[Paper] Automatic Quality Evaluation of Whole Slide Images for the Practical Use of Whole Slide Imaging Scanner

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC ITE Transactions on Media Technology and Applications Pub Date : 2020-01-01 DOI:10.3169/mta.8.252
H. Shakhawat, Tomoya Nakamura, Fumikazu Kimura, Y. Yagi, M. Yamaguchi
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引用次数: 12

Abstract

A whole slide imaging (WSI) scanner scans pathological-specimens to produce digital images for monitor-based diagnosis and analysis. However, the image quality is sometimes insufficient due to focus-error or noise, in which case the slide needs to be rescanned. In previous work, a referenceless quality evaluation technique was proposed, but some artifacts (i.e. tissue-fold, air-bubble) were detected as false positives. Those artifacts need to be ignored in determining whether rescanning is necessary or not, because they are not caused in the scanning but slide preparation stage. This paper proposes a method for a more practical system to assess WSI quality by distinguishing the origins of quality degradation; the focus-error or noise caused by the scanner and the artifact occurred in the slide preparation. In the method, a support vector machine detects artifacts first, and then quality is evaluated excluding artifact regions. The effectiveness of the proposed system has been experimentally demonstrated.
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[论文]应用于全片成像扫描仪的全片图像质量自动评价
全玻片成像(WSI)扫描仪扫描病理标本,产生数字图像,用于基于监测的诊断和分析。然而,由于聚焦误差或噪声,图像质量有时会不足,在这种情况下,需要重新扫描幻灯片。在之前的工作中,提出了一种无参考的质量评估技术,但检测到一些伪影(如组织褶皱、气泡)为假阳性。在确定是否需要重新扫描时,需要忽略这些伪影,因为它们不是在扫描阶段产生的,而是在幻灯片准备阶段产生的。本文提出了一种通过区分质量退化的来源来评估WSI质量的更实用的系统方法;在玻片制备过程中,由扫描仪和伪影引起的聚焦误差或噪声。在该方法中,首先使用支持向量机检测工件,然后排除工件区域对质量进行评估。实验证明了该系统的有效性。
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来源期刊
ITE Transactions on Media Technology and Applications
ITE Transactions on Media Technology and Applications ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
1.70
自引率
0.00%
发文量
9
期刊介绍: ・Multimedia systems and applications ・Multimedia analysis and processing ・Universal services ・Advanced broadcasting media ・Broadcasting network technology ・Contents production ・CG and multimedia representation ・Consumer Electronics ・3D imaging technology ・Human Information ・Image sensing ・Information display ・Multimedia Storage ・Others.
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