3D-computed tomography: a new method for the evaluation of fetal cranial morphology.

K Neumann, A Moegelin, M Temminghoff, R J Radlanski, A Langford, M Unger, R Langer, J Bier
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Abstract

This study is the first presentation of three-dimensional computed tomography (3D-CT) for the in vitro evaluation of the prenatal human cranium. The study was based on CT examinations from 26 aborted normal fetuses between 10 and 25 weeks gestational age. Incremental coronal and transverse CT slices of 1 mm thickness and a threshold segmentation algorithm were used to generate 3D-CT reconstructions (surface-shaded display, SSD) of the cranial bones similar to their anatomical appearance. The threshold of the segmentation algorithm was selected after comparison of the 3D-CT images generated with varying thresholds and graphically reconstructed histological serial sections of particular sutures in five specimens. The variation of the segmentation threshold resulted in alterations of the bone sizes and suture widths. However, 3D-CT images allowed sensitive identification of the cranial ossification centers and accurate evaluation of the bone topography. Cutting and rotating procedures made it possible to evaluate all imaged bones in arbitrary views without disturbing superpositions, thus making isolated examinations of particular macroscopic sections of the specimens unnecessary. In conclusion, 3D-CT of the fetal cranium promises to be of considerable help in the evaluation of prenatal cranial development.

三维计算机断层扫描:一种评估胎儿颅骨形态的新方法。
这项研究是首次提出三维计算机断层扫描(3D-CT)体外评估产前人类颅骨。这项研究是基于对26例胎龄在10到25周之间的正常流产胎儿的CT检查。采用1 mm厚度的增量冠状面和横切面CT切片和阈值分割算法生成与颅骨解剖外观相似的3D-CT重建(表面阴影显示,SSD)。将不同阈值生成的3D-CT图像与5个标本特定缝合线的图形化重建的组织学序列切片进行比较,选择分割算法的阈值。分割阈值的变化导致骨大小和缝合宽度的改变。然而,3D-CT图像可以灵敏地识别颅骨骨化中心并准确评估骨地形。切割和旋转程序使得在不干扰叠加的情况下评估任意视图的所有骨骼成像成为可能,因此无需对标本的特定宏观部分进行单独检查。总之,胎儿颅骨的3D-CT有望在评估产前颅骨发育方面提供相当大的帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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