Introduction: MEOPA (equimolar mixture of oxygen and nitrous oxide) is used for its analgesic and anxiolytic properties in order to obtain conscious sedation of the patient when performing painful care. It is subject to an enhanced pharmacovigilance and addictovigilance monitoring. In this context, it is important to dispose of hospital utilization data. This work aims to assess the compliance of the use of nitrous oxide regarding the recommendations of the summary of product characteristics, in a French university hospital (Nantes) and consider possible improvements.
Materials And Methods: Transversal descriptive study, conducted in 2014 with all health professionals using MEOPA.
Results: Two thousand thirty-four health professionals answered the questionnaire ; durations of administrations are in conformity and the premises are generally appropriate but almost 60% of professionals have the feeling of inhaling the drug. The systematization of the prescription (always or almost always prescribed for 67% of professionals) and traceability of use (always or almost always in the patient's file for 71% of professionals) are potential source of improvement, particularly since 18% of professional health reported "abuse demands" from patients.
Conclusion: The formation and information of health professionals are major issues of good use of nitrous oxide.
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http://dx.doi.org/10.1016/j.therap.2017.04.003 | DOI Listing |
Cureus
December 2024
Paediatrics, Birmingham Community Healthcare NHS Foundation Trust, Birmingham, GBR.
Introduction This report explores patient satisfaction in a dental sedation service in primary care for paediatric patients. The study explores different behavioural management techniques and additional supportive aids as adjuncts to inhalation sedation to improve patient satisfaction. Aim and objective To determine patient satisfaction with pre-assessment, treatment and aftercare in inhalation sedation services in primary care.
View Article and Find Full Text PDFNatl Sci Rev
February 2025
Key Laboratory of Water and Sediment Sciences, Ministry of Education, Department of Environmental Engineering, Peking University, Beijing 100871, China.
The riverine NO fluxes are assumed to linearly increase with nitrate loading. However, this linear relationship with a uniform EF is poorly constrained, which impedes the NO estimation and mitigation. Our meta-analysis discovered a universal NO emission baseline (EF = k/[NO ], k = 0.
View Article and Find Full Text PDFJ Psychoactive Drugs
January 2025
Department of Psychology, University of Otago, Ōtepoti/Dunedin, Aotearoa, New Zealand.
Non-medical use of nitrous oxide (NO) is becoming increasingly popular globally, yet little data exists regarding NO in Aotearoa New Zealand. We aimed to explore patterns of use and harm in those who consume NO in Aotearoa, and related knowledge, perceptions and attitudes of those with and without NO experience. A convenience sample of people with NO experience ( = 466) and without ( = 510) completed an online survey about NO.
View Article and Find Full Text PDFTrials
January 2025
Department of Pediatric Surgery, Inselspital University Hospital, Bern, CH, 3010, Switzerland.
Background: Children often experience anxiety and pain during minor surgical procedures, prompting the search for effective pain management strategies beyond traditional pharmaceutical approaches. This study aims to evaluate the efficacy of virtual reality (VR) as a pain reduction method in pediatric outpatient surgical interventions compared to the standard use of nitrous oxide. The research questions explore pain reduction levels, patient preferences, enjoyment during VR use, and the time limit of the VR application.
View Article and Find Full Text PDFMed Gas Res
June 2025
Paris Saclay Institute of Neuroscience, Saclay, France.
Recent advancements in artificial intelligence-enabled medical gas sensing have led to enhanced accuracy, safety, and efficiency in healthcare. Medical gases, including oxygen, nitrous oxide, and carbon dioxide, are essential for various treatments but pose health risks if improperly managed. This review highlights the integration of artificial intelligence in medical gas sensing, enhancing traditional sensors through advanced data processing, pattern recognition, and real-time monitoring capabilities.
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