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The Vitals Risk Index-Retrospective Performance Analysis of an Automated and Objective Pediatric Early Warning System
Tyler J Gorham1, Steve Rust1, Laura Rust2,3
1Abigail Wexner Research Institute, Nationwide Children's Hospital, Columbus, Ohio.
Insights
The Vitals Risk Index (VRI) is a new tool that uses electronic health records to predict which hospitalized children are likely to get worse. It performs similarly to existing systems in identifying at-risk patients early.
Area of Science:
- Biomedical Informatics
- Clinical Analytics
- Pediatric Critical Care Medicine
Background:
- In-hospital cardiac arrests and emergent pediatric intensive care unit (PICU) transfers are significant patient safety issues.
- Electronic health records and predictive analytics are being explored for early detection of patient decompensation.
Purpose of the Study:
- To develop and validate an automated early warning system score for identifying hospitalized children at risk of clinical deterioration.
- To compare the performance of the Vitals Risk Index (VRI) against an existing early warning system.
Main Methods:
- Utilized electronic health record data from 2011-2017.
- Developed the Vitals Risk Index (VRI) model using five vital signs and oxygen requirement data via multivariate logistic regression.
- Compared VRI to the hospital's existing Pediatric Early Warning Score (PEWS) adaptation in children outside the ICU.
Main Results:
- The VRI model demonstrated comparable performance to the existing Pediatric Early Warning Score (PEWS) in identifying deteriorating patients two hours before an event.
- No significant difference was found between VRI and PEWS in areas under the receiver operating characteristic curve at clinically tolerable false-positive rates (pAUC10).
Conclusions:
- The Vitals Risk Index (VRI) is an objective, simple, and automated predictive analytics tool.
- VRI can effectively identify hospitalized pediatric patients at risk of deterioration outside the ICU setting.
Introduction:
Pediatric in-hospital cardiac arrests and emergent transfers to the pediatric intensive care unit (ICU) represent a serious patient safety concern with associated increased morbidity and mortality. Some institutions have turned to the electronic health record and predictive analytics in search of earlier and more accurate detection of patients at risk for decompensation.
Methods:
Objective electronic health record data from 2011 to 2017 was utilized to develop an automated early warning system score aimed at identifying hospitalized children at risk of clinical deterioration. Five vital sign measurements and supplemental oxygen requirement data were used to build the Vitals Risk Index (VRI) model, using multivariate logistic regression. We compared the VRI to the hospital's existing early warning system, an adaptation of Monaghan's Pediatric Early Warning Score system (PEWS). The patient population included hospitalized children 18 years of age and younger while being cared for outside of the ICU. This dataset included 158 case hospitalizations (102 emergent transfers to the ICU and 56 "code blue" events) and 135,597 control hospitalizations.
Results:
When identifying deteriorating patients 2 hours before an event, there was no significant difference between Pediatric Early Warning Score and VRI's areas under the receiver operating characteristic curve at false-positive rates ≤ 10% (pAUC10 of 0.065 and 0.064, respectively; P = 0.74), a threshold chosen to compare the 2 approaches under clinically tolerable false-positive rates.
Conclusions:
The VRI represents an objective, simple, and automated predictive analytics tool for identifying hospitalized pediatric patients at risk of deteriorating outside of the ICU setting.
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