MILITARY APPLICATION OF SOLDIER REMOTE PHYSIOLOGICAL AND PSYCHOPHYSIOLOGICAL MONITORING IN FOREIGN ARMED FORCES


如何引用文章

全文:

详细

Wearable devices for monitoring the physiological and psychophysiological state of soldiers is part of modern high-tech military medicine, allowing real-time to predict the state of physical and mental health of the soldier. Data on the real combat readiness of military personnel is used to make team decisions. Systems of remote monitoring of physiological and psychophysiological state are also used for carrying out scientific researches in the conditions of a fighting situation or in conditions close to it. (bibliography: 7 refs).

作者简介

A Demkin

S. M. Kirov Military Medical Academy of the Russian Defense Ministry

Saint Petersburg, Russia

O Nagibovich

S. M. Kirov Military Medical Academy of the Russian Defense Ministry

Saint Petersburg, Russia

V Vasil'chenko

S. M. Kirov Military Medical Academy of the Russian Defense Ministry

Saint Petersburg, Russia

参考

  1. Poropatich R. Predictive Health Management (PHM) for Human Assets - Military Perspective. Annual PHM and DX Conferences, Pittsburg; 2016. Available at: https://www.phmsociety.org/sites/phmsociety.org/files/Poropatich.PHM_.3OCT2016.pdf (accessed 02.10.2019).
  2. Friedl K. L. Military applications of soldier physiological monitoring. J. Sci. Med. Sport. 2018; 21 (11): 1147-53. doi: 10.1016/j.jsams.2018.06.004
  3. Soldier Protection System (SPS) - USAASC. Available at: http://asc.army.mil/web/portfolio-item/soldier-protection-system-sps (accessed 01.10.2019).
  4. Real time physiological status monitoring (RT-PSM): accomplishments, requirements and research roadmap. Technical Note NO. TN16-2, USARIEM, March; 2016.
  5. Equivital EQ02+ LifeMonitor. Available at: https://www.equivital.com/assets/common/EQ02+_08_Equivital_Data_Sheets_v8_(003).pdf (accessed 29.09.2019).
  6. Equivital. Available at: https://www.equivital.com/products/military (accessed 29.09.2019)
  7. Mosa I. M., Pattammattel A., Kadimisetty K., Pande P., El-Kady M. F., Bishop G. W., Novak M., Kaner R. B., Basu A. K., Kumar C. V., Rusling J. F. Ultrathin graphene-protein supercapacitors for miniaturized bioelectronics. Adv. Energy Mater. 2017; 7: 1700358. doi: 10.1002/aenm.201700358

补充文件

附件文件
动作
1. JATS XML

版权所有 © Demkin A.D., Nagibovich O.A., Vasil'chenko V.V., 2019

Creative Commons License
此作品已接受知识共享署名-非商业性使用-禁止演绎 4.0国际许可协议的许可。

Согласие на обработку персональных данных

 

Используя сайт https://journals.rcsi.science, я (далее – «Пользователь» или «Субъект персональных данных») даю согласие на обработку персональных данных на этом сайте (текст Согласия) и на обработку персональных данных с помощью сервиса «Яндекс.Метрика» (текст Согласия).