BackgroundCardiovascular magnetic resonance (CMR) is increasingly used to diagnose myocarditis in adults but its use in children is not well-established. We sought to describe the presentation, CMR protocol and findings, and outcomes in a multicenter cohort of children with myocarditis.MethodsThirteen hospitals retrospectively identified patients meeting the following inclusion criteria: 1) diagnosis of myocarditis by the managing physicians, 2) age <21 years, 3) CMR examination within 30 days of presentation, and 4) no congenital heart disease. Clinical data and test results, including CMR findings, were abstracted from the medical record.ResultsFor the 143 patients meeting inclusion criteria, the median age was 16.0 years (range, 0.1-20.3) and 139 (97 %) were hospitalized at the time of CMR. The median time from presentation to CMR was 2 days (0-28). The median left ventricular ejection fraction at CMR was 56 % (10-74), with 29 (20 %) below 45 %. The median right ventricular ejection fraction was 54 % (15-72), with 11 (8 %) below 40 %. There was significant variability among centers in the types of tissue characterization techniques employed (p < 0.001). Overall, late gadolinium enhancement (LGE) was used in 100 % of studies, followed by T2-weighted imaging (T2W) in 69 %, first-pass contrast perfusion (FPP) in 48 %, and early gadolinium enhancement (EGE) in 28 %. Abnormalities were most common with LGE (81 %), followed by T2W (74 %), EGE (55 %), and FPP (8 %). The CMR study was interpreted as positive for myocarditis in 117 patients (82 %), negative in 18 (13 %), and equivocal in 7 (5 %), yielding a sensitivity of 82 %. At a median follow-up of 7.1 months (0-87), all patients were alive and 5 had undergone cardiac transplantation. CMR parameters at presentation associated with persistent left ventricular dysfunction were larger left ventricular end-diastolic volume and lower left and right ventricular ejection fraction but not abnormal LGE.ConclusionsDespite significant practice variation in imaging protocol among centers, CMR had a high sensitivity for the diagnosis of myocarditis in pediatric patients. Abnormalities were most often seen with LGE followed by T2W, EGE, and FPP. These findings should be useful in designing future prospective studies.
The primary objective of this study was to describe the impact of 22q11.2 deletion (del22q11) on the clinical characteristics, postoperative course, and short-term outcomes of children undergoing surgery for congenital heart disease. The charts of all children ages 1 day-18 years who received cardiac surgery for interrupted aortic arch (IAA), tetralogy of Fallot (TOF), or truncus arteriosus (TA) repair from 1 January 2001 to 31 December 2011 were retrospectively reviewed. The patients were divided into two groups: the 22q11 group including children with del22q11 undergoing surgery for TOF, IAA, or TA and the non-22q11 or control group including children with no chromosomal or genetic abnormality undergoing surgery for TOF, IAA, or TA. Demographic information, cardiac diagnoses, noncardiac abnormalities, preoperative factors, intraoperative details, surgical procedures performed, postoperative complications, and in-hospital deaths were collected. The outcome data collected included days of inotrope use, need for dialysis, length of mechanical ventilation, intensive care unit (ICU) length of stay (LOS), hospital LOS, and mortality. The study enrolled 173 patients: 65 patients in the 22q11 group and 108 patients in the control group. Of the 65 patients in the 22q11 group, 36 (55 %) underwent repair for TOF, 13 (20 %) for IAA, and 16 (25 %) for TA. The two groups did not differ in terms of age or weight. The preexisting conditions were similar in the two groups. Unplanned noncardiac operations were more common in the children with del22q11, but delayed chest closure was similar in the two groups. The incidence of postoperative noncardiac complications such as reintubation, vocal cord paralysis, and diaphragmatic paralysis was similar in the two groups. However, increasing numbers of patients in del22q11 group needed dialysis in one form or the other during the immediate postoperative stay. The incidence of fungal infection and wound infection was higher in the del22q11 group than in the control group. Duration of mechanical ventilation, ICU LOS, and hospital LOS were similar in the two groups, except in certain subgroups. Mortality did not differ significantly between the two groups. In conclusion, children with del22q11 have a higher risk of postoperative complications after cardiac surgery, with no difference in length of mechanical ventilation, ICU LOS, hospital LOS, or mortality. However, short-term outcomes may differ in certain subgroups.
We reported up-to-date national estimates of the prevalence of CM, which is important for monitoring trends, determining service planning, and assessing disease burden because of congenital malformations in the United States of America. We also showed a strong association between CM and prematurity. Further study of this association is needed to provide insight into the etiology of these relatively common public health problems.
Current estimates of the incidence of congenital heart disease (CHD) are derived from small clinical studies and metaanalyses. For the true incidence of CHD in the United States of America to be estimated, a single large representative population must be analyzed. All the data in this study were derived from the Nationwide Inpatient Sample database. The study determined the overall and lesion-specific incidences of CHD diagnoses among all birth hospitalizations in 2008, stratified by race, gender, socioeconomic status, and hospital geographic location. The study identified 13,093 CHD diagnoses among 1,204,887 birth hospitalizations, yielding an incidence of 10.8 per 1,000, with a predominance of mild lesions and septal defects. Atrial septal defect (ASD) and pulmonic stenosis were more common among females, whereas aortic stenosis, coarctation of the aorta, hypoplastic left heart syndrome, and d-transposition of great arteries were more common among males. No racial difference was observed in the overall CHD incidence. However, isolated patent ductus arteriosus (PDA) and ventricular septal defects (VSDs) were more common among Caucasians, whereas ASDs were more common among Hispanics. The incidences of CHD diagnoses were similar for all socioeconomic classes except the lowest socioeconomic class, which had a significantly lower CHD incidence. There was no geographic or seasonal variation in CHD incidence. This study demonstrated the incidence of echocardiographically confirmed CHD diagnosis to be 10.8 per 1,000 live births, marked by a high proportion of mild cardiac lesions and isolated PDAs. The high incidence of isolated PDAs in this study may be explained by the inclusion of only CHD diagnoses during birth hospitalization.
Although the epidemiology of congenital heart disease (CHD) has been described, the authors believe changes in prenatal factors such as termination of pregnancy for fetal anomaly and prenatal vitamin supplementation have altered the birth prevalence of severe CHD. This population-based study reviewed the Nationwide Inpatient Sample (NIS) database and identified all cases with a severe CHD diagnosis among all live birth entries from 1999 to 2008. A time trend analysis then was performed for specific severe CHD diagnoses stratified by race, socioeconomic status, and geographic location. Overall, severe CHD prevalence was 147.4 per 100,000 live births, with a temporal decrease in prevalence from 168.9 per 100,000 in 1999 to 129.3 per 100,000 in 2008 (p = 0.03). Among the 12 severe CHD diagnoses included in our cohort, the prevalence of truncus arteriosus (p = 0.02), tetralogy of Fallot (p = 0.001), hypoplastic left heart syndrome (p = 0.001), and pulmonary atresia (p = 0.01) decreased significantly during the study period. The observed prevalence trends varied significantly by race (Caucasians), socioeconomic class (upper income quartiles), and geographic location (Northeast and West regions). The study findings showed a temporal decrease in severe CHD prevalence, which varied by race, socioeconomic status, and geographic location. The authors speculated that the observed trend might be due to increased termination of fetuses with prenatally diagnosed CHD. The impact of sociodemographic variables on the observed prevalence trend might be due to differences in access to specialized perinatal care and fetal heart programs or because of variability in termination of pregnancy.
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