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A supervised texton based approach for automatic segmentation and measurement of the fetal head and femur in 2D ultrasound images

机译:基于监督的texton的方法,可自动分割和测量2D超声图像中的胎头和股骨

摘要

This paper presents a supervised texton based approach for the accurate segmentation and measurement of ultrasound fetal head (BPD, OFD, HC) and femur (FL). The method consists of several steps. First, a non-linear diffusion technique is utilized to reduce the speckle noise. Then, based on the assumption that cross sectional intensity profiles of skull and femur can be approximated by Gaussian-like curves, a multi-scale and multi-orientation filter bank is designed to extract texton features specific to ultrasound fetal anatomic structure. The extracted texton cues, together with multi-scale local brightness, are then built into a unified framework for boundary detection of ultrasound fetal head and femur. Finally, for fetal head, a direct least square ellipse fitting method is used to construct a closed head contour, whilst, for fetal femur a closed contour is produced by connecting the detected femur boundaries. The presented method is demonstrated to be promising for clinical applications. Overall the evaluation results of fetal head segmentation and measurement from our method are comparable with the inter-observer difference of experts, with the best average precision of 96.85%, the maximum symmetric contour distance (MSD) of 1.46 mm, average symmetric contour distance (ASD) of 0.53 mm; while for fetal femur, the overall performance of our method is better than the inter-observer difference of experts, with the average precision of 84.37%, MSD of 2.72 mm and ASD of 0.31mm.
机译:本文提出了一种基于监督的基于texton的方法,可以对超声胎儿头(BPD,OFD,HC)和股骨(FL)进行精确的分割和测量。该方法包括几个步骤。首先,利用非线性扩散技术来减少斑点噪声。然后,基于这样的假设:头骨和股骨的横截面强度分布可以通过类似高斯曲线来近似,因此设计了一种多尺度,多方位的滤波器组来提取特定于超声胎儿解剖结构的纹理特征。然后将提取的texton线索与多尺度局部亮度一起构建到统一的框架中,以进行超声胎儿头和股骨的边界检测。最后,对于胎儿头部,使用直接最小二乘椭圆拟合法来构造闭合头部轮廓,而对于胎儿股骨,通过连接检测到的股骨边界来产生闭合轮廓。所提出的方法被证明对于临床应用是有前途的。总体而言,我们方法对胎儿头部分割和测量的评估结果可与专家之间的观察者差异相媲美,最佳平均精度为96.85%,最大对称轮廓距离(MSD)为1.46 mm,平均对称轮廓距离为( ASD)为0.53毫米;对于胎儿股骨,我们的方法的整体性能优于专家之间的观察者差异,平均精度为84.37%,MSD为2.72 mm,ASD为0.31mm。

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