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在显微镜成像模式下对中期染色体图像分析的自动对焦方法的评估。

Evaluations of auto-focusing methods under a microscopic imaging modality for metaphase chromosome image analysis.

机构信息

Center for Bioengineering and School of Electrical and Computer Engineering, University of Oklahoma, Norman, OK 73019, USA.

出版信息

Anal Cell Pathol (Amst). 2013;36(1-2):37-44. doi: 10.3233/ACP-130077.

Abstract

BACKGROUND

Auto-focusing is an important operation in high throughput imaging scanning. Although many auto-focusing methods have been developed and tested for a variety of imaging modalities, few investigations have been performed on the selection of an optimal auto-focusing method that is suitable for the pathological metaphase chromosome analysis under a high resolution scanning microscopic system.

OBJECTIVE

The purpose of this study is to investigate and identify an optimal auto-focusing method for the pathological metaphase chromosome analysis.

METHODS

In this study, five auto-focusing methods were applied and tested using metaphase chromosome images acquired from bone marrow and blood specimens. These methods were assessed by measuring a number of indices including execution time, accuracy, number of false maxima, and full width at half maximum (FWHM).

RESULTS

For the specific condition investigated in this study, the results showed that the Brenner gradient and threshold pixel counting methods were the optimal methods for acquiring high quality metaphase chromosome images from the bone marrow and blood specimens, respectively.

CONCLUSIONS

Selecting an optimal auto-focusing method depends on the specific clinical tasks. This study also provides useful information for the design and implementation of the high throughput microscopic image scanning systems in the future digital pathology.

摘要

背景

自动对焦是高通量成像扫描中的一项重要操作。尽管已经针对各种成像模式开发和测试了许多自动对焦方法,但针对适用于高分辨率扫描显微镜系统下的病理中期染色体分析的最佳自动对焦方法的选择,几乎没有进行过研究。

目的

本研究旨在探讨和确定适用于病理中期染色体分析的最佳自动对焦方法。

方法

本研究应用了五种自动对焦方法,并使用骨髓和血液标本获得的中期染色体图像对其进行了测试。通过测量执行时间、准确性、虚假最大值数量和半峰全宽(FWHM)等多个指标来评估这些方法。

结果

对于本研究中特定的情况,结果表明,对于骨髓和血液标本,Brenner 梯度和阈值像素计数方法分别是获取高质量中期染色体图像的最佳方法。

结论

选择最佳的自动对焦方法取决于具体的临床任务。本研究还为未来数字病理学中高通量显微镜图像扫描系统的设计和实现提供了有用的信息。

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