A systematic review and repeatability study on the use of deep learning for classifying and detecting tuberculosis bacilli in microscopic images

肺结核 背景(考古学) 结核分枝杆菌 计算机科学 重复性 人工智能 杆菌 医学物理学 医学 病理 生物 数学 统计 细菌 古生物学 遗传学
作者
Thales Francisco Mota Carvalho,Vívian Ludimila Aguiar Santos,José Cleydson F. Silva,Lida Jouca de Assis Figueredo,Silvana Spíndola de Miranda,Ricardo O. Duarte,Frederico Gadelha Guimarães
出处
期刊:Progress in Biophysics & Molecular Biology [Elsevier BV]
卷期号:180-181: 1-18 被引量:12
标识
DOI:10.1016/j.pbiomolbio.2023.03.002
摘要

Tuberculosis (TB) is among the leading causes of death worldwide from a single infectious agent. This disease usually affects the lungs (pulmonary TB) and can be cured in most cases with a quick diagnosis and proper treatment. Microscopic sputum smear is widely used to diagnose and manage pulmonary TB. Despite being relatively fast and low cost, it can be exhausting because it depends on manually counting TB bacilli (Mycobacterium tuberculosis) in microscope images. In this context, different Deep Learning (DL) techniques are proposed in the literature to assist in performing smear microscopy. This article presents a systematic review based on the PRISMA procedure, which investigates which DL techniques can contribute to classifying TB bacilli in microscopic images of sputum smears using the Ziehl-Nielsen method. After an extensive search and a careful inclusion/exclusion procedure, 28 papers were selected from a total of 400 papers retrieved from nine databases. Based on these articles, the DL techniques are presented as possible solutions to improve smear microscopy. The main concepts necessary to understand how such techniques are proposed and used are also presented. In addition, replication work is also carried out, verifying reproducibility and comparing different works in the literature. In this review, we look at how DL techniques can be a partner to make sputum smear microscopy faster and more efficient. We also identify some gaps in the literature that can guide which issues can be addressed in other works to contribute to the practical use of these methods in laboratories.
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