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Three-Dimensional Embryonic Image Segmentation and Registration Based on Shape Index and Ellipsoid-Fitting Method

机译:基于形状指数和椭球拟合方法的三维胚胎图像分割与配准

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Quantitative analysis based on three-dimensional differential interference contrast (DIC) images is currently the mainstream in analyzing gene functions involved in early cell fate specifications. Segmentation and registration are the two most important steps in analysis. Many image segmentation methods have poor performance on embryonic DIC images because of the interference of egg shells, blurs, and nonuniform intensity background. A novel segmentation method is presented based on the shape index (SI) of local intensity variation in DIC images. To compute the SI, the intensity values of a local neighborhood are regarded aszcoordinates overx–yplanes. After calculating the SI for each pixel by evaluating the shape of intensity surface over the corresponding local neighborhood, SI thresholding is used to detect cytoplasm granules within embryonic boundaries. As a scalar and rotation invariant, the SI is both insensitive to directional changes and different ranges of intensity variations. Embryonic registration methods are usually based on the orientation of vertebrate anteroposterior (AP) axes computed from segmented embryonic boundaries. Due to the blur of marginal slices in DIC images, usually the segmented boundaries are incomplete, which may make the computed AP axes shift away from the correct orientation when using the principal component analysis method. A method calculating AP axes based on ellipsoid-fitting is proposed, which can achieve high accuracy when handling incomplete segmented boundaries. Using Worm Developmental Dynamics Database, we evaluated the performance of the proposed segmentation method and the computation of AP axes. Experimental results show that the two methods outperform existing methods.
机译:当前,基于三维差分干扰对比(DIC)图像的定量分析是分析早期细胞命运指标所涉及的基因功能的主流。细分和配准是分析中两个最重要的步骤。由于卵壳,模糊和强度背景不均匀的干扰,许多图像分割方法在胚胎DIC图像上的性能较差。基于DIC图像中局部强度变化的形状指数(SI),提出了一种新颖的分割方法。为了计算SI,将本地邻域的强度值视为z坐标在x-y平面上。在通过评估相应局部邻域上的强度表面的形状为每个像素计算出SI之后,SI阈值被用于检测胚胎边界内的细胞质颗粒。作为标量和旋转不变性,SI对方向变化和强度变化的不同范围均不敏感。胚胎配准方法通常基于从分段的胚胎边界计算出的脊椎动物前后(AP)轴的方向。由于DIC图像中边缘切片的模糊,通常分割的边界是不完整的,使用主成分分析方法时,可能会使计算出的AP轴偏离正确的方向。提出了一种基于椭球拟合的AP轴计算方法,该方法在处理不完整的分割边界时可以达到较高的精度。使用蠕虫发育动力学数据库,我们评估了所提出的分割方法的性能以及AP轴的计算。实验结果表明,两种方法均优于现有方法。

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