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Emerging trends and hotspots in lung-protective ventilation from 2006 to 2025: a bibliometric analysis
Shenqi Wang1, Chen Xie2, Xinchen Tao3
1The Fourth School of Clinical Medicine, Zhejiang Chinese Medical University, Hangzhou, China.
Background:
Postoperative pulmonary complications (PPCs) significantly contribute to perioperative mortality and morbidity worldwide. Lung-protective ventilation minimizes ventilator-induced lung injury (VILI) and improves outcomes, but implementation varies widely across individuals and practices. Enhancing patient outcomes can be achieved by comprehending the research trends and current hot topics in lung-protective ventilation. This bibliometric analysis evaluates publication trends and research focus in the field of lung-protective ventilation, aiming to highlight potential future research trajectories.
Methods:
The current publication trends and hotspots in lung-protective ventilation research from 2006 to 2025 were analyzed using the CiteSpace software, R package bibliometrix, Online Analysis Platform of Literature Metrology, and VOSviewer. Science Citation Index-Expanded (SCI-E) within the Web of Science Core Collection (WoSCC) was used to retrieve English articles.
Results:
A total of 818 articles focusing on lung-protective ventilation research from the past two decades were collected. The leading countries in this domain were the USA and China. The University of Toronto and Paolo Pelosi stood out as the primary institute and scholar, respectively. The top 10 primary clusters identified in the co-occurrence cluster analysis were coronavirus disease 2019 (COVID-19), PPCs, extracorporeal CO2 removal, respiratory distress syndrome, one lung ventilation, titration of positive end-expiratory pressure (PEEP), acute respiratory failure, oxygenation, work of breathing, and intensive care unit (ICU). The references burst reveal an evolutionary advancement from ventilation techniques to supplementary treatments to current precision medicine approaches. Keyword burst detection emphasized PPCs, mechanical power, driving pressure, and respiratory mechanics.
Conclusions:
Global publications on lung-protective ventilation research have experienced significant growth over the past 20 years, reflecting its clinical importance in critical care. This trend emphasizes the need for continued research into innovative strategies to optimize ventilation practices and improve patient outcomes while minimizing mechanical ventilation complications. Future research should prioritize patient-centered outcomes to translate scientific advances into practical improvements for respiratory disorders.
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