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首页> 外文期刊>Cellular Oncology: Analytical Cellular Pathology >Development of 3D Chromatin Texture Analysis Using Confocal Laser Scanning Microscopy
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Development of 3D Chromatin Texture Analysis Using Confocal Laser Scanning Microscopy

机译:共聚焦激光扫描显微镜技术开发3D染色质纹理分析

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Introduction: Analysis of nuclear texture features as a measure of nuclear chromatin changes has been proven to be useful when measured on thin (5–6μm) tissue sections using conventional 2D bright field microscopy. The drawback of this approach is that most nuclei are not intact because of those thin sections. Confocal laser scanning microscopy (CLSM) allows measurements of texture in 3D reconstructed nuclei. The aim of this study was to develop 3D texture features that quantitatively describe changes in chromatin architecture associated with malignancy using CLSM images.Methods: Thirty-five features thoughtfully chosen from 4 categories of 3D texture features (discrete texture features, Markovian features, fractal features, grey value distribution features) were selected and tested for invariance properties (rotation and scaling) using artificial images with a known grey value distribution. The discriminative power of the 3D texture features was tested on artificially constructed benign and malignant 3D nuclei with increasing nucleolar size and advancing chromatin margination towards the periphery of the nucleus. As a clinical proof of principle, the discriminative power of the texture features was assessed on 10 benign and 10 malignant human prostate nuclei, evaluating also whether there was more texture information in 3D whole nuclei compared to a single 2D plane from the middle of the nucleus.Results: All texture features showed the expected invariance properties. Almost all features were sensitive to variations in the nucleolar size and to the degree of margination of chromatin. Fourteen texture features from different categories had high discriminative power for separating the benign and malignant nuclei. The discrete texture features performed less than expected. There was more information on nuclear texture in 3D than in 2D.Conclusion: A set of 35 3D nuclear texture features was used successfully to assess nuclear chromatin patterns in 3D images obtained by confocal laser scanning microscopy, and as a proof of principle we showed that these features may be clinically useful for analysis of prostate neoplasia.
机译:简介:使用常规2D明场显微镜在薄(5–6μm)组织切片上进行测量时,已证明分析核纹理特征以测量核染色质变化是有用的。这种方法的缺点是由于这些薄的部分,大多数原子核并不完整。共聚焦激光扫描显微镜(CLSM)可以测量3D重建核中的纹理。这项研究的目的是开发3D纹理特征,使用CLSM图像定量描述与恶性肿瘤相关的染色质结构变化。方法:从3种4D纹理特征(离散纹理特征,马尔可夫特征,分形特征)类别中精心选择了35个特征,灰度值分布特征),并使用具有已知灰度值分布的人工图像测试其不变性(旋转和缩放)。在人工构造的良性和恶性3D核上测试了3D纹理特征的判别力,核仁尺寸不断增加,染色质边缘向核的周围推进。作为原理的临床证明,在10个良性和10个恶性人类前列腺核上评估了纹理特征的判别力,并且还评估了3D整个核中与从核中间的单个2D平面相比是否存在更多的纹理信息。结果:所有纹理特征均显示了预期的不变性。几乎所有特征都对核仁大小的变化和染色质的边缘化程度敏感。来自不同类别的十四个纹理特征具有区分良性和恶性细胞核的高判别力。离散纹理功能的表现不及预期。结论:通过共聚焦激光扫描显微镜获得的35个3D核纹理特征已成功用于评估3D图像中的核染色质模式,并获得了35个3D核纹理特征的信息,作为原理证明,我们证明了:这些特征可能在临床上可用于分析前列腺肿瘤。

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