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January 1, 2005Prenatal Diagnosis33 citations

Prenatal diagnosis of a long QT syndrome by fetal magnetocardiography in an unshielded bedside environment

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USUwe SchneiderJHJens HaueisenMLMarkus Loeff

Structured PICO

Can bedside fetal magnetocardiography accurately diagnose long QT syndrome in a fetus at risk?

P
Population
1 pregnant patient at 30 weeks gestation with a family history of hereditary long QT syndrome presenting with fetal bradycardia and narrow oscillation bandwidth on cardiotocography without structural abnormalities of the fetal heart.
I
Intervention
Fetal magnetocardiography using a prototype biomagnetometer/gradiometer device in a magnetically unshielded bedside environment.
O
Outcome
Measurement of cardiac time intervals (QT time and frequency-corrected QTc) to diagnose long QT syndrome.surrogate

Bedside fetal magnetocardiography in an unshielded environment can successfully diagnose fetal long QT syndrome, enabling appropriate perinatal care and surveillance.

Abstract

OBJECTIVE: The potentially life threatening long QT syndrome should be diagnosed during pregnancy to improve perinatal care. METHODS: A patient with a family history for a hereditary long QT syndrome presented at 30 weeks of her first pregnancy with fetal bradycardia and a narrow oscillation bandwidth on cardiotocography without structural abnormalities of the fetal heart. Fetal magnetocardiography was performed with a prototype biomagnetometer/gradiometer device in a magnetically unshielded environment. The cardiac time intervals were determined in the averaged PQRST complex. RESULTS: The QT time and the frequency-corrected QTc showed a marked prolongation to 380 ms and 0.52 s, respectively. The findings were confirmed in the postnatal electrocardiogram after spontaneous term delivery in a perinatal center. The causative mutation on chromosome 11 had been passed on to the newborn from his mother. CONCLUSION: Bedside fetal magnetocardiography revealed the exact diagnosis of the long QT syndrome in a period of the gestation when the fetus was electrically isolated by the vernix caseosa that hinders electrocardiography. To patients at risk of fetal cardiac abnormalities, magnetocardiography can be offered as a non-invasive diagnostic bedside procedure. The diagnosis should trigger closer surveillance and delivery in a perinatal center.

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Cite This Study

Schneider et al. (2005) studied this question.

synapsesocial.com/papers/6a711371e71d69abee0906e9https://doi.org/10.1002/pd.1205
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Prenatal diagnosis of long QT syndrome using magnetocardiography: a case report and review of the literature2002 · 46 citations
  2. 2In Utero Diagnosis of Long QT Syndrome by Magnetocardiography2013 · 115 citations
  3. 3Prenatal diagnosis of long QT syndrome using fetal magnetocardiography1999 · 101 citations
  4. 4Prenatal Diagnosis of QT Prolongation by Magnetocardiography2000 · 66 citations
  5. 5Prenatal diagnosis of long QT syndrome by non‐invasive fetal electrocardiography2009 · 19 citations