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Bibliometric Analysis of Global Research Output on Antimicrobial Resistance among Pneumonia Pathogens (2013-2023)
Nurgul Ablakimova1, Gaziza A Smagulova1, Svetlana Rachina2
1Department of Pharmacology, West Kazakhstan Marat Ospanov Medical University, Aktobe 030012, Kazakhstan.
Abstract:
Antimicrobial resistance (AMR) is a pressing global concern, posing significant challenges to the effective treatment of infections, including pneumonia. This bibliometric analysis aims to investigate the research output on AMR among pneumonia pathogens from 2013 to 2023. Data were extracted from the Web of Science Core Collection (WOS-CC) using an inclusive search strategy. The analysis included 152 relevant studies published in 99 different sources, involving 988 authors and yielding an average of 16.33 citations per document over the past decade. The findings reveal a notable increase in research on AMR among pneumonia pathogens, indicating a growing awareness of this critical issue. Collaborative studies were prevalent, with the majority of authors engaging in joint research efforts. Bradford's Law identified twelve core journals that were instrumental in disseminating research in this field, with "Medicine" emerging as the most prolific journal. The USA and China emerged as the leading contributors, while Germany displayed a strong inclination towards collaborative research. Intermountain Medical Center, Saitama Medical University, and Udice-French Research Universities were the most productive institutions, and Yayan J. and Rasche K. were the top authors. Furthermore, the analysis identified commonly encountered microorganisms such as Acinetobacter baumanii and Klebsiella pneumoniae in the context of AMR. Time-based analysis of keywords highlighted the significance of terms like "community-acquired pneumonia" and "ventilator-associated pneumonia". Overall, this comprehensive study sheds light on the global research landscape of AMR among pneumonia pathogens. The insights gained from this analysis are essential for guiding future research priorities and collaborative efforts to combat AMR effectively and improve treatment outcomes for pneumonia and related infections. As the frequency of reports concerning resistance among pneumonia pathogens, notably A. baumannii and K. pneumoniae, continues to rise, there is an immediate requirement for pharmaceutical manufacturers and healthcare providers to respond proactively and ready themselves for the forthcoming implications of this matter. It also underscores the importance of knowledge dissemination and evidence-based interventions to address this growing public health challenge. However, the study acknowledges the limitations associated with using a single publication database and encourages the inclusion of data from other sources in future research.
Insights
Research on antimicrobial resistance (AMR) in pneumonia pathogens is increasing. This bibliometric analysis highlights key trends, leading contributors, and common resistant bacteria like Acinetobacter baumanii and Klebsiella pneumoniae.
Area of Science:
- Microbiology and Infectious Diseases
- Bibliometrics and Scientometrics
- Public Health and Epidemiology
Background:
- Antimicrobial resistance (AMR) poses a significant global threat to treating infections, particularly pneumonia.
- Understanding the research landscape of AMR in pneumonia pathogens is crucial for developing effective interventions.
- A bibliometric analysis provides insights into research trends, collaborations, and key players in this field.
Purpose of the Study:
- To conduct a bibliometric analysis of global research on antimicrobial resistance (AMR) in pneumonia pathogens.
- To identify research trends, leading countries, institutions, authors, and journals from 2013 to 2023.
- To highlight key microorganisms and emerging research themes within AMR and pneumonia.
Main Methods:
- Data sourced from the Web of Science Core Collection (WOS-CC) using an inclusive search strategy.
- Analysis of 152 relevant studies published between 2013 and 2023.
- Bibliometric indicators including publication counts, author contributions, journal analysis (Bradford's Law), and keyword analysis were employed.
Main Results:
- A significant increase in research output on AMR in pneumonia pathogens was observed over the decade.
- The USA and China were the leading contributing countries, with Germany showing strong collaboration.
- Key pathogens identified include Acinetobacter baumanii and Klebsiella pneumoniae; 'community-acquired pneumonia' and 'ventilator-associated pneumonia' were prominent keywords.
Conclusions:
- The growing body of research reflects increased awareness of AMR in pneumonia.
- Collaborative research is prevalent, with specific journals, institutions, and authors dominating the field.
- Findings guide future research priorities and emphasize the need for proactive responses from pharmaceutical manufacturers and healthcare providers.
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