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Multi-Layer Virtual Slide Scanning System with Multi-Focus Image Fusion for Cytopathology and Image Diagnosis

机译:具有多焦点图像融合功能的多层虚拟载玻片扫描系统,用于细胞病理学和图像诊断

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Objective: The virtual slides are high-magnification whole digital images of histopathological tissue sections. The existing virtual slide system, which is optimized for scanning flat and smooth plane slides such as histopathological paraffin-embedded tissue sections, but is unsuitable for scanning irregular plane slides such as cytological smear slides. This study aims to develop a virtual slide system suitable for cytopathology slide scanning and to evaluate the effectiveness of multi-focus image fusion (MF) in cytopathological diagnosis. Study Design: We developed a multi-layer virtual slide scanning system with MF technology. Tumors for this study were collected from 21 patients diagnosed with primary breast cancer. After surgical extraction, smear slide for cytopathological diagnosis were manufactured by the conventional stamp method, fine needle aspiration method (FNA), and tissue washing method. The stamp slides were fixed in 95% ethanol. FNA and tissue washing samples were fixed in CytoRich RED Preservative Fluid, a liquid-based cytopathology (LBC). These slides were stained with Papanicolaou stain, and scanned by virtual slide system. To evaluate the suitability of MF technology in cytopathological diagnosis, we compared single focus (SF) virtual slide with MF virtual slide. Cytopathological evaluation was carried out by 5 pathologists and cytotechnologists. Results: The virtual slide system with MF provided better results than the conventional SF virtual slide system with regard to viewing inside cell clusters and image file size. Liquid-based cytology was more suitable than the stamp method for virtual slides with MF. Conclusion: The virtual slide system with MF is a useful technique for the digitization in cytopathology, and this technology could be applied to tele-cytology and e-learning by virtual slide system.
机译:目的:虚拟幻灯片是组织病理学组织切片的高放大倍数全数字图像。现有的虚拟载玻片系统经过优化,可扫描平坦和光滑的平面载玻片,例如组织病理石蜡包埋的组织切片,但不适用于扫描不规则的平面载玻片,例如细胞学涂片。这项研究旨在开发一种适用于细胞病理学玻片扫描的虚拟玻片系统,并评估多聚焦图像融合(MF)在细胞病理学诊断中的有效性。研究设计:我们使用MF技术开发了多层虚拟幻灯片扫描系统。本研究的肿瘤是从21名诊断为原发性乳腺癌的患者中收集的。手术摘除后,通过常规印章法,细针抽吸法(FNA)和组织清洗法制造用于细胞病理学诊断的涂片。印模载玻片固定在95%乙醇中。将FNA和组织洗涤样品固定在CytoRich RED防腐液(一种基于液体的细胞病理学(LBC))中。这些载玻片用Papanicolaou染料染色,并通过虚拟载玻片系统扫描。为了评估MF技术在细胞病理学诊断中的适用性,我们将单焦点(SF)虚拟幻灯片与MF虚拟幻灯片进行了比较。由5位病理学家和细胞技术专家进行了细胞病理学评估。结果:在查看内部细胞簇和图像文件大小方面,带有MF的虚拟幻灯片系统提供了比常规SF虚拟幻灯片系统更好的结果。对于带有MF的虚拟载玻片,基于液体的细胞学比标记法更合适。结论:带有MF的虚拟幻灯片系统是一种用于细胞病理学数字化的有用技术,该技术可通过虚拟幻灯片系统应用于远距细胞学和电子学习。

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