| Literature DB >> 36009881 |
Md Asiful Islam1,2, Shoumik Kundu3, Tengku Muhammad Hanis4, Khalid Hajissa5,6, Kamarul Imran Musa4.
Abstract
BACKGROUND: Tuberculosis (TB) is still a leading global cause of mortality and an increasingly crucial problem in fighting TB is antibiotic resistance. We aimed to conduct a bibliometric analysis on the articles of the past 25 years on antibiotic-resistant active pulmonary TB.Entities:
Keywords: antibiotic; bibliometrics; drug; resistance; tuberculosis
Year: 2022 PMID: 36009881 PMCID: PMC9405510 DOI: 10.3390/antibiotics11081012
Source DB: PubMed Journal: Antibiotics (Basel) ISSN: 2079-6382
Figure 1Flow diagram of study selection for the bibliometric analysis.
The top 10 most cited documents on antibiotic-resistant active pulmonary tuberculosis research (1996–2020).
| Rank | Study ID [references] | Title of the Document | Document Type | Journal Name | Total | DOI |
|---|---|---|---|---|---|---|
| 1 | Boehme | Rapid Molecular Detection of Tuberculosis and Rifampin Resistance | Research Article | The New England Journal of Medicine | 1609 | 10.1056/NEJMoa0907847 |
| 2 | Gandhi | Extensively drug-resistant tuberculosis as a cause of death in patients co-infected with tuberculosis and HIV in a rural area of South Africa | Research Article | The Lancet | 1307 | 10.1016/S0140-6736(06)69573-1 |
| 3 | Tacconelli | Discovery, research, and development of new antibiotics: the WHO priority list of antibiotic-resistant bacteria and tuberculosis | Research Article | The Lancet Infectious Diseases | 1259 | 10.1016/S1473-3099(17)30753-3 |
| 4 | Ramaswamy | Molecular genetic basis of antimicrobial agent resistance in Mycobacterium tuberculosis: 1998 update | Review article | Tubercle and Lung Disease | 886 | 10.1054/tuld.1998.0002 |
| 5 | Palomino | Resazurin Microtiter Assay Plate: Simple and Inexpensive Method for Detection of Drug Resistance in | Research Article | Antimicrobial Agents and Chemotherapy | 790 | 10.1128/AAC.46.8.2720-2722.2002 |
| 6 | Gandhi | Multidrug-resistant and extensively drug-resistant tuberculosis: a threat to global control of tuberculosis | Review article | The Lancet | 751 | 10.1016/S0140-6736(10)60410-2 |
| 7 | Boehme | Feasibility, diagnostic accuracy, and effectiveness of decentralised use of the Xpert MTB/RIF test for diagnosis of tuberculosis and multidrug resistance: a multicentre implementation study | Research Article | The Lancet | 743 | 10.1016/S0140-6736(11)60438-8 |
| 8 | Centers for Disease Control and Prevention (CDC) 2006 [ | Emergence of | Review article | Morbidity and Mortality Weekly Report | 681 | Not available |
| 9 | Diacon | The Diarylquinoline TMC207 for Multidrug-Resistant Tuberculosis | Research Article | The New England Journal of Medicine | 642 | 10.1056/NEJMoa0808427 |
| 10 | Helb | Rapid Detection of | Research Article | Journal of Clinical Microbiology | 625 | 10.1128/JCM.01463-09 |
Figure 2Global annual trend of (A) publication and (B) citation of antibiotic-resistant active pulmonary tuberculosis research.
Figure 3(A) Ten most contributing institutions and (B) leading five collaboration networks among institutions on antibiotic-resistant active pulmonary tuberculosis research in the past 25 years (1996–2020).
Figure 4Top 15 funding agencies of antibiotic-resistant active pulmonary tuberculosis research in the past 25 years (1996–2020).
Figure 5(A) Most contributing ten authors and (B) co-citation network of authors working on antibiotic-resistant active pulmonary tuberculosis research in the past 25 years (1996–2020).
Top ten journals publishing papers on antibiotic-resistant active pulmonary tuberculosis research (1996–2020).
| Rank | Journal Name | Country | Number of Papers Published on the Topic (%), | h-Index | Total | JCR® 2020 Impact Factor | JCR® 2020 Category (Quartile) |
|---|---|---|---|---|---|---|---|
| 1 | International Journal of Tuberculosis and Lung Disease | France | 616 (8.8%) | 59 | 16183 | 2.373 | Respiratory system (Q4); Infectious diseases (Q4) |
| 2 | PLoS One | USA | 358 (5.1%) | 46 | 8561 | 3.240 | Multidisciplinary sciences (Q2) |
| 3 | Journal of Clinical Microbiology | USA | 297 (4.2%) | 68 | 14,535 | 5.948 | Microbiology (Q1) |
| 4 | Antimicrobial Agents and Chemotherapy | USA | 288 (4.1%) | 69 | 15,916 | 5.191 | Pharmacology & Pharmacy (Q1); Microbiology (Q2) |
| 5 | BMC Infectious Diseases | England | 157 (2.2%) | 26 | 2672 | 3.090 | Infectious Diseases (Q3) |
| 6 | Clinical Infectious Diseases | USA | 146 (2.1%) | 49 | 6700 | 9.079 | Microbiology (Q1); Infectious Diseases (Q1); Immunology (Q1) |
| 7 | Tuberculosis | England | 144 (2.1%) | 28 | 2619 | 3.131 | Microbiology (Q3); Respiratory System (Q3); Immunology (Q3) |
| 8 | Journal of Antimicrobial Chemotherapy | England | 112 (1.6%) | 44 | 5198 | 5.790 | Microbiology (Q1); Pharmacology & Pharmacy (Q1); Infectious Diseases (Q1) |
| 9 | International Journal of Mycobacteriology | India | 107 (1.5%) | 13 | 612 | ESCI | Microbiology (Q4) *; Infectious Diseases (Q4) |
| 10 | Emerging Infectious Diseases | USA | 100 (1.4%) | 32 | 3804 | 6.883 | Infectious Diseases (Q1); Immunology (Q1) |
JCR: journal citation reports, * Based on journal citation indicator.
Figure 6(A) Leading publishing countries, (B) top ten collaborative countries and (C) world collaboration map on antibiotic-resistant pulmonary tuberculosis research (1996–2020).
Figure 7Three-Fields Plot representing the incoming and outgoing flows among top ten journals, affiliations and countries contributing to antibiotic-resistant active pulmonary tuberculosis research in the past 25 years (1996–2020).
Figure 8(A) TreeMap representing top ten author’s keywords and (B) Thematic Map using keywords plus utilised in the research of antibiotic-resistant active pulmonary tuberculosis (1996–2020).