Institut TELECOM, Télécom ParisTech, CNRS UMR 5141 LTCI, 46, rue Barrault, 75634 Paris Cedex 13, France.
Int J Comput Assist Radiol Surg. 2010 Jan;5(1):49-56. doi: 10.1007/s11548-009-0381-3. Epub 2009 Jul 18.
Numerical simulations studying the interactions between radiations and biological tissues require the use of three-dimensional models of the human anatomy at various ages and in various positions. Several detailed and flexible models exist for adults and children and have been extensively used for dosimetry. On the other hand, progress of simulation studies focusing on pregnant women and the fetus have been limited by the fact that only a small number of models exist with rather coarse anatomical details and a poor representation of the anatomical variability of the fetus shape and its position over the entire gestation.
In this paper, we propose a new computational framework to generate 3D hybrid models of pregnant women, composed of fetus shapes segmented from medical images and a generic maternal body envelope representing a synthetic woman scaled to the dimension of the uterus. The computational framework includes the following tasks: image segmentation, contour regularization, mesh-based surface reconstruction, and model integration.
A series of models was created to represent pregnant women at different gestational stages and with the fetus in different positions, all including detailed tissues of the fetus and the utero-fetal unit, which play an important role in dosimetry. These models were anatomically validated by clinical obstetricians and radiologists who verified the accuracy and representativeness of the anatomical details, and the positioning of the fetus inside the maternal body.
The computational framework enables the creation of detailed, realistic, and representative fetus models from medical images, directly exploitable for dosimetry simulations.
研究辐射与生物组织相互作用的数值模拟需要使用不同年龄和不同体位的人体解剖三维模型。现已有针对成人和儿童的详细且灵活的模型,并已广泛应用于剂量学研究。另一方面,由于只有少数模型存在,且解剖细节粗糙,对胎儿形状及其在整个妊娠过程中的位置的解剖变异性的代表性较差,因此专注于孕妇和胎儿的模拟研究进展受到限制。
在本文中,我们提出了一种新的计算框架,用于生成由从医学图像中分割出的胎儿形状和代表按子宫尺寸缩放的合成女性的通用母体外壳组成的 3D 混合孕妇模型。该计算框架包括以下任务:图像分割、轮廓正则化、基于网格的曲面重建和模型集成。
创建了一系列模型来代表不同妊娠阶段的孕妇和胎儿处于不同位置的情况,所有模型都包含了对剂量学有重要作用的胎儿和子宫-胎儿单元的详细组织。这些模型经过临床妇产科医生和放射科医生的解剖验证,他们验证了解剖细节的准确性和代表性,以及胎儿在母体内部的定位。
该计算框架能够从医学图像中创建详细、真实和有代表性的胎儿模型,可直接用于剂量学模拟。