Do fetal heart rate-based approaches and machine learning models accurately predict intrapartum acidemia?
30 studies evaluating fetuses during labor for the prediction of intrapartum acidemia
Fetal heart rate-based prediction approaches including cardiotocography (CTG), ST event analysis from fetal ECG, and machine learning models
Prediction of intrapartum acidemia
Machine learning models integrating multiple fetal heart rate features show promise for improving the early prediction of intrapartum acidemia compared to standard clinical guidelines.
Fetal acidemia, caused by impaired gas exchange between the fetus and the mother, is a leading cause of stillbirth and neurologic complications. Early prediction is therefore essential to guide timely clinical intervention. Several strategies rely on cardiotocography (CTG), which combines fetal heart rate (fHR) with uterine contractions and has led to development of clinical guidelines for CTG interpretation and the introduction of different fHR features. Additionally, ST event analysis, investigating changes in the ST segments of the fetal electrocardiogram (fECG), has been proposed as a complementary tool. This narrative review adopts a systematic approach, with comprehensive searches in Embase and PubMed to ensure full coverage of the available literature, and summarizes findings from 30 studies. Clinical guidelines for CTG interpretation frequently lead to intermediate risk level annotations, leaving the final decision regarding fetal management to clinical experience. In contrast, various fHR features can successfully discriminate between fetuses developing acidemia and healthy controls. Evidence regarding the added value of ST events derived from the scalp electrode remains conflicting, due to concerns about invasiveness. Recent studies on machine learning models highlight their ability to integrate multiple fHR features and improve predictive performance, suggesting a promising direction for enhancing acidemia prediction during labor.
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Varisco et al. (Tue,) studied this question.
www.synapsesocial.com/papers/69a75b8cc6e9836116a2304e — DOI: https://doi.org/10.3390/bioengineering13020146
Gabriele Varisco
Giulio Steyde
Elisabetta Peri
Bioengineering
SHILAP Revista de lepidopterología
Radboud University Nijmegen
Eindhoven University of Technology
Politecnico di Milano
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