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Variations in Alarm Burden, Source, and Cause Across Inpatient Units at a Children's Hospital
Nicholas A Clark1,2, Kathryn E Kyler1,2, Geoffrey L Allen1,2
1Children's Mercy Kansas City, Kansas City, Missouri.
Insights
Hospital alarms are frequent, leading to patient safety risks. This study analyzed alarm burden, finding significant variations by unit type, source, and cause, highlighting the need for targeted reduction strategies.
Area of Science:
- Biomedical Engineering
- Patient Safety
- Clinical Informatics
Background:
- Clinical alarms are essential but frequently generate high volumes, contributing to alarm fatigue.
- Alarm fatigue poses significant risks to patient safety in hospital settings.
- Understanding alarm burden is crucial for developing effective mitigation strategies.
Purpose of the Study:
- To quantify the alarm burden over a one-year period in a children's hospital.
- To analyze variations in alarm rates based on unit type, alarm source, and specific causes.
- To identify key drivers of alarm frequency for targeted interventions.
Main Methods:
- Retrospective analysis of inpatient alarm and patient census data from January 1, 2019, to December 31, 2019.
- Inclusion of data from six medical/surgical units (MSU), one pediatric intensive care unit (PICU), and one neonatal intensive care unit (NICU).
- Calculation of alarm rates per patient day (appd) and utilization of Poisson regression for comparative analysis.
Main Results:
- A total of 7,934,997 alarms were recorded over 84,077 patient days, averaging 94.4 appd.
- Alarm rates varied significantly by unit type (NICU: 117.5 appd, PICU: 90.7 appd, MSU: 81.3 appd).
- Pulse oximetry (POx) probes were the most frequent alarm source, with "low oxygen saturation" being the leading cause, particularly in NICU and PICU settings.
Conclusions:
- Clinical alarm frequency and characteristics differ substantially across hospital units, sources, and causes.
- Strategies to reduce alarm burden should consider unit-specific alarm rates and prevalent alarm sources like POx.
- Targeted interventions are necessary to mitigate alarm fatigue and enhance patient safety.
Background And Objectives:
Alarms at hospitals are frequent and can lead to alarm fatigue posing patient safety risks. We aimed to describe alarm burden over a 1-year period and explored variations in alarm rates stratified by unit type, alarm source, and cause.
Methods:
A retrospective study of inpatient alarm and patient census data at 1 children's hospital from January 1, 2019, to December 31, 2019, including 8 inpatient units: 6 medical/surgical unit (MSU), 1 PICU, and 1 NICU. Rates of alarms per patient day (appd) were calculated overall and by unit type, alarm source, and cause. Poisson regression was used for comparisons.
Results:
There were 7 934 997 alarms over 84 077 patient days (94.4 appd). Significant differences in alarm rates existed across inpatient unit types (MSU 81.3 appd, PICU 90.7, NICU 117.5). Pulse oximetry (POx) probes were the alarm source with highest rate, followed by cardiorespiratory leads (54.4 appd versus 31). PICU had lowest rate of POx alarms (33.3 appd, MSU 37.6, NICU 92.6), whereas NICU had lowest rate of cardiorespiratory lead alarms (16.2 appd, MSU 40.1, PICU 31.4). Alarms stratified by cause displayed variation across unit types where "low oxygen saturation" had the highest overall rate, followed by "technical" alarms (43.4 appp versus 16.3). ICUs had higher rates of low oxygenation saturation alarms, but lower rates of technical alarms than MSUs.
Conclusions:
Clinical alarms are frequent and vary across unit types, sources, and causes. Unit-level alarm rates and frequent alarm sources (eg, POx) should be considered when implementing alarm reduction strategies.
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