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Clinical evaluation of fever-screening thermography: impact of consensus guidelines and facial measurement location.
Zhou, Yangling; Ghassemi, Pejman; Chen, Michelle; McBride, David; Casamento, Jon P; Pfefer, T Joshua; Wang, Quanzeng.
  • Zhou Y; Food and Drug Administration, Center for Devices and Radiological Health, Silver Spring, Maryland, United States.
  • Ghassemi P; University of Maryland, Department of Mechanical Engineering, Baltimore County, Maryland, United States.
  • Chen M; Food and Drug Administration, Center for Devices and Radiological Health, Silver Spring, Maryland, United States.
  • McBride D; Food and Drug Administration, Center for Devices and Radiological Health, Silver Spring, Maryland, United States.
  • Casamento JP; Johns Hopkins University, Department of Chemical and Biomolecular Engineering, Baltimore, Maryland, United States.
  • Pfefer TJ; University of Maryland, University Health Center, College Park, Maryland, United States.
  • Wang Q; Food and Drug Administration, Center for Devices and Radiological Health, Silver Spring, Maryland, United States.
J Biomed Opt ; 25(9)2020 09.
Article in English | MEDLINE | ID: covidwho-760198
ABSTRACT

SIGNIFICANCE:

Infrared thermographs (IRTs) have been used for fever screening during infectious disease epidemics, including severe acute respiratory syndrome, Ebola virus disease, and coronavirus disease 2019 (COVID-19). Although IRTs have significant potential for human body temperature measurement, the literature indicates inconsistent diagnostic performance, possibly due to wide variations in implemented methodology. A standardized method for IRT fever screening was recently published, but there is a lack of clinical data demonstrating its impact on IRT performance.

AIM:

Perform a clinical study to assess the diagnostic effectiveness of standardized IRT-based fever screening and evaluate the effect of facial measurement location.

APPROACH:

We performed a clinical study of 596 subjects. Temperatures from 17 facial locations were extracted from thermal images and compared with oral thermometry. Statistical analyses included calculation of receiver operating characteristic (ROC) curves and area under the curve (AUC) values for detection of febrile subjects.

RESULTS:

Pearson correlation coefficients for IRT-based and reference (oral) temperatures were found to vary strongly with measurement location. Approaches based on maximum temperatures in either inner canthi or full-face regions indicated stronger discrimination ability than maximum forehead temperature (AUC values of 0.95 to 0.97 versus 0.86 to 0.87, respectively) and other specific facial locations. These values are markedly better than the vast majority of results found in prior human studies of IRT-based fever screening.

CONCLUSION:

Our findings provide clinical confirmation of the utility of consensus approaches for fever screening, including the use of inner canthi temperatures, while also indicating that full-face maximum temperatures may provide an effective alternate approach.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: Pneumonia, Viral / Body Temperature / Thermography / Coronavirus Infections / Face / Fever Type of study: Diagnostic study / Experimental Studies / Prognostic study Limits: Adolescent / Adult / Aged / Female / Humans / Male / Middle aged / Young adult Language: English Journal subject: Biomedical Engineering / Ophthalmology Year: 2020 Document Type: Article Affiliation country: 1.Jbo.25.9.097002

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Full text: Available Collection: International databases Database: MEDLINE Main subject: Pneumonia, Viral / Body Temperature / Thermography / Coronavirus Infections / Face / Fever Type of study: Diagnostic study / Experimental Studies / Prognostic study Limits: Adolescent / Adult / Aged / Female / Humans / Male / Middle aged / Young adult Language: English Journal subject: Biomedical Engineering / Ophthalmology Year: 2020 Document Type: Article Affiliation country: 1.Jbo.25.9.097002