Fetal growth velocity and body proportion in the assessment of growth

Liran Hiersch1, Nir Melamed2

  • 1Department of Obstetrics and Gynecology, Lis Hospital for Women, Tel Aviv Sourasky Medical Center and Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel.

Insights

Improving fetal growth restriction detection is crucial for better perinatal outcomes. Serial ultrasounds show promise in high-risk pregnancies, while body proportion ratios may aid in specific cases.

Area of Science:

  • Obstetrics and Gynecology
  • Fetal Medicine
  • Diagnostic Imaging

Background:

  • Fetal growth restriction (FGR) is linked to increased perinatal mortality and morbidity.
  • Current sonographic fetal weight estimation (<10th percentile) has limited accuracy, with both under-detection and false positives.
  • Accurate antenatal detection of FGR is vital for improving clinical outcomes.

Purpose of the Study:

  • To review strategies for improving the diagnostic accuracy of sonographic fetal biometry for FGR.
  • To evaluate the potential of serial ultrasound assessments and fetal body proportion ratios.

Main Methods:

  • Review of two strategies: 1) serial ultrasound evaluations using methods like growth velocity and individualized assessment, and 2) fetal body proportion ratios (e.g., HC/AC, TCD/AC, FL/AC).
  • Analysis of the diagnostic accuracy and clinical utility of these sonographic approaches for detecting FGR.

Main Results:

  • Serial ultrasound evaluations show promise in high-risk pregnancies, improving FGR detection and reducing false positives.
  • Fetal body proportion ratios have low predictive accuracy for clinical practice but may assist in specific scenarios like inadequate dating or early detection.

Conclusions:

  • Serial ultrasound assessments appear to be a promising strategy for enhancing FGR detection, particularly in high-risk pregnancies.
  • Fetal body proportion ratios have limited utility but may play a role in specific FGR detection scenarios.
  • Further research is needed to optimize serial ultrasound protocols and determine their utility in low-risk pregnancies.

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