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Evaluation of embryonic posture using four‐dimensional ultrasound and virtual reality
Author(s) -
Frudiger Anne,
Mulders Annemarie G. M. G. J.,
Rousian Melek,
Plasschaert Sophie C. N.,
Koning Anton H. J.,
Willemsen Sten P.,
SteegersTheunissen Regine P. M.,
Vries Johanna I. P.,
Steegers Eric A. P.
Publication year - 2021
Publication title -
journal of obstetrics and gynaecology research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.597
H-Index - 50
eISSN - 1447-0756
pISSN - 1341-8076
DOI - 10.1111/jog.14554
Subject(s) - medicine , ultrasound , prospective cohort study , 3d ultrasound , pregnancy , reproducibility , gestational age , obstetrics , anatomy , surgery , radiology , statistics , mathematics , biology , genetics
Abstract Aim To assess the possibility of embryonic posture evaluation (=feasibility, reproducibility, variation) at rest at 9 weeks' (+0–6 days) gestational age (GA) using four‐dimensional ultrasound and virtual reality (VR) techniques. Moreover, it is hypothesized that embryonic posture shows variation at the same time point in an uneventful pregnancy. Methods In this explorative prospective cohort study, 23 pregnant women were recruited from the Rotterdam periconceptional cohort. A transvaginal four‐dimensional ultrasound examination of 30 min per pregnancy was performed between 9 and 10 weeks' GA. The acquired datasets were offline evaluated longitudinally (i.e. per frame) using VR techniques. Results The ultrasound data of 16 (70%) out of 23 pregnancies were eligible for evaluation. At rest the analysis of the embryonic posture was feasible and showed a strong (>80%) intraobserver and interobserver reproducibility for most body parts. The majority of the body parts were in similar anatomic positions at rest. However, variations in anatomic positions (e.g. 6% rotated head, 9% laterally bent spine), within and between embryos, were seen at 9 weeks' GA. Conclusion In this unique study, we showed for the first time that embryonic posture measurements at rest can be performed in a reliable way using state‐of‐the‐art four‐dimensional ultrasound and VR techniques. Already early in prenatal life there are differences regarding posture within and between embryos.