View clinical trials related to Heart Defects, Congenital.
Filter by:Previous studies have examined the usefulness of pulse oximetry or oxygen saturation to screen for left-sided cardiac lesions. These studies have shown that the occurrence of critical congenital cardiac malformations among asymptomatic newborns is high; the technique of pulse oximetry is reliable for detection of ductal dependant left-sided lesions, simple to operate(requires little time and can be done in the newborn nursery) and is cost effective; there is effective follow-up test (heart ultrasound) and available interventions have an effect on outcome for diagnosed newborns. The importance of this research project is to examine the overall helpfulness of measuring oximetry in newborn infants using somatic oximetry, as well ast to prepare for a population based study in the state of Florida.
This project will evaluate fluid balance and oedema formation in children with the same congenital heart disease (Atrial Septal Defect) who will either go through heart surgery with the use of Cardio Pulmonary Bypass and hypothermia or through interventional catheterization. The investigators will measure interstitial colloid osmotic pressure, distribution of proteins and cytokines. The study hypothesis is that "Oedema developed during heart surgery is caused by reduced colloid osmotic pressure gradient through the capillary membrane".
The purpose of this study is to evaluate the impact of implementing a universal pulse oximeter screening as a way to detect critical congenital heart disease in otherwise well-appearing newborns.
In 2012, infants having surgery for congenital heart disease have a high survival. The investigators are now focused on improving how sick these infants become after surgery (short term outcomes) and their later neurodevelopment (long term outcomes). During heart surgery, cardiopulmonary bypass (CPB; the heart-lung machine) takes over heart function while the surgeon repairs the heart disease. During this surgery there are periods of time when the amount of blood going to the heart and brain is lower than usual, called "ischemia". Once the surgery is finished the blood going to the heart and brain is increased to normal again, called "reperfusion". This ischemia-reperfusion can cause injury to the heart, brain, and other organs, affecting the short and long term outcomes in these infants. Adult studies have shown that a short time of ischemia to the legs for 5-10 minutes [the legs are not damaged by a short time of ischemia, unlike the heart or brain], before severe ischemia to another distant vulnerable vital organ [like the heart or brain], can protect this other vital organ from ischemia-reperfusion injury. This is called "remote ischemic preconditioning" (RIPC). Our objective is to test whether RIPC before heart surgery can improve the recovery of the heart and brain after heart surgery in newborn babies with congenital heart disease. The investigators will test whether RIPC will result in lower peak lactate and troponin levels on the day after heart surgery. Lactate levels are a marker for how much the different tissues of the body suffer from ischemia-reperfusion injury. Troponin is released from damaged heart during ischemia-reperfusion. In our trial infants will be randomized to RIPC or control. This means each baby has an equal chance of being in one group or the other. The intervention group will have RIPC before surgery; the "control group" will not. The investigators hope this trial will lead to a larger study to test if RIPC results in fewer days on a breathing machine after surgery, lower mortality, and higher scores on neurodevelopmental tests at 2 years of age.
The purpose of this study is to discern whether supplementation of Antithrombin III will decrease coagulation and inflammation associated with cardiopulmonary bypass in infants undergoing cardiac surgery.
The purpose of this study is to determine the average risk for thyroid irradiation for any type of paediatric cardiac catheterization, based on the cummulative at-risk dose of 100 mSv, adjusted to the measured thyroid volume and to the patient's age.
Congenital heart disease with need for early surgery in newborns is associated with an increased incidence in global impairment in development. The causes of these late adverse neurologic outcomes are multifactoral and include both fixed (or patient-specific factors) and modifiable factors. They relate to both the mechanism of central nervous system injury associated with congenital heart disease and its treatment. Measuring cerebral oxygenation is a promising non-invasive way of cerebral monitoring in a neonatal intensive care unit. The importance of cerebral monitoring in neonates with congenital heart problems at risk of developing neurological complications is increasingly recognized. In this way the most vulnerable moments for the newborn brain can be detected and ,if possible, lead to change in (timing of) treatment.
Turner syndrome is a congenital complete or partial lack one of the female sex chromosomes affecting 1 of 2000 live born girls. The syndrome is characterized by an increased prevalence of ischemic heart disease, aortic dilation and dissection, hypertension, stroke and autoimmune diseases in general. Our study aim is: - Using MRI to further characterize and find risk factors leading to aortic dilation. - Using MRI to assess the degree of aortic distensibility. - Using Computed tomography x-ray scanning of the heart and coronary arteries to characterize the prevalence and degree of ischemic heart disease and coronary anomalies. - Using pressure sensitive ultrasound (applanation tonometry) to assess the degree of aortic stiffness when compared to controls using end points as Pulse Wave Velocity, Augmentation Index and Central Pulse Pressure.
Adults with congenital heart disease have various degrees of impaired exercise capacity compared to healthy controls. Impaired exercise capacity makes everyday activities more difficult and demanding. There are few studies on effect of exercise training in adults with congenital heart disease. The hypothesis of this study is that structured home based exercise training will improve exercise capacity and health status in the studied population.
The objective of this study is to investigate the effect of parental peri-natal environmental risk factors and genetic factors on the development of Congenital Heart Disease (CHD). Our hypothesis is that the distributions of some environmental and genetic risk factors significantly differ between neonates with and without CHD.