View clinical trials related to Heart Defects, Congenital.
Filter by:This proposal addresses the major challenge of improving health outcomes for children with cancer and other complex conditions, for whom the effectiveness of outpatient care depends on care coordination across a diverse group of caregivers that includes parents, community support organizations and pediatric care providers. The investigators have developed GoalKeeper, a prototype system for supporting care coordination across multiple care providers. The primary aim of the clinical trial is to assess the potential for this new system, GoalKeeper, to improve meaningful use of goal-centered care plans in the care of children with cancer and other complex chronic conditions.
An accepted "gold standard" for hemodynamic monitoring in women with both healthy and diseased hearts is not currently available. Pregnancy is associated with significant hemodynamic changes, both during and following delivery, which can be even more profound in the structurally-abnormal heart. Clinical management of these women is based on surrogate markers of cardiac indices such as peripheral blood pressure, heart rate and oxygen saturation, rather than the use of invasive testing due to its associated complications. Echocardiography has largely replaced PAC in the obstetric population to measure cardiac output due to its non-invasive nature and good correlation with PAC18. However, its use is limited in the intrapartum period due to the need for clinical expertise in obtaining and interpreting the images. The proposed study has the potential to validate bio-reactance cardiac output monitoring using the NICOM against echocardiography for use in structurally normal and abnormal pregnant hearts in order to better drive goal-directed (specifically delivery mode) therapy through continuous hemodynamic monitoring during the second and third stages of labor, and 24 hours postpartum.
The erector spinae plane block is a novel regional anesthetic technique that allows for analgesia of the thorax and abdomen with a peripheral nerve block. The goals of this study are to determine if bilateral erector spinae plane blocks (ESPB) after sternotomy for congenital heart repair in high risk children and adults can decrease outcomes such as duration of postoperative mechanical ventilation (MV), perioperative opioid consumption, days in the intensive care unit (ICU) and length of stay (LOS).
Anorexia nervosa is an eating disorder occurring in adolescent females, characterized by voluntary dietary restriction, intense fear of gaining weight, and disturbed body image perception. Anorexia nervosa is characterized by the potential severity of its prognosis. While complete remission occurs in about 50% of cases, up to 20% of patients will develop a chronic relapsing form that leads to social disintegration. Moreover, anorexia nervosa has the highest mortality rate among psychiatric diseases with a risk of death of up to 10%. 30% of deaths in anorexia nervosa are attributed to cardiac complications remaining insufficiently described, and their screening at a preclinical stage is still poorly codified. Echocardiography findings show reduced left ventricular mass, pericardial effusion or mitral valve prolapse ; in addition, systolic function appears to be preserved whereas a global diastolic dysfunction, estimated with trans-mitral flow and global longitudinal strain. While the interest of cardiac echography has been well established, only one study used MRI as a means of cardiac evaluation in anorexia nervosa: interestingly, local myocardial fibrosis is pointed and could potentially contribute to cardiac rhythm disorders. No study has yet used T1-Mapping MRI to evaluate if diffuse myocardial fibrosis is prevalent in this population group. The investigators conduct a transversal, observational, monocentric study whereby malnourished patients with anorexia nervosa and age- and sex- matched, normal weight, healthy volunteers will undergo a gadolinium-enhanced cardiac MRI. The primary objective of this study is to evaluate and compare the frequency of cardiac fibrosis in those populations. Other cardiac MRI parameters will be described and compared as secondary objectives. Moreover, non-cardiac parameters evaluated by MRI such as adipose tissue distribution in anorexia nervosa patients compared with controls. In addition, patients with anorexia nervosa, a clinical, morphological and biological evaluation, including anthropometric parameters, biphotonic absorptiometry, resting electrocardiogram, cardiac echography and classical biological markers of malnutrition, will be done.
Hypoplastic aortic arch is a congenital heart defect that is prejudicial for the growth of newborns. It is often associated to other heart defects. Different surgical techniques exist to address this defect, but the literature is very poor with regards to the use of an autologous pericardial patch. Most use extensive dissection techniques or synthetic patches. Here investigators report institution's original approach using the newborns own pericardium for what investigators believe to be an optimal correction of the hypoplasia., with preserved growth potential.
Conventional CMR is based on breath-hold 2D cine image acquisitions which are sequentially acquired in different imaging planes. The necessity of precisely planning and then acquiring multiple 2D imaging planes during breath-hold is relatively inefficient and leads to CMR exam times of ≤60 minutes. However, some patients are too ill or young to hold their breath. Furthermore, 2D images sometimes fail to provide a complete picture of complex 3D anatomy of patients with complex morphology. To address these limitations, we have recently developed a 3D cine (3 spatial dimensions plus time) CMR technique. Rather than acquiring 2D cine images in multiple orientations during breath-hold, this approach allows one to acquire a free-breathing 3D block of data for each phase of cardiac cycle that can be reformatted offline into the desired views without adding to the exam time. This added efficiency should lead to a reduction in CMR exam time, increasing patient comfort, and making CMR exam easy and available for all. In addition, the 3D nature of the data may yield more complete information about the anatomy and physiology. In this proposal, we will examine the agreement between the 2D cine and 3D cine CMR techniques with regard to left and right ventricular volumes and systemic and pulmonary blood flow circulation. The internal consistency of the measurements between the 2 techniques will be also investigated. This study will focus on children because they may benefit the most from the short, improved efficiency, and free-breathing CMR exams.
Newborn babies and children with congenital heart defects who need heart surgery need to be placed on the heart-lung machine for heart surgery. In order to use the heart-lung machine, the investigators have to use blood and other fluids to fill the tubing. During the operation, ultrafiltration is carried out as standard of care to remove extra fluid. Modified ultrafiltration is also performed after surgery. In this study, the investigators are looking to use the filter additionally before surgery. Using the pre bypass filtration before the subject is placed on the heart-lung machine will allow the investigators to better normalize electrolytes in the blood/fluid mixture used in the heart lung machine. This technique is called pre-bypass ultrafiltration, or PBUF (pronounced "P" Buff). The investigators are conducting a study to see if using PBUF to better normalize electrolytes in the blood will make a difference. The investigators have been adding fluids to prime the heart-lung machine in two different ways. The investigators believe both methods are safe and acceptable but hypothesize that there may be subtle differences in electrolytes and fluid status when one technique is used as opposed to the other. The investigators believe that neither technique introduces risk since both are currently used in practice. The standard method adds blood to the heart-lung machine. The alternate method adds blood to the heart-lung machine and then additional fluid is added and removed to more normalize the electrolytes. The investigators plan to randomized subjects undergoing heart surgery to receive the standard priming method versus PBUF to determine if there is any difference in outcomes. Laboratory and clinical data collected as part of clinical care will be used to determine difference sin outcomes. There will be no additional blood taken for this study. There are no known risks to PBUF. The benefits include helping investigators determine if PBUF does or does not make a difference to how subjects recover after surgery. The investigators believe that providing more normal blood values will either improve the subjects' outcome or have no benefit. The investigators do not anticipate increased risks. Given COVID -19 restrictions, the study is on hold.
This study looks to develop a multi-scale computational model of Pulmonary Hypertension, this clinical model will be calibrated using longitudinal, retrospectively and prospectively acquired human clinical data.
Patent ductus arteriosus (PDA) is a common problem in the neonatal intensive care unit and can be secondary to prematurity or congenital heart disease (CHD). PDA is the most common cardiovascular abnormality in preterm infants, and is seen in 55% of infants born at 28 weeks, and 1000 grams or less. In addition to producing heart failure and prolonged respiratory distress or ventilator dependence, PDA has been implicated in development of broncho-pulmonary dysplasia, interventricular hemorrhage, cerebral ischemia, and necrotizing enterocolitis (NEC). In an Israeli population study 5.6% of all very low birth weight infants (VLBW) were diagnosed with NEC, and 9.4% of VLBW infants with PDA were found to have NEC. In a retrospective analysis of neonates with CHD exposed to Prostaglandin E found that the odds of developing NEC increased in infants with single ventricle physiology, especially hypoplastic left heart syndrome. The proposed pathophysiological explanation of NEC and PDA is a result of "diastolic steal" where blood flows in reverse from the mesenteric arteries back into the aorta leading to compromised diastolic blood flow and intestinal hypo-perfusion. Prior studies have demonstrated that infants with a hemodynamically significant PDA have decreased diastolic flow velocity of the mesenteric and renal arteries when measured by Doppler ultrasound, and an attenuated intestinal blood flow response to feedings in the post prandial period compared to infants without PDA. Near Infrared Spectroscopy (NIRS) has also been used to assess regional oxygen saturations (rSO2) in tissues such as the brain, kidney and mesentery in premature infants with PDA. These studies demonstrated lower baseline oxygenation of these tissues in infants with hemodynamically significant PDA. These prior NIRS studies evaluated babies with a median gestational age at the time of study of 10 days or less. It is unknown if this alteration in saturations will persist in extubated neonates with PDA at 12 or more days of life on full enteral feedings. In the present study the investigators hypothesize that infants with a PDA, whether secondary to prematurity or ductal dependent CHD, will have decreased splanchnic and renal perfusion and rSO2 renal/splanchnic measurements will be decreased during times of increased metabolic demand such as enteral gavage feeding. To test this hypothesis the investigators have designed a prospective observational study utilizing NIRS to record regional saturations at baseline, during feedings, and after feedings for 48 hours.
We will test an ultrasound device that uses sound waves to detect the fetal heart beat, and use this device to tell the MRI scanner when to collect pictures of the fetal heart. This will help freeze motion of the fetal heart, to make MRI pictures sharper. This will be important for assessing human fetal heart disease, an active area of research at our institution.