Evaluation of an enhanced pulse oximeter auditory display: a simulaion study.
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Where this comes from
- Record sourced from PubMed, PMID 32682554.
- Also identified by DOI 10.1016/j.bja.2020.05.038.
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Abstract
We compared anaesthetists' ability to identify haemoglobin oxygen saturation (SpO<sub>2</sub>) levels using two auditory displays: one based on a standard pulse oximeter display (varying pitch plus alarm) and the other enhanced with additional sound properties (varying pitch plus tremolo and acoustic brightness) to differentiate SpO<sub>2</sub> ranges. In a counter-balanced crossover study in a simulator, 20 experienced anaesthetists supervised a junior colleague (an actor) managing two airway surgery scenarios: once while using the enhanced auditory display and once while using a standard auditory display. Participants were distracted with other tasks such as paperwork and workplace interruptions, but were required to identify when SpO<sub>2</sub> transitioned between pre-set ranges (target, low, critical) and when other vital signs transitioned out of a target range. They also identified the range once a transition had occurred. Visual displays were available for all monitored vital signs, but the numerical value for SpO<sub>2</sub> was excluded. Participants were more accurate and faster at detecting transitions to and from the target SpO<sub>2</sub> range when using the enhanced display (100.0%, 3.3 s) than when using the standard display plus alarm (73.2%, 27.4 s) (P<0.001 and P=0.004, respectively). They were also more accurate at identifying the SpO<sub>2</sub> range once a transition had occurred when using the enhanced display (100.0%) than when using the standard display plus alarm (57.1%; P<0.001). The enhanced auditory display helps anaesthetists judge SpO<sub>2</sub> levels more effectively than current auditory displays and may facilitate 'eyes-free' monitoring.
Medical subject headings
- Data Display
- Oximetry