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2.
Jt Comm J Qual Patient Saf ; 45(10): 686-693, 2019 10.
Artigo em Inglês | MEDLINE | ID: mdl-31371099

RESUMO

BACKGROUND: Postoperative urinary tract infection (UTI) is a frequent complication that diminishes patient experience and incurs substantial costs. The purpose of this project was to develop a urinary tract care assessment tool that would lead to actionable quality improvement initiatives. METHODS: Multidisciplinary teams at a single institution developed the S.T.O.P. UTI algorithm to assess elements related to urinary catheter care: Sterile catheter placement, Timely catheter removal, Optimal collection bag position, and Proper urine sampling for urinalysis and culture. Based on this evaluation, a targeted intervention was applied to address deficient areas in surgical patients. UTI rates were monitored. RESULTS: The assessment revealed that best practice for sterile placement was being performed but that time to removal, optimal positioning, and proper sampling could be improved. Providers were educated on best practice for catheter removal, nurses placed a reminder note on the chart, personnel were taught about optimal catheter positioning, and nursing assistants were educated on best practices for collection of urine. From 2012 to 2015, non-risk-adjusted UTI rates in surgical patients decreased from 2.90% to 0.46% (p = 0.0003), and the American College of Surgeons National Surgical Quality Improvement Program risk-adjusted comparison improved from the 8th to the 4th decile. Simultaneously, hospitalwide catheter-associated UTI rates also decreased, from 2.24/1,000 catheter-days in 2014 to 0.70/1,000 catheter-days in 2016 (p < 0.001). CONCLUSION: The S.T.O.P. UTI algorithm is a tool that hospitals can use to systematically assess UTI processes. The program can identify areas for improvement specific to an institution, directing the allocation of quality improvement resources to decrease both surgical and medical UTIs.


Assuntos
Infecções Relacionadas a Cateter/prevenção & controle , Infecção Hospitalar/prevenção & controle , Complicações Pós-Operatórias/prevenção & controle , Melhoria de Qualidade/organização & administração , Infecções Urinárias/prevenção & controle , Algoritmos , Protocolos Clínicos/normas , Humanos , Melhoria de Qualidade/normas , Fatores de Risco
3.
BMC Infect Dis ; 17(1): 672, 2017 10 10.
Artigo em Inglês | MEDLINE | ID: mdl-29017457

RESUMO

BACKGROUND: Environmental cleanliness is one of the contributing factors for surgical site infections in the operating rooms (ORs). To decrease environmental contamination, pulsed xenon ultraviolet (PX-UV), an easy and safe no-touch disinfection system, is employed in several hospital environments. The positive effect of this technology on environmental decontamination has been observed in patient rooms and ORs during the end-of-day cleaning but so far, no study explored its feasibility between surgical cases in the OR. METHODS: In this study, 5 high-touch surfaces in 30 ORs were sampled after manual cleaning and after PX-UV intervention mimicking between-case cleaning to avoid the disruption of the ORs' normal flow. The efficacy of a 1-min, 2-min, and 8-min cycle were tested by measuring the surfaces' contaminants by quantitative cultures using Tryptic Soy Agar contact plates. RESULTS: We showed that combining standard between-case manual cleaning of surfaces with a 2-min cycle of disinfection using a portable xenon pulsed ultraviolet light germicidal device eliminated at least 70% more bacterial load after manual cleaning. CONCLUSIONS: This study showed the proof of efficacy of a 2-min cycle of PX-UV in ORs in eliminating bacterial contaminants. This method will allow a short time for room turnover and a potential reduction of pathogen transmission to patients and possibly surgical site infections.


Assuntos
Desinfecção/métodos , Salas Cirúrgicas , Carga Bacteriana/efeitos da radiação , Desinfecção/instrumentação , Humanos , Salas Cirúrgicas/métodos , Raios Ultravioleta , Xenônio
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