View clinical trials related to Heart Defects, Congenital.
Filter by:Pulmonary arterial hypertension (PAH) in patients with congenital heart disease (CHD) is associated with considerable morbidity and even mortality. Next to environmental risk factors, the investigators believe that there is an important role of genetic predisposition to develop PAH in CHD. There often is a discrepancy between the severity of PAH and the CHD, where it is useful to screen for PAH gene mutations. The investigators hypothesize that the genotype is partly responsible for the phenotypic variability in patients with congenital shunt lesions, where some develop PAH and others do not. If a genetic predisposition for PAH in CHD could be identified, then genetic screening could be a useful additional tool for early detection of patients at risk of pulmonary vascular disease and PAH development, with new opportunities for prevention or early treatment.
Many toddlers and children are released home with relatively low hemoglobin levels following cardiac surgery, and with no careful follow up, at an age at which anemia is common. At this age, breast milk and its substitute do not provide enough iron, and parents are not adherent enough to iron supplements. Due to these facts, there is high importance, especially in children suffering from heart defects, for close follow up on their hemoglobin levels. Studies following hemoglobin trend post cardiac surgery were never done with children.
This study is part of a larger research project known as Swedish Transition Effects Project Supporting Teenagers with chrONic mEdical conditionS (STEPSTONES). This project was created to develop and evaluate transition programs in order to support adolescents with chronic conditions in Sweden. While STEPSTONES has a generic nature, the first transition program that will be evaluated targets adolescents with congenital heart disease (ConHD). This particular study involves a hybrid experimental design, meaning a randomized controlled trial is embedded in a longitudinal, observational study. This type of design will help to test the effectiveness of a transition program in order to empower adolescents with congenital heart disease in the transition to adulthood and check for potential contamination of the comparison group. We will recruit 210 participants: 140 adolescents will be part of the randomized controlled trial (70 in the intervention arm; 70 in the comparison arm), and 70 participants will be assigned to the observational, longitudinal arm of the study, which serves as control group in an intervention-naive center. Over a period of two years, three assessments will be done during which all participants will be asked to answer a set of questionnaires. The intervention to be tested involves patient empowerment, education on their ConHD, dealing with school, health behaviors required to maintain good health, guidance of parents, a person-centered transition plan, among others. The study hypothesis is that adolescents with ConHD who received a structured, person-centered transition program over a 2-year period have a higher patient empowerment score than adolescents who receive usual care.
prospective cardio respiratory evaluation for patients post the Fontan palliation for single ventricle, compared to subjects post successful cardiac repaired surgery compared to healthy volunteers in order to evaluate the functional capacity and the primary etiology for reduction in functional capacity.
Adults with complex congenital heart disease have impaired muscle function compared both to health controls and patients with lesions classified as simple. There is only one study assessing the effects of resistance training in patients palliated with Fontan procedure. The hypotheses of the present study is that home based resistance training will improve muscle function in adults with different complex congenital hear diseases.
Paediatric long-term safety follow-up clinical trial in maximum 100 children with heart failure due to dilated cardiomyopathy or congenital heart disease, from 1 day to less than 12 years of age at recruitment into the preceding short-term pharmacokinetic (PK)/pharmacodynamic (PD) trials. Pharmacodynamic measurements and renal monitoring in all children after 1 , 4, 7 and 10 months of follow-up; in addition PK assessments as well as acceptability and palatability assessments in children still under enalapril Orodispersible Minitablet (ODMT) treatment.
Paediatric clinical trial in 50 children, from newborn to less than 6 years of age, suffering from heart failure due to congenital heart disease, to obtain paediatric pharmacokinetic and pharmacodynamic data of enalapril and its active metabolite enalaprilat while treated for 8 weeks with enalapril in form of Orodispersible Minitablets (ODMTs), to describe the dose exposure in this patient population.
The hypothesis of this study is a nutrition preoperatively in infants and children undergoing elective cardiac surgery with cardiopulmonary bypass leads to improvement in nutritional status, intervention, and that this results in good postoperative results.
Surgery with cardiopulmonary bypass (CPB) for congenital heart disease (CHD) causes low cardiac index (CI). With the increasing success of surgery for CHD, mortality has decreased and emphasis has shifted to post-operative morbidity and recovery. Children with CHD undergoing surgery with CPB can experience well-characterized post-operative cardiac dysfunction. When severe, patients can develop clinically important low cardiac output syndrome (LCOS) and hemodynamic instability. Management of LCOS and hemodynamic compromise is primarily accomplished via intravenous durgs like milrinone, dopamine or dobutamine, which affect the strength of the heart's muscular contractions. These are used to maintain adequate blood pressure (BP) and CI. However, inotropic agents are potentially detrimental to myocardial function and may increase risk for post-operative arrhythmia and impair post-operative recovery by increasing oxygen demand and myocardial oxygen consumption (VO2). In combination with the increased VO2 associated with CPB-induced systemic inflammatory response patients can develop a critical mismatch between oxygen supply and demand, essentially the definition of LCOS. Therefore, therapies that improve CI and hemodynamic stability without increased VO2 are beneficial. This study will test whether BiVp, a specialized yet simple pacing technique, can improve post-operative CI and recovery in infants with electro-mechanical dyssynchrony (EMD) after CHD surgery. This study hypothesizes that Continuous BiVp increases the mean change in CI from baseline to 48 hours in infants with EMD following CHD surgery compared to standard care alone.
Patients with congenital heart disease have long been discouraged from participating in physical exercise which has led to impaired exercise capacity in this population. Since low physical and cardiorespiratory fitness has been shown to be a predictor for hospitalization and mortality in grown-up patients with congenital heart disease (GUCH), aerobic endurance training has been recommended recently to improve exercise capacity. The aim of this study is to compare two types of training, namely high-intensity interval training (HIIT) and moderate-intensity continuous exercise (MICE), with regard to improving exercise capacity without adverse effects on heart structure, function and rhythm in the setting of a 12-week outpatient cardiac rehabilitation (CR) program in GUCH with a remaining pathology involving the right and/or left ventricles. Primary endpoint will be change in exercise capacity (maximal oxygen consumption) over the 12-week CR. Secondary endpoints will be changes of the right or left ventricles as well as vascular function. Patients with GUCH and reduced function of the right ventricle will be recruited and informed about the study within the first two weeks of CR. At the end of week 3 of the CR with supervised MICE, randomization to 9 weeks of twice weekly either HIIT or MICE takes place. MICE training is performed at an intensity of 70-85% of maximum heart rate (HRmax) for 38 min. HIIT consists of four 4 min bouts of high-intensity exercise (90-95% of HRmax), interspersed by 3 min low-intensity intervals (50-60% of HRmax). All patients complete one additional endurance activity per week in their own time with a duration of 30-60 min at moderate intensity monitored by their smart phone. Change in peak oxygen uptake as well as maximal exercise capacity at the end of an incremental cardiopulmonary exercise test will be assessed between week 3 and 12. Vascular function will be assessed at the same time. Volumes and function of the right and left ventricles will be measured by cardiac magnetic resonance imaging (CMR) upon inclusion into the study and at completion of the intervention. Furthermore, laboratory markers for heart failure as well as occurrence of irregular fast heart beats will be assessed.