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一种用于显微镜图像中疟原虫检测的高效深度学习方法。

An Efficient Deep Learning Approach for Malaria Parasite Detection in Microscopic Images.

作者信息

Boit Sorio, Patil Rajvardhan

机构信息

College of Computing, Grand Valley State University, Grand Rapids, MI 49503, USA.

出版信息

Diagnostics (Basel). 2024 Dec 5;14(23):2738. doi: 10.3390/diagnostics14232738.

Abstract

Malaria is a life-threatening disease spread by infected mosquitoes, affecting both humans and animals. Its symptoms range from mild to severe, including fever, muscle discomfort, coma, and kidney failure. Accurate diagnosis is crucial but challenging, relying on expert technicians to examine blood smears under a microscope. Conventional methods are inefficient, while machine learning approaches struggle with complex tasks and require extensive feature engineering. Deep learning, however, excels in complex tasks and automatic feature extraction. This paper presents EDRI, which is a novel hybrid deep learning model that integrates multiple architectures for malaria detection from red blood cell images. The EDRI model is designed to capture diverse features and leverage multi-scale analysis. The proposed EDRI model is trained and evaluated on the NIH Malaria dataset comprising 27,558 labeled microscopic red blood cell images. Experiments demonstrate its effectiveness, achieving an accuracy of 97.68% in detecting malaria, making it a valuable tool for clinicians and public health professionals. The results demonstrate the effectiveness of proposed model's ability to detect malaria parasite from red blood cell images, offering a robust tool for rapid and reliable malaria diagnosis.

摘要

疟疾是一种由受感染蚊子传播的危及生命的疾病,对人类和动物都会造成影响。其症状从轻微到严重不等,包括发烧、肌肉不适、昏迷和肾衰竭。准确诊断至关重要但具有挑战性,需要专业技术人员在显微镜下检查血涂片。传统方法效率低下,而机器学习方法在处理复杂任务时存在困难,并且需要大量的特征工程。然而,深度学习在复杂任务和自动特征提取方面表现出色。本文提出了EDRI,这是一种新颖的混合深度学习模型,它集成了多种架构用于从红细胞图像中检测疟疾。EDRI模型旨在捕捉多样的特征并利用多尺度分析。所提出的EDRI模型在包含27558张带标签的微观红细胞图像的NIH疟疾数据集上进行训练和评估。实验证明了其有效性,在检测疟疾方面达到了97.68%的准确率,使其成为临床医生和公共卫生专业人员的宝贵工具。结果证明了所提出模型从红细胞图像中检测疟原虫能力的有效性,为快速可靠的疟疾诊断提供了一个强大的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3203/11639908/60cee5d93c00/diagnostics-14-02738-g001.jpg

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