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PubMed · 15786380

[Protocols and procedures].

Abstract

Evidence-based nursing increases behavior uniformity during everyday activities and in critical or complex situations. A recorded and programmed activity, the foreseeing of resources, the checking of application modalities and outcome evolution, and warning of complications, are the basis for a good pre-ordered flow chart. Nurses themselves build valuable protocols for every care procedure. This study describes central venous catheter (CVC) care as an example of a useful procedure.

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M Peafrini, R Fabris, M Bianchi. [Protocols and procedures].. https://pubmed.ncbi.nlm.nih.gov/15786380/

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[Subclavian thrombosis after port system implantation].

The use of implanted central venous catheters with ports has become almost irreplaceable in clinical treatment of cancer patients with advanced disease. It improves the patient's quality of life and simplifies medical treatment. For safe use during outpatient follow-up treatment, possible complications such as wound infections, thrombosis or even pulmonary embolism have to be considered. The incidence of catheter-associated thrombosis in cancer patients has been estimated as 25-66% in screening evaluations. Clinical symptoms were present in only in 6-28% of all patients with diagnosed thromboses. We report on a patient with metastatic malignant melanoma, who developed a deep arm vein thrombosis two weeks after port implantation. The prognosis of deep arm vein thrombosis is determined by the development of pulmonary embolism (8-36%). In such cases, early diagnosis and treatment are essential for the patient's survival.

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Device-associated nosocomial infections in 55 intensive care units of 8 developing countries.

BACKGROUND: Health care-associated infections from invasive medical devices in the intensive care unit (ICU) are a major threat to patient safety. Most published studies of ICU-acquired infections have come from industrialized western countries. In a Centers for Disease Control and Prevention (CDC) National Nosocomial Infections Surveillance (NNIS) System report, the U.S. pooled mean rates of central venous catheter (CVC)-related bloodstream infections, ventilator-associated pneumonia, and catheter-associated urinary tract infections were 4.0 per 1000 CVC days, 5.4 per 1000 mechanical ventilator days, and 3.9 per Foley catheter days, respectively. OBJECTIVE: To ascertain the incidence of device-associated infections in the ICUs of developing countries. DESIGN: Multicenter, prospective cohort surveillance of device-associated infection by using the CDC NNIS System definitions. SETTING: 55 ICUs of 46 hospitals in Argentina, Brazil, Colombia, India, Mexico, Morocco, Peru, and Turkey that are members of the International Nosocomial Infection Control Consortium (INICC). MEASUREMENTS: Rates of device-associated infection per 100 patients and per 1000 device days. RESULTS: During 2002-2005, 21,069 patients who were hospitalized in ICUs for an aggregate 137,740 days acquired 3095 device-associated infections for an overall rate of 14.7% or 22.5 infections per 1000 ICU days. Ventilator-associated pneumonia posed the greatest risk (41% of all device-associated infections or 24.1 cases [range, 10.0 to 52.7 cases] per 1000 ventilator days), followed by CVC-related bloodstream infections (30% of all device-associated infections or 12.5 cases [range, 7.8 to 18.5 cases] per 1000 catheter days) and catheter-associated urinary tract infections (29% of all device-associated infections or 8.9 cases [range, 1.7 to 12.8 cases] per 1000 catheter days). Notably, 84% of Staphylococcus aureus infections were caused by methicillin-resistant strains, 51% of Enterobacteriaceae isolates were resistant to ceftriaxone, and 59% of Pseudomonas aeruginosa isolates were resistant to fluoroquinolones. The crude mortality rate for patients with device-associated infections ranged from 35.2% (for CVC-associated bloodstream infection) to 44.9% (for ventilator-associated pneumonia). LIMITATIONS: These initial data are not adequate to represent any entire country, and likely variations in the efficiency of surveillance and institutional resources may have affected the rates that were detected. CONCLUSIONS: Device-associated infections in the ICUs of these developing countries pose greater threats to patient safety than in U.S. ICUs. Active infection control programs that perform surveillance of infection and implement guidelines for prevention can improve patient safety and must become a priority in every country.

Catheterization, Central Venous↗

Central venous cannulation: are routine chest radiographs necessary after B-mode and colour Doppler sonography check?

BACKGROUND: After the insertion of a central venous catheter, a chest radiograph is usually obtained to ensure correct positioning of the catheter tip. OBJECTIVE: To determine in a paediatric population whether B-mode and colour Doppler sonography after central venous access is useful to evaluate catheter position, thus obviating the need for a postprocedural radiograph. MATERIALS AND METHODS: A prospective study of 107 consecutive central venous access procedures placed in a paediatric intensive care unit was performed. At the end of the procedure, B-mode and colour Doppler sonography were used to assess catheter position and check for complications. A postprocedural chest radiograph was obtained in all patients. RESULTS: In 96 patients postprocedural B-mode and colour Doppler sonography showed colour Doppler signals within the vena cava. Among the 11 patients predicted to have a potential complication, there was one pneumothorax and ten malpositions. Chest radiography showed a total of 13 complications-1 pneumothorax and 12 malpositions. The concordance between colour Doppler sonography and chest radiography was 98.1% in the detection of catheter position; sonography had a sensitivity of 84.6% and a specificity of 100%. CONCLUSIONS: The close concordance between B-mode and colour Doppler sonography and chest radiography justifies the more frequent use of sonography to evaluate catheter position because ionizing radiation is eliminated. Chest radiography may then be performed only when there is suspected inappropriate catheter tip position after sonography.

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