Key result
Fetal magnetocardiography accurately identified long QT syndrome in utero with 89% sensitivity and 89% specificity using a corrected QT threshold of 490 ms.
Why the study?
Does fetal magnetocardiography accurately diagnose long QT syndrome in fetuses at risk?
Observational (n=30)
Does fetal magnetocardiography accurately diagnose long QT syndrome in fetuses at risk?
Fetal magnetocardiography can accurately identify long QT syndrome in utero using a corrected QT threshold of ≥490 ms, and extreme prolongation predicts Torsade de Pointes.
May support noninvasive prenatal LQTS screening in high-risk cases; leaves open prospective validation before clinical adoption.
BACKGROUND: The electrophysiology of long QT syndrome (LQTS) in utero is virtually unstudied. Our goal here was to evaluate the efficacy of fetal magnetocardiography (fMCG) for diagnosis and prognosis of fetuses at risk of LQTS. METHODS AND RESULTS: We reviewed the pre/postnatal medical records of 30 fetuses referred for fMCG because of a family history of LQTS (n=17); neonatal/childhood sudden cardiac death (n=3), or presentation of prenatal LQTS rhythms (n=12): 2° atrioventricular block, ventricular tachycardia, heart rate < 3(rd) percentile. We evaluated heart rate and reactivity, cardiac time intervals, T-wave characteristics, and initiation/termination of Torsade de Pointes, and compared these with neonatal ECG findings. After birth, subjects were tested for LQTS mutations. Based on accepted clinical criteria, 21 subjects (70%; 9 KCNQ1, 5 KCNH2, 2 SCN5A, 2 other, 3 untested) had LQTS. Using a threshold of corrected QT= 490 ms, fMCG accurately identified LQTS fetuses with 89% (24/27) sensitivity and 89% (8/9) specificity in 36 sessions. Four fetuses (2 KCNH2 and 2 SCN5A), all with corrected QT ≥ 620 ms, had frequent episodes of Torsade de Pointes, which were present 22-79% of the time. Although some episodes initiated with a long-short sequence, most initiations showed QRS aberrancy and a notable lack of pause dependency. T-wave alternans was strongly associated with severe LQTS phenotype. CONCLUSIONS: Corrected QT prolongation (≥490 ms) assessed by fMCG accurately identified LQTS in utero; extreme corrected QT prolongation (≥620 ms) predicted Torsade de Pointes. FMCG can play a critical role in the diagnosis and management of fetuses at risk of LQTS.
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Cuneo et al. (2013) conducted an observational in Long QT Syndrome (LQTS) (n=30). Fetal magnetocardiography (fMCG) was evaluated on Identification of LQTS fetuses. Fetal magnetocardiography accurately identified long QT syndrome in utero with 89% sensitivity and 89% specificity using a corrected QT threshold of 490 ms.
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