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Quantification of kidneys from 3D ultrasound in pediatric hydronephrosis

机译:三维超声中肾脏的定量儿科肾值乳

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This paper introduces a complete framework for the quantification of renal structures (parenchyma, and collecting system) in 3D ultrasound (US) images. First, the segmentation of the kidney is performed using Gabor-based appearance models (GAM), a variant of the popular active shape models, properly tailored to the imaging physics of US image data. The framework also includes a new graph-cut based method for the segmentation of the collecting system, including brightness and contrast normalization, and positional prior information. The significant advantage (p = 0.03) of the new method over previous approaches in terms of segmentation accuracy has been successfully verified on clinical 3DUS data from pediatric cases with hydronephrosis. The promising results obtained in the estimation of the volumetric hydronephrosis index demonstrate the potential of our new framework to quantify anatomy in US and asses the severity of hydronephrosis.
机译:本文介绍了在3D超声(US)图像中定量肾结构结构(薄壁症和收集系统)的完整框架。首先,使用基于GABOR的外观模型(GAM),流行的活性形状模型的变型来进行肾脏的分割,适当地定制于美国图像数据的成像物理学。该框架还包括基于新的基于图形切割的方法,用于分割收集系统,包括亮度和对比度标准化和位置前提信息。在先前在分割精度方面的新方法的显着优势(P = 0.03)已经成功验证了来自肾内肾小粒的儿科案例的临床3DUS数据上成功验证。在体积淋巴瘤估计中获得的有希望的结果表明了我们新框架的潜力,以量化美国的解剖学并赋予肾内肾病的严重程度。

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