AI Article Synopsis

  • The COVID-19 pandemic has led to the development of contactless patient evaluation methods in hospitals to reduce virus transmission and conserve protective gear.
  • A mobile robotic system named Dr. Spot has been created to remotely monitor vital signs such as skin temperature, respiratory rate, and heart rate, allowing healthcare workers to maintain social distancing.
  • The system uses advanced techniques to improve measurement accuracy, achieving significant reductions in temperature error and providing reliable monitoring results in various conditions and distances.

Article Abstract

The COVID-19 pandemic has accelerated methods to facilitate contactless evaluation of patients in hospital settings. By minimizing in-person contact with individuals who may have COVID-19, healthcare workers can prevent disease transmission and conserve personal protective equipment. Obtaining vital signs is a ubiquitous task that is commonly done in person by healthcare workers. To eliminate the need for in-person contact for vital sign measurement in the hospital setting, we developed Dr. Spot, a mobile quadruped robotic system. The system includes IR and RGB cameras for vital sign monitoring and a tablet computer for face-to-face medical interviewing. Dr. Spot is teleoperated by trained clinical staff to simultaneously measure the skin temperature, respiratory rate, and heart rate while maintaining social distancing from patients and without removing their mask. To enable accurate, contactless measurements on a mobile system without a static black body as reference, we propose novel methods for skin temperature compensation and respiratory rate measurement at various distances between the subject and the cameras, up to 5 m. Without compensation, the skin temperature MAE is 1.3°C. Using the proposed compensation method, the skin temperature MAE is reduced to 0.3°C. The respiratory rate method can provide continuous monitoring with a MAE of 1.6 BPM in 30 s or rapid screening with a MAE of 2.1 BPM in 10 s. For the heart rate estimation, our system is able to achieve a MAE less than 8 BPM in 10 s measured in arbitrary indoor light conditions at any distance below 2 m.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9096356PMC
http://dx.doi.org/10.34133/2022/9780497DOI Listing

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