Electronic Documentation of Central Venous Catheter—Days: Validation Is Essential

2013 ◽  
Vol 34 (09) ◽  
pp. 899-907 ◽  
Author(s):  
Sheri Chernetsky Tejedor ◽  
Gina Garrett ◽  
Jesse T. Jacob ◽  
Ellen Meyer ◽  
Mary Dent Reyes ◽  
...  

Background.Measurement of central line-associated bloodstream infection (CLABSI) rates outside of intensive care units is challenged by the difficulty in reliably determining central venous catheter (CVC) use. The National Healthcare Safety Network (NHSN) allows for use of electronic data for determination of CVC-days, but validation of electronic data has not been studied systematically.Objective.To design and validate a process to reliably measure CVC-days outside of the intensive care units that leverages electronic documentation.Methods.Thirty-four inpatient wards at 2 academic hospitals using a common electronic platform for nursing documentation were studied. Electronic queries were created to capture patient and CVC information, and tools and processes for tracking and reporting errors in documentation were developed. Strategies to validate electronic data included comparisons with manual CVC-day determinations and automated data validation using customized tools. Interventions included redesign of documentation interface, real-time audit with feedback of errors, and education. The primary outcome was patient-level total error rate in electronic CVC-day measurement compared with manually counted CVC-days.Results.At baseline, there were a mean (± standard deviation) of 0.32 ± 0.25 electronic CVC-day errors (omission and commission errors summed and counted equally) per manually counted CVC-day. After several process improvement cycles over 7 months, the error rate decreased to <0.05 errors per CVC-day and remained at or below this level for 2 years.Conclusions.Baseline electronic CVC-day counts had a high error rate. Stepwise interventions reduced errors to consistently low levels. Validation of electronic calculation of CVC-days is essential to ensure accuracy, particularly if these data will be used for interinstitutional comparison.

2013 ◽  
Vol 34 (9) ◽  
pp. 899-907 ◽  
Author(s):  
Sheri Chernetsky Tejedor ◽  
Gina Garrett ◽  
Jesse T. Jacob ◽  
Ellen Meyer ◽  
Mary Dent Reyes ◽  
...  

Background.Measurement of central line-associated bloodstream infection (CLABSI) rates outside of intensive care units is challenged by the difficulty in reliably determining central venous catheter (CVC) use. The National Healthcare Safety Network (NHSN) allows for use of electronic data for determination of CVC-days, but validation of electronic data has not been studied systematically.Objective.To design and validate a process to reliably measure CVC-days outside of the intensive care units that leverages electronic documentation.Methods.Thirty-four inpatient wards at 2 academic hospitals using a common electronic platform for nursing documentation were studied. Electronic queries were created to capture patient and CVC information, and tools and processes for tracking and reporting errors in documentation were developed. Strategies to validate electronic data included comparisons with manual CVC-day determinations and automated data validation using customized tools. Interventions included redesign of documentation interface, real-time audit with feedback of errors, and education. The primary outcome was patient-level total error rate in electronic CVC-day measurement compared with manually counted CVC-days.Results.At baseline, there were a mean (± standard deviation) of 0.32 ± 0.25 electronic CVC-day errors (omission and commission errors summed and counted equally) per manually counted CVC-day. After several process improvement cycles over 7 months, the error rate decreased to <0.05 errors per CVC-day and remained at or below this level for 2 years.Conclusions.Baseline electronic CVC-day counts had a high error rate. Stepwise interventions reduced errors to consistently low levels. Validation of electronic calculation of CVC-days is essential to ensure accuracy, particularly if these data will be used for interinstitutional comparison.


2012 ◽  
Vol 17 (4) ◽  
pp. 210-213 ◽  
Author(s):  
Chuck Ramirez ◽  
Antonina M. Lee ◽  
Ken Welch

Abstract Background: Central line-associated blood stream infection (CLABSI) rates in adult care intensive care units have been decreasing across the board. However, we continued to see just a few infections in patients whose catheters are in for &gt;4 days. Therefore, we looked at infections associated with intraluminal contamination to help reduce our infection rate. Methods: A protective cap trial was developed and implemented in 2 intensive care units. All of the central venous catheter and intravenous tubing access valves were covered with a protective cap saturated with alcohol. This intervention eliminated the need to wipe off intravenous access points with an alcohol swab. The study was done as a nonrandomized prospective trial occurring March 1, 2011 through February 29, 2012. Results: During 2010, there were 4 CLABSI-related infections. By the end of the trial, we had incurred 1 catheter-associated blood stream infection. CLABSI rate reduced from 1.9 in 2010 to 0.5 during the 1-year trial period. Conclusions: The implementation of the port protector cap system resulted in lower infection rates compared with an alcohol swab technique. Our results indicate that consistent use of the caps in tandem with strict compliance does influence CLABSI rates.


2016 ◽  
Vol 37 (10) ◽  
pp. 1186-1194 ◽  
Author(s):  
Lynne Li ◽  
Elise Fortin ◽  
Claude Tremblay ◽  
Muleka Ngenda-Muadi ◽  
Caroline Quach ◽  
...  

BACKGROUNDFollowing implementation of bundled practices in 2009 in Quebec and Canadian intensive care units (ICUs), we describe CLABSI epidemiology during the last 8 years in the province of Québec (Canada) and compare rates with Canadian and American benchmarks.METHODSCLABSI incidence rates (IRs) and central venous catheter utilization ratios (CVCURs) by year and ICU type were calculated using 2007–2014 data from the Surveillance Provinciale des Infections Nosocomiales (SPIN) program. Using American and Canadian surveillance data, we compared SPIN IRs to rates in other jurisdictions using standardized incidence ratios (SIRs).RESULTSIn total, 1,355 lab-confirmed CLABSIs over 911,205 central venous catheter days (CVC days) were recorded. The overall pooled incidence rate (IR) was 1.49 cases per 1,000 CVC days. IRs for adult teaching ICUs, nonteaching ICUs, neonatal ICUs (NICUs), and pediatric ICUs (PICUs) were 1.04, 0.91, 4.20, and 2.15 cases per 1,000 CVC days, respectively. Using fixed SPIN 2007–2009 benchmarks, CLABSI rates had decreased significantly in all ICUs except for PICUs by 2014. Rates declined by 55% in adult teaching ICUs, 52% in adult nonteaching ICUs, and 38% in NICUs. Using dynamic American and Canadian CLABSI rates as benchmarks, SPIN adult teaching ICU rates were significantly lower and adult nonteaching ICUs had lower or comparable rates, whereas NICU and PICU rates were higher.CONCLUSIONQuébec ICU CLABSI surveillance shows declining CLABSI rates in adult ICUs. The absence of a decrease in CLABSI rate in NICUs and PICUs highlights the need for continued surveillance and analysis of factors contributing to higher rates in these populations.Infect Control Hosp Epidemiol 2016;1–9


2016 ◽  
Vol 29 (6) ◽  
pp. 373
Author(s):  
Jorge Rodrigues ◽  
Andrea Dias ◽  
Guiomar Oliveira ◽  
José Farela Neves

<p><strong>Introduction:</strong> To determine the central-line associated bloodstream infection rate after implementation of central venous catheter-care practice bundles and guidelines and to compare it with the previous central-line associated bloodstream infection rate.<br /><strong>Material and Methods:</strong> A prospective, longitudinal, observational descriptive study with an exploratory component was performed in a Pediatric Intensive Care Unit during five months. The universe was composed of every child admitted to Pediatric Intensive Care Unit who inserted a central venous catheter. A comparative study with historical controls was performed to evaluate the result of the intervention (group 1 <em>versus</em> group 2).<br /><strong>Results:</strong> Seventy five children were included, with a median age of 23 months: 22 (29.3%) newborns; 28 (37.3%) with recent surgery and 32 (43.8%) with underlying illness. A total of 105 central venous catheter were inserted, the majority a single central venous catheter (69.3%), with a mean duration of 6.8 ± 6.7 days. The most common type of central venous catheter was the short-term, non-tunneled central venous catheter (45.7%), while the subclavian and brachial flexure veins were the most frequent insertion sites (both 25.7%). There were no cases of central-line associated bloodstream infection reported during this study. Comparing with historical controls (group 1), both groups were similar regarding age, gender, department of origin and place of central venous catheter insertion. In the current study (group 2), the median length of stay was higher, while the mean duration of central venous catheter (excluding peripherally inserted central line) was similar in both groups. There were no statistical differences regarding central venous catheter caliber and number of lumens. Fewer children admitted to Pediatric Intensive Care Unit had central venous catheter inserted in group 2, with no significant difference between single or multiple central venous catheter.<br /><strong>Discussion:</strong> After multidimensional strategy implementation there was no reported central-line associated bloodstream infection<br /><strong>Conclusions:</strong> Efforts must be made to preserve the same degree of multidimensional prevention, in order to confirm the effective reduction of the central-line associated bloodstream infection rate and to allow its maintenance.</p>


2010 ◽  
Vol 31 (9) ◽  
pp. 964-967 ◽  
Author(s):  
Alfonso Pérez Parra ◽  
María Cruz Menárguez ◽  
María Jesús Pérez Granda ◽  
María Jesús Tomey ◽  
Belén Padilla ◽  
...  

After an educational intervention in 3 intensive care units, 34 central line-associated bloodstream infections occurred in 11,582 central venous catheter [CVC]-days, compared with 45 episodes in 10,661 CVC-days before intervention (4.22 vs 2.94 episodes per 1,000 CVC-days [30.9% reduction]; P = .03, Wilcoxon rank sum test; P = .11, Poisson regression analysis).


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