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Automatic microscopic detection of mycobacteria in sputum: a proof-of-concept 원문보기

Scientific reports, v.8, 2018년, pp.11308 -   

Zingue, D. (MEPHI, Aix Marseille Université) ,  Weber, P. (, IRD, IHU Mé) ,  Soltani, F. (diterrané) ,  Raoult, D. (e Infection, Marseille, France) ,  Drancourt, M. (MEPHI, Aix Marseille Université)

Abstract AI-Helper 아이콘AI-Helper

The laboratory diagnosis of lung mycobacterioses including tuberculosis comprises the microscopic examination of sputum smear after appropriate staining such as Ziehl-Neelsen staining to observe acid-fast bacilli. This standard procedure is operator-dependant and its sensitivity depends on the durat...

참고문헌 (44)

  1. 1. WHO. Global tuberculosis report 2017. 262 (World Health Organization, Geneva, 2017). 

  2. 2. Forero MG Cristóbal G Desco M Automatic identification of Mycobacterium tuberculosis by Gaussian mixture models J Microsc 2006 223 120 132 10.1111/j.1365-2818.2006.01610.x 16911072 

  3. 3. Zingue D Advantages and drawbacks of expectoration decontamination methods for tuberculosis and anti-tuberculosis drug resistance diagnosis Ann Biol Clin 2013 71 283 291 

  4. 4. Osibote OA Dendere R Krishnan S Douglas TS Automated focusing in bright-field microscopy for tuberculosis detection J Microsc 2010 240 155 163 10.1111/j.1365-2818.2010.03389.x 20946382 

  5. 5. Abdelaziz MM Bakr WM Hussien SM Amine AE Diagnosis of pulmonary tuberculosis using Ziehl-Neelsen stain or cold staining techniques? J Egypt Public Health Assoc 2016 91 39 43 10.1097/01.EPX.0000481358.12903.af 27110859 

  6. 6. Ben-Selma W Rapid detection of Mycobacterium tuberculosis in sputum by Patho-TB kit in comparison with direct microscopy and culture Diagn Microbiol Infect Dis 2009 65 232 235 10.1016/j.diagmicrobio.2009.07.021 19729264 

  7. 7. Gordon C Van Deun A Lumb R Evaluating the performance of basic fuchsin for the Ziehl-Neelsen stain Int J Tuberc Lung Dis 2009 13 130 135 19105891 

  8. 8. Gupta S Prasad V Bairy I Muralidharan S Comparative evaluation of two cold staining methods with the Ziehl-Neelsen method for the diagnosis of tuberculosis Southeast Asian J Trop Med Public Health 2009 40 765 769 19842411 

  9. 9. IUATLD. Technical guide. Sputum Examination for Tuberculosis by Direct Microscopy in Low Income Countries. Fifth edition, 32 (2000). 

  10. 10. Sadaphal P Rao J Comstock GW Beg MF Image processing techniques for identifying Mycobacterium tuberculosis in Ziehl-Neelsen stains Int J Tuberc Lung Dis 2008 12 579 582 18419897 

  11. 11. Marais BJ Use of light-emitting diode fluorescence microscopy to detect acid-fast bacilli in sputum Clin Infect Dis 2008 47 203 207 10.1086/589248 18532893 

  12. 12. Kim TC Blackman RS Heatwole KM Kim T Rochester DF Acid-fast bacilli in sputum smears of patients with pulmonary tuberculosis. Prevalence and significance of negative smears pretreatment and positive smears post-treatment Am Rev Respir Dis 1984 129 264 268 6421211 

  13. 13. Levy H A reevaluation of sputum microscopy and culture in the diagnosis of pulmonary tuberculosis Chest 1989 95 1193 1197 10.1378/chest.95.6.1193 2656111 

  14. 14. Rieder, H. L. et al . The public health service national tuberculosis reference laboratory and the national laboratory network. Minimum requirements, role and operation in a low-income country. Paris, France. International Union Against Tuberculosis and Lung Disease (1998). 

  15. 15. Van Deun A Optimal tuberculosis case detection by direct sputum smear microscopy: how much better is more? Int J Tuberc Lung Dis 2002 6 222 230 11934140 

  16. 16. WHO. Fluorescent Light-Emitting Diode (LED) microscopy for diagnosis of tuberculosis: Policy statement WHO/HTM/TB/2011.8 , 16 , http://apps.who.int/iris/bitstream/handle/10665/44602/9789241501613_eng.pdf?sequence=1 (2011). 

  17. 17. Cuevas LE LED Fluorescence Microscopy for the Diagnosis of Pulmonary Tuberculosis: A Multi-Country Cross-Sectional Evaluation PLoS Medicine 2011 8 e1001057 10.1371/journal.pmed.1001057 21765809 

  18. 18. Chang EW Page AL Bonnet M Light-emitting diode fluorescence microscopy for tuberculosis diagnosis: a meta-analysis Eur Respir J 2016 47 929 937 10.1183/13993003.00978-2015 26647430 

  19. 19. Nour-Neamatollahi A A new diagnostic tool for rapid and accurate detection of Mycobacterium tuberculosis Saudi J Biol Sci 2018 25 418 425 10.1016/j.sjbs.2016.01.026 29686505 

  20. 20. Veropoulos K Learmonth G Campbell C Knight B Simpson J Automated identification of tubercle bacilli in sputum. A preliminary investigation Anal Quant Cytol Histol 1999 21 277 282 10560504 

  21. 21. Khutlang R Classification of Mycobacterium tuberculosis in images of ZN-stained sputum smears IEEE Trans Inf Technol Biomed 2010 14 949 957 10.1109/TITB.2009.2028339 19726269 

  22. 22. Khutlang R Krishnan S Whitelaw A Douglas TS Automated detection of tuberculosis in Ziehl-Neelsen-stained sputum smears using two one-class classifiers J Microsc 2010 237 96 102 10.1111/j.1365-2818.2009.03308.x 20055923 

  23. 23. Lewis JJ “Proof-of-concept” evaluation of an automated sputum smear microscopy system for tuberculosis diagnosis PLoS One 2012 7 29 

  24. 24. Costa MG A sputum smear microscopy image database for automatic bacilli detection in conventional microscopy Conf Proc IEEE Eng Med Biol Soc 2014 4 6944215 

  25. 25. Ismail NA Performance of a Novel Algorithm Using Automated Digital Microscopy for Diagnosing Tuberculosis Am J Respir Crit Care Med 2015 191 1443 1449 10.1164/rccm.201502-0390OC 25826383 

  26. 26. Asmar S Drancourt M Rapid culture-based diagnosis of pulmonary tuberculosis in developed and developing countries Frontiers Microbiol 2015 6 1184 10.3389/fmicb.2015.01184 

  27. 27. Pichat C Combined Genotypic, Phylogenetic, and Epidemiologic Analyses of Mycobacterium tuberculosis Genetic Diversity in the Rhône Alpes Region, France PLoS One 2016 11 e0153580 10.1371/journal.pone.0153580 27128522 

  28. 28. Guthmann J Aït Belghiti F Lévy-Bruhl D Épidémiologie de la tuberculose en France en 2015. Impact de la suspension de l’obligation vaccinale BCG sur la tuberculose de l’enfant, 2007-2015 Bull Epidémiol Hebd 2017 7 116 126 

  29. 29. Arya M Targets of Wnt/ß-Catenin Transcription in Penile Carcinoma PloS One 2015 10 e0124395 10.1371/journal.pone.0124395 25901368 

  30. 30. Tian L Mutual regulation of tumour vessel normalization and immunostimulatory reprogramming Nature 2017 544 250 10.1038/nature21724 28371798 

  31. 31. Saul L IgG subclass switching and clonal expansion in cutaneous melanoma and normal skin Sci Rep 2016 6 29736 10.1038/srep29736 27411958 

  32. 32. Doyle WI Faecal bile acids are natural ligands of the mouse accessory olfactory system Nature Commun 2016 7 11936 10.1038/ncomms11936 27324439 

  33. 33. Adil MM Efficient generation of hPSC-derived midbrain dopaminergic neurons in a fully defined, scalable, 3D biomaterial platform Sci Rep 2017 7 40573 10.1038/srep40573 28091566 

  34. 34. Cha M Um SW Kwon M Nam TS Lee BH Repetitive motor cortex stimulation reinforces the pain modulation circuits of peripheral neuropathic pain Sci Rep 2017 7 7986 10.1038/s41598-017-08208-2 28801619 

  35. 35. Rousseau D Fast virtual histology using X-ray in-line phase tomography: application to the 3D anatomy of maize developing seeds Plant Methods 2015 11 55 10.1186/s13007-015-0098-y 26688690 

  36. 36. Bin BH Requirement of zinc transporter ZIP10 for epidermal development: Implication of the ZIP10–p63 axis in epithelial homeostasis Proc Natl Acad Sci USA 2017 114 12243 12248 10.1073/pnas.1710726114 29078349 

  37. 37. Bjarnadóttir K B cell-derived transforming growth factor-β1 expression limits the induction phase of autoimmune neuroinflammation Sci Rep 2016 6 34594 10.1038/srep34594 27708418 

  38. 38. Sacchetti C PTP4A1 promotes TGFβ signaling and fibrosis in systemic sclerosis Nature Commun 2017 8 1060 10.1038/s41467-017-01168-1 29057934 

  39. 39. Bell LCK In Vivo Molecular Dissection of the Effects of HIV-1 in Active Tuberculosis PLOS Pathogens 2016 12 e1005469 10.1371/journal.ppat.1005469 26986567 

  40. 40. Van Deun A Hossain MA Gumusboga M Rieder HL Ziehl-Neelsen staining: theory and practice Int J Tuberc Lung Dis 2008 12 108 110 18173887 

  41. 41. Asmar S A Novel Solid Medium for Culturing Mycobacterium tuberculosis Isolates from Clinical Specimens J Clin Microbiol 2015 53 2566 2569 10.1128/JCM.01149-15 26041897 

  42. 42. Asmar S Chlorhexidine decontamination of sputum for culturing Mycobacterium tuberculosis BMC Microbiol 2015 15 155 10.1186/s12866-015-0479-4 26238865 

  43. 43. Ghodbane R Rapid Diagnosis of Tuberculosis by Real-Time High-Resolution Imaging of Mycobacterium tuberculosis Colonies J Clin Microbiol 2015 53 2693 2696 10.1128/JCM.00684-15 26085608 

  44. 44. Zingue D Flaudrops C Drancourt M Direct matrix-assisted laser desorption ionisation time-of-flight mass spectrometry identification of mycobacteria from colonies Eur J Clin Microbiol Infect Dis 2016 35 1983 1987 10.1007/s10096-016-2750-5 27549109 

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