In the presented study TDI will be used as a modern technique to characterize RV-function in Fallot patients at rest and during different exercise conditions.
Tissue Doppler imaging (TDI) presents a modern technique to depict the velocity of tissue motion within a distinct area of the myocardium providing amendatory characterization of diastolic and systolic function of the heart. TDI is hypothesized to be of additional value in the evaluation of adult congenital heart disease, especially tetralogy of Fallot (TOF), which is one of the most common conditions. In particular, Fallot patients are at risk of developing right ventricular (RV) dysfunction due to pulmonary valve defects or alterations of the outflow tract. It is pivotal to recognize this progression at an early stage before irreversible changes occur. Aim of the study is to test feasibility of TDI in Fallot patients as a new technique that provides new parameters to characterize RV dysfunction, more precise than common methods. Additionally TDI is performed at rest and during different endurance testings (passive Leg Raising (PLR), handgrip (HG) and cardiopulmonary exercise (CPX), as certain changes might be compensated at rest, first apparent during exercise.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
OTHER
Masking
NONE
Enrollment
60
Transthoracic echocardiography at rest, during PLR, HG and CPX (including blood gas analysis in both groups). Additionally Fallot patients will undergo routine blood testings.
Division of Cardiology, Pulmonary Disease and Vascular Medicine
Düsseldorf, Germany
Right ventricular myocardial velocity
Right ventricular myocardial velocity during early diastole (cm/s) Right ventricular myocardial velocity during late diastole (cm/s) Right ventricular myocardial velocity during systole (cm/s) baseline (one time point, measurements are performed at rest and during exercise)
Time frame: Baseline
Peak oxygen consumption (ml/min/kg) and Oxygen consumption at anaerobic threshold (ml/min/kg)
CPX is performed for the measurement of TDI velocities at peak exercise, as well as for the assessment of the participants´ cardiopulmonary status. For the latter, the focus lies on oxygen consumption at peak exercise and at anaerobic threshold
Time frame: Baseline
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