To demonstrate and describe fetal head molding and brain shape changes during delivery, we used three-dimensional (3D) magnetic resonance imaging (MRI) and 3D finite element mesh reconstructions to compare the fetal head between prelabor and the second stage of labor. A total of 27 pregnant women were examined with 3D MRI sequences before going into labor using a 1 Tesla open field MRI. Seven of these patients 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 molding and brain shape changes. Varying degrees of fetal head molding were present in the infan...
This chapter provides a review of the current research into in utero magnetic resonance (MR) imaging...
AbstractObjectiveTo provide sectional anatomic data for the precise localization of developmental ma...
International audienceThis chapter provides a review of the current research into in utero magnetic ...
To demonstrate and describe fetal head molding and brain shape changes during delivery, we used thre...
Three-dimensional fetal brain MRI reconstruction before labor (shown in purple in A, C, E) and durin...
Three-dimensional finite element reconstruction of the cranial bones before labor (A, C, E) and duri...
(a) Axial MRI before entering labor. Finite element splines of the occipital bone (red) and frontal ...
Fetal skull molding is important for the adaptation of the head to the birth canal during vaginal de...
(a) No fetal head molding was observed before labor. The maternal coccyx was concave anteriorly, and...
Seven human fetuses of crown/rump length corresponding to gestational ages ranging from the 12th to ...
3D printing is a new manufacturing technology that produces high-fidelity models of complex structur...
Fetal head moulding is a phenomenon which may contribute to satisfactory progress during delivery as...
During vaginal delivery, the fetal head molds into an elongated shape to adapt to the birth canal, a...
Background To accommodate passage through the birth canal, the fetal skull is compressed and reshape...
Fetal head molding is the change in head shape due to the forces of labor. Previous investigations o...
This chapter provides a review of the current research into in utero magnetic resonance (MR) imaging...
AbstractObjectiveTo provide sectional anatomic data for the precise localization of developmental ma...
International audienceThis chapter provides a review of the current research into in utero magnetic ...
To demonstrate and describe fetal head molding and brain shape changes during delivery, we used thre...
Three-dimensional fetal brain MRI reconstruction before labor (shown in purple in A, C, E) and durin...
Three-dimensional finite element reconstruction of the cranial bones before labor (A, C, E) and duri...
(a) Axial MRI before entering labor. Finite element splines of the occipital bone (red) and frontal ...
Fetal skull molding is important for the adaptation of the head to the birth canal during vaginal de...
(a) No fetal head molding was observed before labor. The maternal coccyx was concave anteriorly, and...
Seven human fetuses of crown/rump length corresponding to gestational ages ranging from the 12th to ...
3D printing is a new manufacturing technology that produces high-fidelity models of complex structur...
Fetal head moulding is a phenomenon which may contribute to satisfactory progress during delivery as...
During vaginal delivery, the fetal head molds into an elongated shape to adapt to the birth canal, a...
Background To accommodate passage through the birth canal, the fetal skull is compressed and reshape...
Fetal head molding is the change in head shape due to the forces of labor. Previous investigations o...
This chapter provides a review of the current research into in utero magnetic resonance (MR) imaging...
AbstractObjectiveTo provide sectional anatomic data for the precise localization of developmental ma...
International audienceThis chapter provides a review of the current research into in utero magnetic ...