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Application of different methods for nuclear shape analysis with special reference to the differentiation of brain tumors.

机译:不同方法在核形状分析中的应用,特别是脑肿瘤的鉴别。

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OBJECTIVE: To study the discriminatory power of different methods designed for nuclear shape analysis with reference to the differentiation and grading of brain tumors and the differentiation between proliferating and nonproliferating nuclei. STUDY DESIGN: At least 300 tumor cell nuclei per case were measured by means of a digital image analysis system. Fourier amplitudes no. 1 to 15, moments no. 1 to 7 according to Hu, roundness factor, ellipse shape factor, concavity factor, Feret ratio, fractal dimension and bending energy were determined for each nucleus. The discriminatory power of these parameters was tested in three pairwise comparisons: (1) oligodendrogliomas WHO grade II (n = 13) vs. grade III (n 11), (2) medulloblastomas WHO grade IV (n ependymomas WHO grade III (n = 12), (3) Ki-67-positive vs. Ki-67-negative tumor cell nuclei in the 14 medulloblastomas. RESULTS: When data from Fourier analysis were included in statistical analysis, cross-validated discriminant analysis led to a 100% correct reclassification for the first and for the second pairwise comparison and to a 75% correct reclassification when comparing Ki-67-positive and Ki-67-negative nucleifrom medulloblastomas. Different combinations of the other shape parameters led to a lower percentage of correctly reclassified cases for all three pairwise comparisons, especially when Fourier analysis was not included in the analysis. CONCLUSION: Fourier analysis provided an optimal statistical discrimination between different brain tumor entities and between data sets from proliferating and nonproliferating tumor cell nuclei. Since nuclear shape is an important criterion for the investigation of tumors, the application of Fourier analysis is therefore recommended for quantitative histologic investigations in neuro-oncology.
机译:目的:研究针对脑形态分析的不同方法的辨别力,以脑肿瘤的分化和分级以及增殖核与非增殖核的区分为参考。研究设计:每个病例通过数字图像分析系统测量至少300个肿瘤细胞核。傅立叶振幅1至15,片刻不。根据Hu的1至7,确定每个原子核的圆度因子,椭圆形状因子,凹度因子,费雷特比,分形维数和弯曲能。在三个成对比较中测试了这些参数的辨别力:(1)WHO II级少突胶质细胞瘤(n = 13)vs III级(n 11),(2)WHOⅣ级神经母细胞瘤(n室管膜瘤WHO III级(n = 12),(3)14个髓母细胞瘤中Ki-67阳性与Ki-67阴性的肿瘤细胞核结果:将来自Fourier分析的数据纳入统计分析时,交叉验证的判别分析导致100%正确进行第一次和第二次成对比较的重分类,并且比较来自髓母细胞瘤的Ki-67阳性和Ki-67阴性核时,正确分类率达到75%,其他形状参数的不同组合导致正确分类的病例百分比降低所有这三个成对比较,特别是当分析中不包括傅立叶分析时。定级和不增殖的肿瘤细胞核。由于核的形状是研究肿瘤的重要标准,因此建议将傅里叶分析的应用用于神经肿瘤学的定量组织学研究。

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