• Users Online: 348
  • Home
  • Print this page
  • Email this page

    Article Cited by others

REVIEW

Microscopy as a diagnostic tool in pulmonary tuberculosis

Singhal Ritu, Myneedu Vithal Prasad

Year : 2015| Volume: 4| Issue : 1 | Page no: 1-6

   This article has been cited by
 
1 A Far-Red Molecular Rotor Fluorogenic Trehalose Probe for Live Mycobacteria Detection and Drug-Susceptibility Testing
Nicholas Banahene, Dana M. Gepford, Kyle J. Biegas, Daniel H. Swanson, Yen-Pang Hsu, Brennan A. Murphy, Zachary E. Taylor, Irene Lepori, M. Sloan Siegrist, Andrés Obregón-Henao, Michael S. Van Nieuwenhze, Benjamin M. Swarts
Angewandte Chemie. 2022;
[Pubmed]  [Google Scholar] [DOI]
2 A Far-Red Molecular Rotor Fluorogenic Trehalose Probe for Live Mycobacteria Detection and Drug-Susceptibility Testing
Nicholas Banahene, Dana M. Gepford, Kyle J. Biegas, Daniel H. Swanson, Yen-Pang Hsu, Brennan A. Murphy, Zachary E. Taylor, Irene Lepori, M. Sloan Siegrist, Andrés Obregón-Henao, Michael S. Van Nieuwenhze, Benjamin M. Swarts
Angewandte Chemie International Edition. 2022;
[Pubmed]  [Google Scholar] [DOI]
3 Evaluation of Aptamer Fluorescence Microscopy in the Diagnosis of Pulmonary Tuberculosis
Ruijuan Zheng, Feifan Xu, Xiaochen Huang, Jie Wang, Yonghong Feng, Jin Huang, Lianhua Qin, Jennifer Dien Bard
Microbiology Spectrum. 2022;
[Pubmed]  [Google Scholar] [DOI]
4 A glimpse into the genotype and clinical importance of non tuberculous mycobacteria among pulmonary tuberculosis patients: The case of Ethiopia
Alem Alemayehu, Abebaw Kebede, Sebsib Neway, Efrem Tesfaye, Betselot Zerihun, Melak Getu, Beyene Petros, Mao-Shui Wang
PLOS ONE. 2022; 17(9): e0275159
[Pubmed]  [Google Scholar] [DOI]
5 Modified Ziehl–Neelsen staining for Mycobacterium leprae
Neelima Mohan, Minu Sunil, Gopinadhan Akhil, Sujaya Krishna Priya, Vrinda Vijayakumar, Mary Vineetha, Machiyanickal Isaac Celine, Kidangazhiathmana Ajithkumar
Journal of Skin and Sexually Transmitted Diseases. 2022; 0: 1
[Pubmed]  [Google Scholar] [DOI]
6 Molecular Epidemiology of Mycobacterium tuberculosis Complex Strains in Urban and Slum Settings of Nairobi, Kenya
Glennah Kerubo, Perpetua Ndungu, Yassir Adam Shuaib, Evans Amukoye, Gunturu Revathi, Susanne Homolka, Samuel Kariuki, Matthias Merker, Stefan Niemann
Genes. 2022; 13(3): 475
[Pubmed]  [Google Scholar] [DOI]
7 Evaluation of phenol ammonium sulfate basic fuchsin and auramine O staining by pot technique for the detection of acid-fast bacilli among patients suspected of pulmonary tuberculosis
Druti Hazra, Krithika M. , Vishnu Prasad Shenoy, Kiran Chawla
Biomedicine. 2022; 42(4): 757
[Pubmed]  [Google Scholar] [DOI]
8 Detection of Tuberculosis on Culture, Comparison of Findings with Fluorescence Microscopy and GeneXpert
Asmat Amjad, Zeeshan Yousuf, Hafiz Shehzad Muzammil
Futuristic Biotechnology. 2021; : 17
[Pubmed]  [Google Scholar] [DOI]
9 Microfluidics as a Novel Technique for Tuberculosis: From Diagnostics to Drug Discovery
Antonia Molloy, James Harrison, John S. McGrath, Zachary Owen, Clive Smith, Xin Liu, Xin Li, Jonathan A. G. Cox
Microorganisms. 2021; 9(11): 2330
[Pubmed]  [Google Scholar] [DOI]
10 Disease of consumption to extensively drug resistance tuberculosis: Race of techniques to enhance diagnosis
Jureka Mankotia,Akant Kaushal,Azhar Khan
Asia Pacific Journal of Molecular Biology and Biotechnology. 2021; : 73
[Pubmed]  [Google Scholar] [DOI]
11 Composite Bacterial Infection Index and Serum Amyloid A Protein in Pulmonary Tuberculosis Patients and their Household Contacts in Makassar
Irda Handayani,Muhammad Nasrum Massi,Yanti Leman,Rosdiana Natzir,Ilhamjaya Patellongi,Subair Subair,Najdah Hidayah,Ayu Andini Wulandari,Handayani Halik
Open Access Macedonian Journal of Medical Sciences. 2021; 9(B): 557
[Pubmed]  [Google Scholar] [DOI]
12 Aptamer-Based Diagnostic Systems for the Rapid Screening of TB at the Point-of-Care
Darius Riziki Martin,Nicole Remaliah Sibuyi,Phumuzile Dube,Adewale Oluwaseun Fadaka,Ruben Cloete,Martin Onani,Abram Madimabe Madiehe,Mervin Meyer
Diagnostics. 2021; 11(8): 1352
[Pubmed]  [Google Scholar] [DOI]
13 Performance of acid fast techniques and genexpert in diagnosing pulmonary tuberculosis in Uasin Gishu county health facilities, Kenya
Hellen Jeruto Sawe,Sabella J Kiprono,Tom Were
IP International Journal of Medical Microbiology and Tropical Diseases. 2021; 7(3): 165
[Pubmed]  [Google Scholar] [DOI]
14 “Multidrug resistant Tuberculosis – Diagnostic Challenges and its conquering by Nanotechnology approach – An overview”
Lakshmipathy Muthukrishnan
Chemico-Biological Interactions. 2021; : 109397
[Pubmed]  [Google Scholar] [DOI]
15 Chemical probes for tagging mycobacterial lipids
Kyle J. Biegas,Benjamin M. Swarts
Current Opinion in Chemical Biology. 2021; 65: 57
[Pubmed]  [Google Scholar] [DOI]
16 The Smartphone biosensors for point-of-care detection of human infectious diseases: Overview& Perspectives-A systematic review
Kobra Salimiyan rizi
Current Opinion in Electrochemistry. 2021; : 100925
[Pubmed]  [Google Scholar] [DOI]
17 Toward Point-of-Care Detection of Mycobacterium tuberculosis: A Brighter Solvatochromic Probe Detects Mycobacteria within Minutes
Mireille Kamariza,Samantha G. L. Keyser,Ashley Utz,Benjamin D. Knapp,Christopher Ealand,Green Ahn,C. J. Cambier,Teresia Chen,Bavesh Kana,Kerwyn Casey Huang,Carolyn R. Bertozzi
JACS Au. 2021;
[Pubmed]  [Google Scholar] [DOI]
18 Pneumonia caused by Mycobacterium tuberculosis
Meili Wei,Yongjie Zhao,Zhuoyu Qian,Biao Yang,Jun Xi,Jun Wei,Bikui Tang
Microbes and Infection. 2020;
[Pubmed]  [Google Scholar] [DOI]
19 Light emitting diode (LED) based fluorescence microscopy for tuberculosis detection: a review
Anushka Ojha,Soumyabrata Banik,Sindhoora Kaniyala Melanthota,Nirmal Mazumder
Lasers in Medical Science. 2020;
[Pubmed]  [Google Scholar] [DOI]
20 Frequency of genomic mutations mediating resistance of Mycobacterium tuberculosis isolates to rifampicin in Northern Morocco
Hind Karimi,Amal Oudghiri,Latifa En-nanei,Mohammed El Mzibri,Amin Laglaoui,Imane Chaoui,Mohammed Abid
Revista do Instituto de Medicina Tropical de São Paulo. 2020; 62
[Pubmed]  [Google Scholar] [DOI]
21 Performance of and Factors Associated With Tuberculosis Screening and Diagnosis Among People Living With HIV: Analysis of 2012–2016 Routine HIV Data in Tanzania
Werner Maokola,Bernard Ngowi,Lovetti Lawson,Michael Mahande,Jim Todd,Sia E. Msuya
Frontiers in Public Health. 2020; 7
[Pubmed]  [Google Scholar] [DOI]
22 Peritoneal tuberculosis: the great mimicker
Aaron Varghese,Amanda Fader,MaryAnn Wilbur,Kevan Salimian,Javad R Azadi,Pamela T Johnson,Rebecca Stone
International Journal of Gynecologic Cancer. 2020; 30(4): 546
[Pubmed]  [Google Scholar] [DOI]
23 Frugal filtering optical lenses for point-of-care diagnostics
Joanna Long,Helen E. Parker,Katjana Ehrlich,Michael G. Tanner,Kevin Dhaliwal,Bethany Mills
Biomedical Optics Express. 2020; 11(4): 1864
[Pubmed]  [Google Scholar] [DOI]
24 Homogeneous fluorescent aptasensor for active tuberculosis diagnosis by direct quantification of circulating TB7.7 based on aptamer beacon with graphene oxide
Jinseong Jeon,Jiseon Lee,Jae-in So,JongByeong Lee,Heehyun Lee,Yunhee Chang,Sangeon Shin,Jihoon Jo,Changill Ban
Sensors and Actuators B: Chemical. 2020; : 128126
[Pubmed]  [Google Scholar] [DOI]
25 Mycobacterium tuberculosis clinical isolates carry mutational signatures of host immune environments
Qingyun Liu, Jianhao Wei, Yawei Li, Mei Wang, Jun Su, Yonghui Lu, Mariana G. López, Xueqin Qian, Zhaoqin Zhu, Haiying Wang, Mingyun Gan, Qi Jiang, Yun-Xin Fu, Howard E. Takiff, Iñaki Comas, Feng Li, Xuemei Lu, Sarah M. Fortune, Qian Gao
Science Advances. 2020; 6(22)
[Pubmed]  [Google Scholar] [DOI]
26 Quality of Same-Day Sputum Smears Microscopy and Presumptive Tuberculosis Patients Drop-out at Health Facilities of Addis Ababa, Ethiopia
Boja Dufera Taddese,Abay Sisay Misganaw
Tuberculosis and Respiratory Diseases. 2020; 83(1): 89
[Pubmed]  [Google Scholar] [DOI]
27 Sensor-as-a-Service: Convergence of Sensor Analytic Point Solutions (SNAPS) and Pay-A-Penny-Per-Use (PAPPU) Paradigm as a Catalyst for Democratization of Healthcare in Underserved Communities
Victoria Morgan,Lisseth Casso-Hartmann,David Bahamon-Pinzon,Kelli McCourt,Robert G. Hjort,Sahar Bahramzadeh,Irene Velez-Torres,Eric McLamore,Carmen Gomes,Evangelyn C. Alocilja,Nirajan Bhusal,Sunaina Shrestha,Nisha Pote,Ruben Kenny Briceno,Shoumen Palit Austin Datta,Diana C. Vanegas
Diagnostics. 2020; 10(1): 22
[Pubmed]  [Google Scholar] [DOI]
28 Quantification of Mycobacterium tuberculosis and Mycobacterium avium complex in human immunodeficiency virus-infected individuals with and without tuberculosis
Yashovardhan Naishadham,VijayKumar Jogishetty,VenkatBaghirath Pacha,SudheerB Balla,BHari Vinay,Parameshwar Naishadham
Journal of Oral and Maxillofacial Pathology. 2019; 23(2): 236
[Pubmed]  [Google Scholar] [DOI]
29 Trends in Diagnosis for Active Tuberculosis Using Nanomaterials
Le Minh Tu Phan,Lemma Teshome Tufa,Hwa-Jung Kim,Jaebeom Lee,Tae Jung Park
Current Medicinal Chemistry. 2019; 26(11): 1946
[Pubmed]  [Google Scholar] [DOI]
30 Cartridge Based Nucleic Acid Amplification Test: The Sherlock of Tuberculosis
Jureka Mankotia,Sunil Sethi,Mohammad Azhar Khan
Journal of Pure and Applied Microbiology. 2019; 13(1): 179
[Pubmed]  [Google Scholar] [DOI]
31 Emerging trends in microbiological diagnostics in children
Sangeeta Sharma,Ritu Singhal,Rohit Sarin,V.P. Myneedu
Indian Journal of Tuberculosis. 2019; 66(4): 549
[Pubmed]  [Google Scholar] [DOI]
32 Xpert MTB/Ultra assay: handle with care
Rabia Can Sarinoglu,Nurcan Duman,Nazmiye Ünlü,Sehnaz Olgun Yildizeli,Aysegül Karahasan Yagci
Journal of Infection. 2019;
[Pubmed]  [Google Scholar] [DOI]
33 Image Enhancement Using Modified Partial Contrast Technique in Ziehl-Neelsen Sputum Slide Images
R. A. A. Raof,M. Y. Mashor,S. S. M. Noor
Journal of Physics: Conference Series. 2019; 1372: 012080
[Pubmed]  [Google Scholar] [DOI]
34 The Diagnosis of Pulmonary Tuberculosis
Matthew J. Cummings,Neil W. Schluger
Clinical Pulmonary Medicine. 2018; 25(5): 170
[Pubmed]  [Google Scholar] [DOI]
35 Smartphone-based clinical diagnostics: towards democratization of evidence-based health care
I. Hernández-Neuta,F. Neumann,J. Brightmeyer,T. Ba Tis,N. Madaboosi,Q. Wei,A. Ozcan,M. Nilsson
Journal of Internal Medicine. 2018;
[Pubmed]  [Google Scholar] [DOI]
36 Point of care diagnostics for tuberculosis
A.L. García-Basteiro,A. DiNardo,B. Saavedra,D.R. Silva,D. Palmero,M. Gegia,G.B. Migliori,R. Duarte,E. Mambuque,R. Centis,L.E. Cuevas,S. Izco,G. Theron
Revista Portuguesa de Pneumologia (English Edition). 2018;
[Pubmed]  [Google Scholar] [DOI]
37 Experimental platform utilising melting curve technology for detection of mutations in Mycobacterium tuberculosis isolates
Agnieszka Broda,Vlad Nikolayevskyy,Nicki Casali,Huma Khan,Richard Bowker,Gemma Blackwell,Bhakti Patel,James Hume,Waqar Hussain,Francis Drobniewski
European Journal of Clinical Microbiology & Infectious Diseases. 2018;
[Pubmed]  [Google Scholar] [DOI]
38 Smear microscopy as a diagnostic tool of tuberculosis: Review of smear negative cases, frequency, risk factors, and prevention criteria
Tarig M.S. Alnour
Indian Journal of Tuberculosis. 2018;
[Pubmed]  [Google Scholar] [DOI]
39 Nanoparticle-Based Biosensing of Tuberculosis, an Affordable and Practical Alternative to Current Methods
Nirajan Bhusal,Sunaina Shrestha,Nisha Pote,Evangelyn Alocilja
Biosensors. 2018; 9(1): 1
[Pubmed]  [Google Scholar] [DOI]
40 Rapid detection of Mycobacterium tuberculosis in sputum with a solvatochromic trehalose probe
Mireille Kamariza, Peyton Shieh, Christopher S. Ealand, Julian S. Peters, Brian Chu, Frances P. Rodriguez-Rivera, Mohammed R. Babu Sait, William V. Treuren, Neil Martinson, Rainer Kalscheuer, Bavesh D. Kana, Carolyn R. Bertozzi
Science Translational Medicine. 2018; 10(430)
[Pubmed]  [Google Scholar] [DOI]
41 Recent Technological Advancements in Tuberculosis Diagnostics- A Review
Shagun Gupta,Vipan Kakkar
Biosensors and Bioelectronics. 2018;
[Pubmed]  [Google Scholar] [DOI]
42 Smear Microscopy for Diagnosis of Pulmonary Tuberculosis in Eastern Sudan
Yassir A. Shuaib,Eltahir A. G. Khalil,Ulrich E. Schaible,Lothar H. Wieler,Mohammed A. M. Bakheit,Saad E. Mohamed-Noor,Mohamed A. Abdalla,Susanne Homolka,Sönke Andres,Doris Hillemann,Knut Lonnroth,Elvira Richter,Stefan Niemann,Katharina Kranzer
Tuberculosis Research and Treatment. 2018; 2018: 1
[Pubmed]  [Google Scholar] [DOI]
43 Evaluation of gene xpert assay and microscopic examination for detection of Mycobacterium tuberculosis in sputum at Port Harcourt, Nigeria
Kinikanwo Wachukwu Confidence,Paulinus Okwelle Stella,Godwin Nwokah Easter,Amba Ollor Ollor
African Journal of Microbiology Research. 2018; 12(14): 327
[Pubmed]  [Google Scholar] [DOI]
44 Diagnosis of a Spectrum of Pulmonary Tuberculosis at Islam Hospital Sukapura, Jakarta, Indonesia: A Retrospective Study of 317 Cases
Tri Ariguntar,Mochammad Hatta,Muhammad Nasrum Mas,Indah Pratiwi,Muhammad Fachri,Slamet Sudi Santo,Amir Syarifuddi,Ressy Dwiyanti,Rizki Amelia Nov
Journal of Medical Sciences. 2018; 18(3): 143
[Pubmed]  [Google Scholar] [DOI]
45 Transmission of Ostreid herpesvirus -1 microvariant in seawater: Detection of viral DNA in seawater, filter retentates, filter membranes and sentinel Crassostrea gigas spat in upwellers
Olivia Evans,Paul Hick,Bruce Alford,Richard J. Whittington
Aquaculture. 2017; 473: 456
[Pubmed]  [Google Scholar] [DOI]
46 State of Diagnosing Infectious Pathogens Using Colloidal Nanomaterials
Jisung Kim,Mohamed A. Abdou Mohamed,Kyryl Zagorovsky,Warren C.W. Chan
Biomaterials. 2017;
[Pubmed]  [Google Scholar] [DOI]
47 Gold Nanoparticles for Diagnostics: Advances towards Points of Care
Mílton Cordeiro,Fábio Ferreira Carlos,Pedro Pedrosa,António Lopez,Pedro Baptista
Diagnostics. 2016; 6(4): 43
[Pubmed]  [Google Scholar] [DOI]
48 Childhood tuberculosis in sub-Saharan Africa: A call to action
Eziyi Iche Kalu,Chiedozie Kingsley Ojide,Victor Ugochukwu Nwadike,Francis Chukwuma Korie,Chikaodili Adaeze Ibeneme,Godwin Chukwuebuka Okafor
Asian Pacific Journal of Tropical Disease. 2015; 5(10): 757
[Pubmed]  [Google Scholar] [DOI]

 

Read this article