Smartphone monitoring of in-ambulance vibration and noise

Author:

Partridge Tom1ORCID,Gherman Lorelei1,Morris David1,Light Roger1,Leslie Andrew2,Sharkey Don3,McNally Donal1,Crowe John1

Affiliation:

1. Bioengineering Research Group, Faculty of Engineering, The University of Nottingham, Nottingham, UK

2. CenTre Neonatal Transport, University Hospitals of Leicester, Leicester, UK

3. Academic Child Health, School of Medicine, University Hospital, The University of Nottingham, Nottingham, UK

Abstract

Transferring sick premature infants between hospitals increases the risk of severe brain injury, potentially linked to the excessive exposure to noise, vibration and driving-related accelerations. One method of reducing these levels may be to travel along smoother and quieter roads at an optimal speed, however this requires mass data on the effect of roads on the environment within ambulances. An app for the Android operating system has been developed for the purpose of recording vibration, noise levels, location and speed data during ambulance journeys. Smartphone accelerometers were calibrated using sinusoidal excitation and the microphones using calibrated pink noise. Four smartphones were provided to the local neonatal transport team and mounted on their neonatal transport systems to collect data. Repeatability of app recordings was assessed by comparing 37 journeys, made during the study period, along an 8.5 km single carriageway. The smartphones were found to have an accelerometer accurate to 5% up to 55 Hz and microphone accurate to 0.8 dB up to 80 dB. Use of the app was readily adopted by the neonatal transport team, recording more than 97,000 km of journeys in 1 year. To enable comparison between journeys, the 8.5 km route was split into 10 m segments. Interquartile ranges for vehicle speed, vertical acceleration and maximum noise level were consistent across all segments (within 0.99 m . s−1, 0.13 m · s−2 and 1.4 dB, respectively). Vertical accelerations registered were representative of the road surface. Noise levels correlated with vehicle speed. Android smartphones are a viable method of accurate mass data collection for this application. We now propose to utilise this approach to reduce potential harmful exposure, from vibration and noise, by routing ambulances along the most comfortable roads.

Funder

Engineering and Physical Sciences Research Council

jaguar land rover

National Institute for Health Research

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Medicine

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