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自动化的人体器官分割、容积测量和人群平均图谱用于三维运动校正的胎儿体部 MRI。

Automated body organ segmentation, volumetry and population-averaged atlas for 3D motion-corrected T2-weighted fetal body MRI.

机构信息

School of Imaging Sciences and Biomedical Engineering, King's College London, London, UK.

Centre for the Developing Brain, King's College London, London, UK.

出版信息

Sci Rep. 2024 Mar 19;14(1):6637. doi: 10.1038/s41598-024-57087-x.

Abstract

Structural fetal body MRI provides true 3D information required for volumetry of fetal organs. However, current clinical and research practice primarily relies on manual slice-wise segmentation of raw T2-weighted stacks, which is time consuming, subject to inter- and intra-observer bias and affected by motion-corruption. Furthermore, there are no existing standard guidelines defining a universal approach to parcellation of fetal organs. This work produces the first parcellation protocol of the fetal body organs for motion-corrected 3D fetal body MRI. It includes 10 organ ROIs relevant to fetal quantitative volumetry studies. We also introduce the first population-averaged T2w MRI atlas of the fetal body. The protocol was used as a basis for training of a neural network for automated organ segmentation. It showed robust performance for different gestational ages. This solution minimises the need for manual editing and significantly reduces time. The general feasibility of the proposed pipeline was also assessed by analysis of organ growth charts created from automated parcellations of 91 normal control 3T MRI datasets that showed expected increase in volumetry during 22-38 weeks gestational age range.

摘要

结构胎儿体 MRI 提供了进行胎儿器官容积测量所需的真实 3D 信息。然而,目前的临床和研究实践主要依赖于对原始 T2 加权堆栈进行手动逐层分割,这既耗时,又容易受到观察者内和观察者间偏差的影响,并受到运动伪影的影响。此外,目前还没有现有的标准指南定义用于胎儿器官分割的通用方法。本工作为运动校正的 3D 胎儿体 MRI 生成了第一个胎儿体器官分割方案。它包括 10 个与胎儿定量容积研究相关的器官 ROI。我们还介绍了第一个胎儿体的人群平均 T2w MRI 图谱。该方案被用作自动器官分割的神经网络训练的基础。它在不同的胎龄显示出了强大的性能。该解决方案最大限度地减少了手动编辑的需求,并大大缩短了时间。通过对 91 个正常对照 3T MRI 数据集的自动分割创建的器官生长图表的分析,也评估了所提出的管道的一般可行性,这些数据集显示出在 22-38 周胎龄范围内容积的预期增加。

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