Objectives: The use of sealants is one of the methods available to reduce the occurrence of intraoperative air leaks. The objective of this modified Delphi survey among ESTS members is to understand the attitudes of clinicians to the optimal use of sealants in air leak management.
Methods: To understand the attitudes of a wider sample of clinicians, a questionnaire was developed highlighting key issues through 37 statements. Respondents were invited to score their level of agreement with each. A modified Delphi methodology was used to review responses with a threshold of agreement for consensus of 75%.
Results: A total of 258 responses were received (response rate 17%). Respondents agreed that prolonged air leaks are a common complication in thoracic surgery presenting a burden to the patient and increasing the costs of care. There is clear support for the use of sealants to reduce costs and improve the efficiency of healthcare provision and duration of chest tube use in selected high-risk patients with intraoperative air leak at the end of the lung surgery. Respondents also agreed that, due to often complex nature of thoracic surgery, sealants should be developed specifically for this application.
Conclusion: There is a clear role for sealants in the management of air leaks and certain surgical procedures demand their use (i.e. lung volume reduction surgery, decortication). This opinion-based consensus review helps to raise the debate about the burden of air leaks in thoracic surgery in order that this issue is recognized in practice and informs the optimal use of sealants in lung surgery.
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http://dx.doi.org/10.1093/ejcts/ezaa428 | DOI Listing |
Coal mining industry is one of the main source for economy of every nations, whereas safety in the underground coal mining area is still doubtful. According to some reports, there is heavy loss of life and money due to the occasional accidents in the coal mining area. Some existing researchers has been addressed this issue and approached their method.
View Article and Find Full Text PDFJ Thorac Dis
December 2024
Guangdong Lung Cancer Institute, Guangdong Provincial Key Laboratory of Translational Medicine in Lung Cancer, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Southern Medical University, Guangzhou, China.
Background: Postoperative air leak is the most common complication after pulmonary resection. "Provocative clamping" was first described in 1992 in the context of guiding chest tube removal despite persistent air leak. However, early provocative clamping after pulmonary resection has not been evaluated.
View Article and Find Full Text PDFSci Rep
January 2025
FLUIDIAN, 95450, Commeny, France.
Even though the COVID-19 pandemic now belongs to the long history of infectious diseases that have struck humanity, pathogenic biological agents continue to pose a recurring threat in private places, but also and mainly in places where the public congregates. In our recent research published in this journal in 2022 and 2023, we considered the illustrative example of a commuter train coach in which a symptomatic or asymptomatic passenger, assumed to be infected with a respiratory disease, sits among other travellers. The passenger emits liquid particles containing, for example, COVID-19 virions or any other pathogen.
View Article and Find Full Text PDFArtif Organs
January 2025
Department of Thoracic and Cardiovascular Surgery, Hirosaki University Graduate School of Medicine, Hirosaki, Aomori, Japan.
Background: Impairment of the visceral pleura following thoracic surgery often leads to air leaks and intrathoracic adhesions. For preventing such complications, mesothelial cell proliferation at the pleural defects can be effective. To develop new materials for pleural defects restoration, we constructed a hybrid artificial pleural tissue (H-APLT) combining polyglycolic acid (PGA) nanofiber sheets with a three-dimensional culture of mesothelial cells and fibroblasts and evaluated its therapeutic efficacy in a rat pleural defect model.
View Article and Find Full Text PDFNature
January 2025
Key Laboratory of Coastal Environment and Resources of Zhejiang Province, School of Engineering, Westlake University, Hangzhou, China.
The amount of methane released to the atmosphere from the Nord Stream subsea pipeline leaks remains uncertain, as reflected in a wide range of estimates. A lack of information regarding the temporal variation in atmospheric emissions has made it challenging to reconcile pipeline volumetric (bottom-up) estimates with measurement-based (top-down) estimates. Here we simulate pipeline rupture emission rates and integrate these with methane dissolution and sea-surface outgassing estimates to model the evolution of atmospheric emissions from the leaks.
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