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Three-dimensional magnetic resonance imaging of fetal head molding and brain shape changes during the second stage of labor

机译:分娩第二阶段胎儿头部造型和脑部形状变化的三维磁共振成像

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摘要

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 infants of all seven patients studied during the second phase of labor compared with the images acquired before birth. The cranial deformation, however, was no longer observed after birth in five out of the seven newborns, whose post-natal cranial parameters were identical to those measured before delivery. The changing shape of the fetal brain following the molding process and constraints on the brain tissue were observed in all the fetuses. Of the three fetuses presenting the greatest molding of the skull bones and brain shape deformation, two were delivered by cesarean-section (one after a forceps failure and one for engagement default), while the fetus presenting with the greatest skull molding and brain shape deformation was born physiologically. This study demonstrates the value of 3D MRI study with 3D finite element mesh reconstruction during the second stage of labor to reveal how the fetal brain is impacted by the molding of the cranial bones. Fetal head molding was systematically observed when the fetal head was engaged between the superior pelvic strait and the middle brim.
机译:为了演示和描述分娩过程中胎儿头部的模制和大脑形状的变化,我们使用了三维(3D)磁共振成像(MRI)和3D有限元网格重建技术,比较了分娩前和分娩第二阶段之间的胎儿头部。总共27名孕妇在进行分娩之前使用1 Tesla开场MRI进行了3D MRI序列检查。其中有七名患者随后在第二个分娩阶段接受了另一组3D MRI序列。将2D图像的体积转换为有限元3D重建。胎儿身体各部分的多边形网格用于研究胎儿头部的模制和大脑形状的变化。与分娩前获取的图像相比,在第二产程中研究的所有七名患者的婴儿中,胎儿头部成型的程度各不相同。但是,在出生后的七个新生儿中,有五个已经不再观察到颅骨变形,其出生后颅骨参数与分娩前测得的相同。在所有胎儿中,观察到了成型后胎儿大脑的形状变化以及对脑组织的约束。在表现出最大的颅骨塑形和脑部形状变形的三只胎儿中,有两人通过剖宫产术分娩(一只在失败的钳子上发生畸形,而另一例发生了默认的接合),而表现出最大的颅骨塑形和脑部形状变形的胎儿是剖宫产。是生理上出生的这项研究证明了在分娩的第二阶段进行3D有限元网格重建的3D MRI研究的价值,以揭示胎儿大脑如何受到颅骨成型的影响。当胎儿头被固定在上骨盆海峡和中缘之间时,系统地观察到了胎儿头的模制。

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