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Segmentation and visualization of tissues surrounding the airway in children via MRI

机译:通过MRI围绕儿童气道围绕气道组织的分割和可视化

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Continuing with our previous work of the segmentation and delineation of upper airway, the purpose of this work is to segment and delineate soft tissue organs surrounding the upper airway, such as adenoid, tonsils, fat pads and tongue, with the further goal of studying the relationship among the architectures of these structures, for understanding upper airway disorders in children. We use two MRI protocols, Axial T2 (used for adenoid, tonsil, and fat pads) and sagittal T1 (for tongue), to gather information about different aspects of the tissues. MR images are first corrected for background intensity variation and then the intensities are standardized. All segmentations are achieved via fuzzy connectedness algorithms with only limited operator interaction. A smooth 3D rendition of the upper airway and its surrounding tissues is displayed. The system has been tested utilizing 20 patient data sets. The tests indicate a 95% or better precision and accuracy for segmentation. The mean time taken per study is about 15 minutes including operator interaction time and processing time for all operations. This method provides a robust and fast means of assessing sizes, shapes, and the architecture of the tissues surrounding the upper airway, as well as providing data sets suitable for use in modeling studies of airflow and mechanics.
机译:继续进行我们之前的细分和划分上级航空公司的工作,这项工作的目的是围绕上呼吸道的细胞和描绘软组织器官,如腺样,扁桃体,脂肪垫和舌头,具有研究的进一步目标这些结构的建筑之间的关系,用于了解儿童上的上气道疾病。我们使用两个MRI协议,轴向T2(用于腺样,扁桃体和脂肪垫)和矢状T1(用于舌头),以收集有关组织的不同方面的信息。首先校正MR图像,用于背景强度变化,然后强度是标准化的。通过模糊连接算法实现所有分段,仅具有有限的操作员交互。展示上呼吸道的平滑3D再现及其周围组织。系统已经使用20个患者数据集进行了测试。该测试表示分割的95%或更好的精度和准确性。每项研究的平均时间约为15分钟,包括操作员交互时间和所有操作的处理时间。该方法提供了一种稳健和快速的评估尺寸,形状和围绕上呼吸道组织的架构的方法,以及提供适用于用于气流和力学建模研究的数据集。

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