Development of an infection screening system for entry inspection at airport quarantine stations using ear temperature, heart and respiration rates
After the outbreak of severe acute respiratory syndrome (SARS) in 2003, many international airport quarantine stations conducted fever-based screening to identify infected passengers using infrared thermography for preventing global pandemics. Due to environmental factors affecting measurement of fa...
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Published in | 2013 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC) Vol. 2013; pp. 6716 - 6719 |
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Main Authors | , , , , , , , , , |
Format | Conference Proceeding Journal Article |
Language | English |
Published |
United States
IEEE
01.01.2013
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Subjects | |
Online Access | Get full text |
ISSN | 1094-687X 1557-170X |
DOI | 10.1109/EMBC.2013.6611097 |
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Abstract | After the outbreak of severe acute respiratory syndrome (SARS) in 2003, many international airport quarantine stations conducted fever-based screening to identify infected passengers using infrared thermography for preventing global pandemics. Due to environmental factors affecting measurement of facial skin temperature with thermography, some previous studies revealed the limits of authenticity in detecting infectious symptoms. In order to implement more strict entry screening in the epidemic seasons of emerging infectious diseases, we developed an infection screening system for airport quarantines using multi-parameter vital signs. This system can automatically detect infected individuals within several tens of seconds by a neural-network-based discriminant function using measured vital signs, i.e., heart rate obtained by a reflective photo sensor, respiration rate determined by a 10-GHz non-contact respiration radar, and the ear temperature monitored by a thermography. In this paper, to reduce the environmental effects on thermography measurement, we adopted the ear temperature as a new screening indicator instead of facial skin. We tested the system on 13 influenza patients and 33 normal subjects. The sensitivity of the infection screening system in detecting influenza were 92.3%, which was higher than the sensitivity reported in our previous paper (88.0%) with average facial skin temperature. |
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AbstractList | After the outbreak of severe acute respiratory syndrome (SARS) in 2003, many international airport quarantine stations conducted fever-based screening to identify infected passengers using infrared thermography for preventing global pandemics. Due to environmental factors affecting measurement of facial skin temperature with thermography, some previous studies revealed the limits of authenticity in detecting infectious symptoms. In order to implement more strict entry screening in the epidemic seasons of emerging infectious diseases, we developed an infection screening system for airport quarantines using multi-parameter vital signs. This system can automatically detect infected individuals within several tens of seconds by a neural-network-based discriminant function using measured vital signs, i.e., heart rate obtained by a reflective photo sensor, respiration rate determined by a 10-GHz non-contact respiration radar, and the ear temperature monitored by a thermography. In this paper, to reduce the environmental effects on thermography measurement, we adopted the ear temperature as a new screening indicator instead of facial skin. We tested the system on 13 influenza patients and 33 normal subjects. The sensitivity of the infection screening system in detecting influenza were 92.3%, which was higher than the sensitivity reported in our previous paper (88.0%) with average facial skin temperature. |
Author | Abe, Nobujiro Sun, Guanghao Takei, Osamu Nozaki, Kohei Hakozaki, Yukiya Nakayama, Yosuke Nguyen, Quang Vinh Sugiyama, Youhei Abe, Shigeto Matsui, Takemi |
Author_xml | – sequence: 1 givenname: Guanghao surname: Sun fullname: Sun, Guanghao email: sun-guanghao@sd.tmu.ac.jp organization: Graduate School of System Design, Tokyo Metropolitan University, 6-6, Asahigaoka, Hino, Japan – sequence: 2 givenname: Nobujiro surname: Abe fullname: Abe, Nobujiro organization: Department of Internal Medicine, Japan Self-Defense Forces Central Hospital, 1-2-24 Ikejiri, Setagaya, Tokyo, Japan – sequence: 3 givenname: Youhei surname: Sugiyama fullname: Sugiyama, Youhei organization: Tokyo Metropolitan Government, 8-1 Nishi-Shinjuku, Shinjuku, Japan – sequence: 4 givenname: Quang Vinh surname: Nguyen fullname: Nguyen, Quang Vinh organization: Graduate School of System Design, Tokyo Metropolitan University, 6-6, Asahigaoka, Hino, Japan – sequence: 5 givenname: Kohei surname: Nozaki fullname: Nozaki, Kohei organization: Graduate School of System Design, Tokyo Metropolitan University, 6-6, Asahigaoka, Hino, Japan – sequence: 6 givenname: Yosuke surname: Nakayama fullname: Nakayama, Yosuke organization: Graduate School of System Design, Tokyo Metropolitan University, 6-6, Asahigaoka, Hino, Japan – sequence: 7 givenname: Osamu surname: Takei fullname: Takei, Osamu organization: Research and Development Division, Lifetech Co., Ltd, 4074, Miyadera, Iruma, Saitama, Japan – sequence: 8 givenname: Yukiya surname: Hakozaki fullname: Hakozaki, Yukiya organization: Department of Internal Medicine, Japan Self-Defense Forces Central Hospital, 1-2-24 Ikejiri, Setagaya, Tokyo, Japan – sequence: 9 givenname: Shigeto surname: Abe fullname: Abe, Shigeto organization: Takasaka Clinic, 172-21, Kanesaka, Uchigomiya, Iwaki, Fukushima, Japan – sequence: 10 givenname: Takemi surname: Matsui fullname: Matsui, Takemi organization: Graduate School of System Design, Tokyo Metropolitan University, 6-6, Asahigaoka, Hino, Japan |
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Snippet | After the outbreak of severe acute respiratory syndrome (SARS) in 2003, many international airport quarantine stations conducted fever-based screening to... |
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SubjectTerms | Adult Airports Airports - methods Body Temperature Ear Ear - physiopathology Female Heart Rate Hospitals, Isolation - methods Humans Influenza Male Mass Screening - instrumentation Mass Screening - methods Quarantine - methods Respiratory Rate Severe Acute Respiratory Syndrome - physiopathology Severe Acute Respiratory Syndrome - prevention & control Skin Temperature measurement Temperature sensors |
Title | Development of an infection screening system for entry inspection at airport quarantine stations using ear temperature, heart and respiration rates |
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