Capital and operational expenditures of different operating room air-handling installations with conventional or ultra-clean air supply systems

Journal of Building Engineering - Tập 78 - Trang 107714 - 2023
J.L.A. Lans1,2, N.M.C. Mathijssen3,2, A.A.L. Traversari4, I.M. Jacobs5, J.J. van den Dobbelsteen6, M. van der Elst6,7, P.G. Luscuere1
1Faculty Architecture and the Built Environment, Delft University of Technology, the Netherlands
2Reinier de Graaf Hospital, Delft, the Netherlands
3Reinier Haga Orthopedic Center, Zoetermeer, the Netherlands
4Netherlands Organization for Applied Scientific Research (TNO), The Netherlands
5Sweegers en de Bruijn, the Netherlands
6Faculty of Mechanical, Maritime and Materials Engineering (3mE), Delft University of Technology, the Netherlands
7Department of Surgery and Trauma, Reinier de Graaf Hospital, Delft, the Netherlands

Tài liệu tham khảo

van Gaever, 2014, Thermal comfort of the surgical staff in the operating room, Build. Environ., 81, 10.1016/j.buildenv.2014.05.036 Lans, 2022, Operating room ventilation systems: recovery degree, cleanliness recovery rate and air change effectiveness in an ultra-clean area, J. Hosp. Infect. 2015 HTM-03-01 Part A. (n.d). Part A: the Concept, Design, Specification, Installation and Acceptance Testing of Healthcare Ventilation Systems Classification: Official Publications approval reference: PAR38. Schweizerischer Verein von Gebäudetechnik-Ingenieuren, 2015 DIN 1946-4: 2018-09, 2018 Kennisinstituut van de federatie van medisch specialisten, 2022 NF S 90 351, 2013 Langvatn, 2020, Operating room ventilation and the risk of revision due to infection after total hip arthroplasty: assessment of validated data in the Norwegian Arthroplasty Register, J. Hosp. Infect., 105, 216, 10.1016/j.jhin.2020.04.010 Kirschbaum, 2020, Laminar air flow reduces particle load in TKA—even outside the LAF panel: a prospective, randomized cohort study, Knee Surg. Sports Traumatol. Arthrosc. Surial, 2022, Better operating room ventilation as determined by a novel ventilation index is associated with lower rates of surgical site infections, Ann. Surg., 276, e353, 10.1097/SLA.0000000000005670 Cao, 2019, Laminar airflow and mixing ventilation: which is better for operating room airflow distribution near an orthopedic surgical patient?, Am. J. Infect. Control, 47, 737, 10.1016/j.ajic.2018.11.023 Romano, 2020, Operating theatre ventilation systems and their performance in contamination control: “at rest” and “in operation” particle and microbial measurements made in an Italian large and multi-year inspection campaign, Int. J. Environ. Res. Publ. Health, 17, 10.3390/ijerph17197275 World Health Organization, 2016 Centers for Disease control and Prevention, 2019 Cacciari, 2004, Cost evaluation of a ventilation system for operating theatre: an ultraclean design versus a conventional one, Ann. Ig. Med. Preventiva Comunita, 16 Breier, 2011, Laminar airflow ceiling size: No impact on infection rates following hip and knee prosthesis, Infect. Control Hosp. Epidemiol., 32, 1097, 10.1086/662182 Brandt, 2008, Operating room ventilation with laminar airflow shows no protective effect on the surgical site infection rate in orthopedic and abdominal surgery, Ann. Surg., 248, 695, 10.1097/SLA.0b013e31818b757d Weinstein, 2017, Laminar airflow and surgical site infections: the evidence is blowing in the wind, Lancet Infect. Dis., 17, 472, 10.1016/S1473-3099(17)30060-9 Whyte, 2019, Ultraclean air systems and the claim that laminar airflow systems fail to prevent deep infections after total joint arthroplasty, J. Hosp. Infect., 103, e9, 10.1016/j.jhin.2019.04.021 Sdino, 2021, Hospital construction cost affecting their lifecycle: an Italian overview, Healthcare (Switzerland), 9 NEN-EN 1822-1:2019 en, 2019 Knudsen, 2021, Laminar airflow decreases microbial air contamination compared with turbulent ventilated operating theatres during live total joint arthroplasty: a nationwide survey, J. Hosp. Infect., 113, 10.1016/j.jhin.2021.04.019 Jutte, 2017, Laminar flow: the better choice in orthopaedic implants, Lancet Infect. Dis., 17, 695, 10.1016/S1473-3099(17)30342-0 NICE guideline, 2020 Badia, 2017, Impact of surgical site infection on healthcare costs and patient outcomes: a systematic review in six European countries, J. Hosp. Infect., 96 Piednoir, 2021, The socioeconomic impact of surgical site infections, Front. Public Health, 9, 10.3389/fpubh.2021.712461 Kurtz, 2012, Economic burden of periprosthetic joint infection in the United States, J. Arthroplasty, 27 Kurtz, 2007, Projections of primary and revision hip and knee arthroplasty in the United States from 2005 to 2030, J. Bone Joint Surg., 89, 10.2106/00004623-200704000-00012 Centers for Disease Control and Prevention (U.S.), 2019, National center for emerging zoonotic and infectious diseases (U.S.). Division of healthcare quality promotion. Antibiotic resistance coordination and strategy unit, Antibiotic Resistance Threats U.S.