Background: Childbirth is a physiological process with significant medical risk, given that neurological impairment due to the birthing process can occur at any time. Improvements in risk assessment and anticipatory interventions are constantly needed; however, the birthing process is difficult to assess using simple imaging technology because the maternal bony pelvis and fetal skeleton interfere with visualizing the soft tissues. Magnetic resonance imaging (MRI) is a noninvasive technique with no ionizing radiation that can monitor the biomechanics of the birthing process. However, the effective use of this modality requires teamwork and the implementation of the appropriate safeguards to achieve appropriate safety levels.
Objective: This study describes a clinically effective and safe method to perform real-time MRI during the birthing process. We reported the experience of our team as part of the IMAGINAITRE study protocol (France), which aimed to better understand the biomechanics of childbirth.
Methods: A total of 27 pregnant women were examined with 3D MRI sequences before going into labor using a 1-Tesla open-field MRI. Of these 27 patients, 7 (26%) subsequently had another set of 3D MRI sequences during the second stage of labor. Volumes of 2D images were transformed into finite element 3D reconstructions. Polygonal meshes for each part of the fetal body were used to study fetal head moldability and brain compression.
Results: All 7 observed babies showed a sugarloaf skull deformity and brain compression at the middle strait. The fetus showing the greatest degree of molding and brain shape deformation weighed 4525 g and was born spontaneously but also presented with a low Apgar score. In this case, observable brain shape deformation demonstrated that brain compression had occurred, and it was not necessarily well tolerated by the fetus. Depending on fetal head moldability, these observations suggest that cephalopelvic disproportion can result in either obstructed labor or major fetal head molding with brain compression.
Conclusions: This study suggests the presence of skull moldability as a confounding factor explaining why MRI, even with the best precision to measure radiological landmarks, fails to accurately predict the modality of childbirth. This introduces the fetal head compliance criterion as a way to better understand cephalopelvic disproportion mechanisms in obstetrics. MRI might be the best imaging technology by which to explore all combined aspects of cephalopelvic disproportion and achieve a better understanding of the underlying mechanisms of fetal head molding and moldability.
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http://dx.doi.org/10.2196/27421 | DOI Listing |
Dev Sci
March 2025
Manibus Lab, Department of Psychology, University of Turin, Turin, Italy.
Previous research indicates that both adults and newborns show enhanced electrophysiological and behavioral responses to schematic face-like configurations (FCs-three dots composing a downward-pointing triangle), as compared to the inverted configurations (ICs). Even fetuses, when exposed to light stimuli projected through the uterine wall, preferentially orient their heads toward FCs rather than ICs. However, when this effect emerges along the third trimester of pregnancy and in relation to the maturation of which brain structures is still unknown.
View Article and Find Full Text PDFJ Matern Fetal Neonatal Med
December 2025
2nd Department of Gynecology and Obstetrics, University Hospital Bratislava and Comenius University, Bratislava, Slovakia.
Purpose: The main objective of this study was to assess the impact of a composite quality improvement intervention on mode of birth in nullipara term singleton vertex (NTSVs).
Material And Methods: This was an ambidirectional study following the implementation of the intervention to reduce cesarean section rate in NSTV by comparing two birth cohorts, pre-composite quality improvement intervention cohort (January 2013-December 2015) and post-composite quality improvement intervention cohort (January 2018-December 2020).
Results: In the studied periods, there was a total of 7713 NTSV births.
Mol Biol Res Commun
January 2025
Department of Medical Genetics, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.
Front Cell Infect Microbiol
January 2025
Biomedical Research Center, Qatar University, Doha, Qatar.
Case Rep Med
December 2024
Operative Unit of Neonatology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy.
Congenital arhinia and hyporhinia are rare facial anomalies whose knowledge usually comes from case reports. The severity of each case described in literature is variable; it also depends on associated malformations too. Since the newborns are obligate nasal breathers, babies with arhinia or hyporhinia usually have respiratory distress and need airway stabilization.
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