ArticleBMJ global health2025
Detection of pulmonary tuberculosis through mobile X-ray based active case-finding in Pakistan: a retrospective analysis from programmatic screening of1 214 289 individuals from 2017 to 2021.
Article in BMJ global health, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 4 papers.
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4 citing papers in PubMed.
- Treatment outcomes of individuals with tuberculosis identified from mobile chest X-ray-based active case finding in Pakistan.Public health action · 2026Article
- The role of medical imaging in translational research into early pulmonary tuberculosis.International journal of infectious diseases : IJID : official publication of the International Society for Infectious Diseases · 2026Review
- "Subclinical tuberculosis": a person-centred critique.ERJ open research · 2026Article
- Resources to implement general population mobile chest x-ray screening for tuberculosis in Uganda: A trial-based costing analysis.PLOS global public health · 2026Article
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6 authors.
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Abstract
Recent evidence suggests that community-wide active case finding (ACF) can reduce tuberculosis (TB) incidence and prevalence. Mass-screening at the community level, supported by mobile digital chest X-ray units, is now being scaled up by programmes across high burden countries. However, there is limited evidence of case-detection yields from programmes conducting ACF at scale in low-resource settings. We retrospectively analysed aggregate data from mobile X-ray screening events (called 'camps') in Pakistan from Q3 2017 to Q2 2021. A total of 11 327 camps were conducted that screened 1 214 289 individuals and detected 7625 cases of All-Forms TB (AF-TB), among whom 3500 (45.9%) were bacteriologically confirmed (B+) and the remaining were treated empirically. The yield for B+ and AF-TB per 100 000 population screened nationally was 289 (95% CI: 279 to 298) and 631 (95% CI: 617 to 646), respectively. Yield of TB detected from screening was highly variable between regions of Pakistan, ranging from 70 to 678 per 100 000 B+ and 76 to 1136 per 100 000 for AF-TB. Our findings have two major lessons for TB programmes. First, there was significant geographical variation in yields of both B+ and AF-TB, supporting targeting of interventions in areas of high prevalence to maximise the intervention's effectiveness. Second, more than half of TB cases were treated empirically, and approaches to improve sample collection, linkage to diagnostics, non-sputum based tests and standardisation of treatment for bacteriologically unconfirmed TB need to be concurrently prioritised by programmes considering scale-up of mobile X-ray-based ACF.
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