Department of Medical Techniques, Ren-Ai Branch, Taipei City Hospital, Taiwan.
Department of Medical Laboratory, Kung-Ming Prevention and Control Center, Taipei City Hospital, Taiwan.
Tuberculosis (Edinb). 2022 Jul;135:102212. doi: 10.1016/j.tube.2022.102212. Epub 2022 May 18.
Due to COVID-19 pandemic, there is a large global drop in the number of newly diagnosed cases with tuberculosis (TB) worldwide. Actions to mitigate and reverse the impact of the COVID-19 pandemic on TB are urgently needed. Recent development of TB smear microscopy automation systems using artificial intelligence may increase the sensitivity of TB smear microscopy. The objective is to evaluate the performance of an automation system (μ-Scan 2.0, Wellgen Medical) over manual smear microscopy in a multi-center, double-blind trial. Total of 1726 smears were enrolled. Referee medical technician and culture served as primary and secondary gold standards for result discrepancy. Results showed that, compared to manual microscopy, the μ-Scan 2.0's performance of accuracy, sensitivity and specificity were 95.7% (1651/1726), 87.7% (57/65), and 96.0% (1594/1661), respectively. The negative predictive value was 97.8% at prevalence of 8.2%. Manual smear microscopy remains the primary diagnosis of pulmonary tuberculosis (TB). Use of automation system could achieve higher TB smear sensitivity and laboratory efficiency. It can also serve as a screening tool that complements molecular methods to reduce the total cost for TB diagnosis and control. Furthermore, such automation system is capable of remote access by internet connection and can be deployed in area with limited medical resources.
由于 COVID-19 大流行,全球新诊断的结核病(TB)病例数量大幅下降。迫切需要采取行动来减轻和扭转 COVID-19 大流行对 TB 的影响。最近开发的基于人工智能的 TB 涂片显微镜自动化系统可能会提高 TB 涂片显微镜的灵敏度。本研究的目的是在多中心、双盲试验中评估一种自动化系统(μ-Scan 2.0,Wellgen Medical)相对于人工涂片显微镜的性能。共纳入 1726 份涂片。参考检验技师和培养物分别作为结果不一致的主要和次要金标准。结果表明,与人工显微镜相比,μ-Scan 2.0 的准确度、灵敏度和特异性分别为 95.7%(1651/1726)、87.7%(57/65)和 96.0%(1594/1661)。在 8.2%的流行率下,阴性预测值为 97.8%。人工涂片显微镜仍然是肺结核(TB)的主要诊断方法。自动化系统的使用可以提高 TB 涂片的灵敏度和实验室效率。它还可以作为一种筛选工具,与分子方法互补,以降低 TB 诊断和控制的总成本。此外,这种自动化系统能够通过互联网连接进行远程访问,并可以部署在医疗资源有限的地区。