Discrepancies exist among aortic stenosis severity classification, patient symptom burden, and - in some cases - even survival. The new Stress Aortic Valve Index (SAVI) metric correlates better with transvalvular flow and might be a better predictor of symptoms and prognosis. The current study will demonstrate the value of SAVI (both non-invasive and invasive) in patients with moderate aortic stenosis. The population will consist of subjects at least 50 years old with moderate aortic stenosis (defined as aortic valve area \>1.0 cm2 plus either maximal velocity 2.5-3.9 m/s or mean gradient 15-39 mmHg). Subjects with severe concomitant valve disease or severe unrevascularized coronary artery disease will be excluded, so that the isolated prognosis of aortic stenosis can be investigated. All subjects will undergo invasive SAVI measurements during catheterization. Furthermore patients will receive non-invasive testing with an exercise echocardiogram and computed tomography (CT) scan for non-invasive SAVI measurements. The short-term objective will compare SAVI with standard resting indexes for symptom burden, functional capacity, and biomarkers. The long-term objective will associate SAVI and standard resting indexes with clinical outcomes related to valvular disease. The investigators hypothesize that low SAVI (more marked AS during stress) will track with more symptoms and a worse prognosis. Nature and extent of the burden and risks associated with participation, benefit and group relatedness: The patients will have several study visits. The index visit will be planned to obtain informed consent and baseline parameters. The measurement visit(s) will consist of the invasive SAVI measurement, echocardiogram, stress echo imaging, 6-minute walk test, quality of life questionnaire, and the cardiac CT. During the final visit after 12 months, subjects will undergo a CT valvular calcium scan, quality of life questionnaire, and 6-minute walk test. Every subject will have an echocardiogram yearly as suggested by guideline criteria and could possibly be contacted until five years after enrollment. Blood samples will be drawn at baseline and the 1-year follow-up. Potentially the new SAVI metric could identify patients at higher risk among those with moderate gradient AS. However, since no outcome data currently exists regarding SAVI and prognosis, no conclusions could be derived from these measurements until study completion.
Study Type
OBSERVATIONAL
Enrollment
52
UMass Medical Memorial Center
Worcester, Massachusetts, United States
UTHealth Houston, McGovern Medical School
Houston, Texas, United States
Aalborg University Hospital
Aalborg, Denmark
Catharina Hospital Eindhoven
Eindhoven, Netherlands
Erasmus University Medical Center
Rotterdam, Netherlands
Evaluation of the valve metrics vs baseline clinical parameters (KCCQ)
A primary endpoint is the comparison of baseline clinical parameters (quality of life survey (Kansas City Cardiomyopathy Questionnaire Overall Score (KCCQ-OS) (score 1-100), between SAVI (dimensionless) and each of mean aortic gradient (mmHg), aortic valve area (cm2), and maximal aortic valve velocity (m/s)
Time frame: 1 to 5 years
Evaluation of the valve metrics vs baseline clinical parameters (6MWT)
A primary endpoint is the comparison of baseline clinical parameters (6 minute walking test (6MWT) (meters), between SAVI (dimensionless) and each of mean aortic gradient (mmHg), aortic valve area (cm2), and maximal aortic valve velocity (m/s)
Time frame: 1 to 5 years
Evaluation of the valve metrics vs baseline clinical parameters (biomarkers)
A primary endpoint is the comparison of baseline clinical parameters (biomarkers (NT-proBNP (pg/ml); troponin (ng/L))), between SAVI (dimensionless) and each of mean aortic gradient (mmHg), aortic valve area (cm2), and maximal aortic valve velocity (m/s)
Time frame: 1 to 5 years
Correlation between invasive (cardiac catherization) and non-invasive (stress echocardiography; computational fluid dynamics obtained from CT scan data) SAVI measurements
Secondary endpoints will include correlations between invasive (with pressures (mmHg) obtained during cardiac catheterization) and noninvasive (calculated based on pressures (mmHg) achieved during echocardiographic/computional fluid dynamics) SAVI (dimensionless) measurements to explore if stress assessment of the aortic valve can be imaged non-invasively or if it requires invasive hemodynamic measurement for acceptable precision. The same will be done with the cardiac CT scans that will be analyzed to see if computational fluid dynamics can simulate invasive SAVI (dimensionless).
Time frame: 1 year
SAVI vs. clinical outcome (number of hospitalizations (hear failure/angina/syncope/rhythm disturbances/valvular intervention/any death/cardiac death)
Compare SAVI (dimensionless) against standard indexes of aortic stenosis for a composite clinical endpoint of hospital admission for heart failure, angina or syncope, arrhythmia (atrial fibrillation, ventricular tachycardia), valvular intervention (SAVR, TAVI, balloon valvuloplasty), death of any cause, and cardiac death
Time frame: 1 to 5 years
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