certified high-volume SE labs networked for data collection.
- 10 subprojects focusing on diverse cardiac conditions and SE parameters.
Main Results:
- Expected recruitment of ~10,000 patients over 5 years (2016-2020).
- Sample sizes vary by subproject, from ~250 to 5,000 patients.
- Database will enable investigation of technical aspects and prognostic value of SE parameters.
Conclusions:
- Establish infrastructure for accredited SE labs to share data and criteria.
- Generate safety, feasibility, and outcome data in evidence-poor SE fields.
- Standardize SE procedures, validate emerging signs, and integrate new knowledge for next-generation SE.
Background:
Stress echocardiography (SE) has an established role in evidence-based guidelines, but recently its breadth and variety of applications have extended well beyond coronary artery disease (CAD). We lack a prospective research study of SE applications, in and beyond CAD, also considering a variety of signs in addition to regional wall motion abnormalities.
Methods:
In a prospective, multicenter, international, observational study design, > 100 certified high-volume SE labs (initially from Italy, Brazil, Hungary, and Serbia) will be networked with an organized system of clinical, laboratory and imaging data collection at the time of physical or pharmacological SE, with structured follow-up information. The study is endorsed by the Italian Society of Cardiovascular Echography and organized in 10 subprojects focusing on: contractile reserve for prediction of cardiac resynchronization or medical therapy response; stress B-lines in heart failure; hypertrophic cardiomyopathy; heart failure with preserved ejection fraction; mitral regurgitation after either transcatheter or surgical aortic valve replacement; outdoor SE in extreme physiology; right ventricular contractile reserve in repaired Tetralogy of Fallot; suspected or initial pulmonary arterial hypertension; coronary flow velocity, left ventricular elastance reserve and B-lines in known or suspected CAD; identification of subclinical familial disease in genotype-positive, phenotype- negative healthy relatives of inherited disease (such as hypertrophic cardiomyopathy).
Results:
We expect to recruit about 10,000 patients over a 5-year period (2016-2020), with sample sizes ranging from 5,000 for coronary flow velocity/ left ventricular elastance/ B-lines in CAD to around 250 for hypertrophic cardiomyopathy or repaired Tetralogy of Fallot. This data-base will allow to investigate technical questions such as feasibility and reproducibility of various SE parameters and to assess their prognostic value in different clinical scenarios.
Conclusions:
The study will create the cultural, informatic and scientific infrastructure connecting high-volume, accredited SE labs, sharing common criteria of indication, execution, reporting and image storage of SE to obtain original safety, feasibility, and outcome data in evidence-poor diagnostic fields, also outside the established core application of SE in CAD based on regional wall motion abnormalities. The study will standardize procedures, validate emerging signs, and integrate the new information with established knowledge, helping to build a next-generation SE lab without inner walls.
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Purposes
