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The Impact of the Condenser on Cytogenetic Image Quality in Digital Microscope System

机译:数字显微镜系统中聚光镜对细胞遗传图像质量的影响

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摘要

Background: Optimizing operational parameters of the digital microscope system is an important technique to acquire high quality cytogenetic images and facilitate the process of karyotyping so that the efficiency and accuracy of diagnosis can be improved.OBJECTIVE: This study investigated the impact of the condenser on cytogenetic image quality and system working performance using a prototype digital microscope image scanning system.Methods: Both theoretical analysis and experimental validations through objectively evaluating a resolution test chart and subjectively observing large numbers of specimen were conducted.Results: The results show that the optimal image quality and large depth of field (DOF) are simultaneously obtained when the numerical aperture of condenser is set as 60%–70% of the corresponding objective. Under this condition, more analyzable chromosomes and diagnostic information are obtained. As a result, the system shows higher working stability and less restriction for the implementation of algorithms such as autofocusing especially when the system is designed to achieve high throughput continuous image scanning.Conclusions: Although the above quantitative results were obtained using a specific prototype system under the experimental conditions reported in this paper, the presented evaluation methodologies can provide valuable guidelines for optimizing operational parameters in cytogenetic imaging using the high throughput continuous scanning microscopes in clinical practice.
机译:背景:优化数字显微镜系统的操作参数是获取高质量细胞遗传图像并促进核型分析过程的一项重要技术,从而可以提高诊断的效率和准确性。目的:本研究调查了聚光镜对细胞遗传学的影响。方法:通过客观地评估分辨率测试图并主观观察大量标本,进行了理论分析和实验验证,方法包括:理论分析和实验验证。结果:结果表明,最佳图像质量当聚光镜的数值孔径设置为相应物镜的60%–70%时,会同时获得大景深(DOF)。在这种条件下,可以获得更多可分析的染色体和诊断信息。结果,该系统表现出更高的工作稳定性,并且对实现自动对焦等算法的限制更少,特别是在该系统被设计为实现高吞吐量连续图像扫描的情况下。结论:尽管上述定量结果是使用特定的原型系统在以下条件下获得的在本文报道的实验条件下,提出的评估方法可以为临床实践中使用高通量连续扫描显微镜优化细胞遗传学成像操作参数提供有价值的指导。

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