Novel neural network application for bacterial colony classification.

Lei Huang, Tong Wu
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引用次数: 31

Abstract

Background: Bacterial colony morphology is the first step of classifying the bacterial species before sending them to subsequent identification process with devices, such as VITEK 2 automated system and mass spectrometry microbial identification system. It is essential as a pre-screening process because it can greatly reduce the scope of possible bacterial species and will make the subsequent identification more specific and increase work efficiency in clinical bacteriology. But this work needs adequate clinical laboratory expertise of bacterial colony morphology, which is especially difficult for beginners to handle properly. This study presents automatic programs for bacterial colony classification task, by applying the deep convolutional neural networks (CNN), which has a widespread use of digital imaging data analysis in hospitals. The most common 18 bacterial colony classes from Peking University First Hospital were used to train this framework, and other images out of these training dataset were utilized to test the performance of this classifier.

Results: The feasibility of this framework was verified by the comparison between predicted result and standard bacterial category. The classification accuracy of all 18 bacteria can reach 73%, and the accuracy and specificity of each kind of bacteria can reach as high as 90%.

Conclusions: The supervised neural networks we use can have more promising classification characteristics for bacterial colony pre-screening process, and the unsupervised network should have more advantages in revealing novel characteristics from pictures, which can provide some practical indications to our clinical staffs.

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新型神经网络在菌落分类中的应用。
背景:菌落形态是对细菌种类进行分类的第一步,然后将其发送到后续的设备鉴定过程中,如VITEK 2自动化系统和质谱微生物鉴定系统。它作为一种预筛选过程是必不可少的,因为它可以大大减少可能的细菌种类范围,并使后续鉴定更具特异性,提高临床细菌学的工作效率。但这项工作需要足够的菌落形态的临床实验室专业知识,这对初学者来说尤其难以正确处理。本研究提出了一种基于深度卷积神经网络(CNN)的细菌菌落分类自动程序,该算法在医院的数字成像数据分析中得到了广泛的应用。使用北京大学第一医院最常见的18个菌落类别对该分类器进行训练,并利用这些训练数据集中的其他图像来测试该分类器的性能。结果:通过预测结果与标准菌种的比较,验证了该框架的可行性。18种细菌的分类准确率均可达到73%,每种细菌的准确率和特异性可高达90%。结论:我们所采用的有监督神经网络在菌落预筛选过程中具有更有前景的分类特征,而无监督神经网络在从图片中揭示新特征方面应具有更大的优势,可为临床工作人员提供一些实用的指征。
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Theoretical Biology and Medical Modelling
Theoretical Biology and Medical Modelling MATHEMATICAL & COMPUTATIONAL BIOLOGY-
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6-12 weeks
期刊介绍: Theoretical Biology and Medical Modelling is an open access peer-reviewed journal adopting a broad definition of "biology" and focusing on theoretical ideas and models associated with developments in biology and medicine. Mathematicians, biologists and clinicians of various specialisms, philosophers and historians of science are all contributing to the emergence of novel concepts in an age of systems biology, bioinformatics and computer modelling. This is the field in which Theoretical Biology and Medical Modelling operates. We welcome submissions that are technically sound and offering either improved understanding in biology and medicine or progress in theory or method.
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