Intelligence and global health: assessing the role of open source and social media intelligence analysis in infectious disease outbreaks

Journal of Public Health - Tập 26 - Trang 509-514 - 2018
Rose Bernard1,2, G. Bowsher1, C. Milner1, P. Boyle3, P. Patel4, R. Sullivan1
1Conflict and Health Research Group, King's College London, London, UK
2King’s Centre for Global Health, London, UK
3International Prevention Research Institute, Lyon, France
4Department of War Studies, King’s College London, London, UK

Tóm tắt

Open Source Intelligence (OSINT) and Signals Intelligence (SIGINT) from the clandestine intelligence sector are being increasingly employed in infectious disease outbreaks. The purpose of this article is to explore how such tools might be employed in the detection, reporting, and control of outbreaks designated as a ‘threat’ by the global community. It is also intended to analyse previous use of such tools during the Ebola and SARS epidemics and to discuss key questions regarding the ethics and legality of initiatives that further blur the military and humanitarian spaces. We undertake qualitative analysis of current discussions on OSINT and SIGINT and their intersection with global health. We also review current literature and describe the debates. We built on quantitative and qualitative research done into current health collection capabilities. This article presents an argument for the use of OSINT in the detection of infectious disease outbreaks and how this might occur. We conclude that there is a place for OSINT and SIGINT in the detection and reporting of outbreaks. However, such tools are not sufficient on their own and must be corroborated for the intelligence to be relevant and actionable. Finally, we conclude that further discussion on key ethical issues needs to take place before such research can continue. In particular, this involves questions of jurisdiction, data ownership, and ethical considerations.

Tài liệu tham khảo

Aid M (2003) All Glory is Fleeting: SIGINT and the Fight Against International Terrorism. Intell Natl Secur 18:72–120. https://doi.org/10.1080/02684520310001688880 Barboza P, Vaillant L, Le Strat Y, Hartley D, Nelson N, Madudeku A, Madoff L, Linge J, Collier N, Brownstein J, Astagneau P (2014) Factors influencing performance of internet-based biosurveillance systems used in epidemic intelligence of early detection of infectious diseases outbreaks. PLoS One 9:90536. https://doi.org/10.1371/journal.pone.0090536 Birnbaum J (2013) Public Health, Intelligence and National Security. In: Mordini E, Green M (eds) Internet-based Intelligence in Public Health Emergencies: Early Detection and Response in Disease Outbreak Crises. IOS Press, Amsterdam Bowsher G, Milner C, Sullivan R (2016) Medical intelligence, security and global health: the foundations of a new health agenda. J R Soc Med 109:269–273 Bradwell P (2010) Private lives: a people’s inquiry into personal information. Demos, London https://www.demos.co.uk/files/Private_Lives_-_web.pdf Brownstein JS, Freifeld CC, Reis BT, Mandl KD (2008) Surveillance sans Frontieres: internet-based emerging infectious disease intelligence and the HealthMap project. PLoS Med 5:e151. https://doi.org/10.1371/journal.pmed.0050151 Clunan C (2006) Civil-military medicine: on dangerous ground. The Naval Postgraduate School Institutional Archive, US, Calhough https://calhoun.nps.edu/bitstream/handle/10945/47138/ADA489558.pdf?sequence=1 Cook S, Conrad C, Fowlkes A, Mohebbi M (2011) Assessing Google flue trends performance in the United States during the 2009 influenza virus a (H1N1) pandemic. PLoS One 6:e23610. https://doi.org/10.1371/journal.pone.0023610 Eysenbach G (2003) SARS and population health technology. J Med Internet Res 5:e14. https://doi.org/10.2196/jmir.5.2.e14 Freifeld C, Chunara R, Mekaru S, Chan E, Kass-Hout T, Ayala Iacucci A, Brownstein J (2010) Participatory epidemiology: use of mobile phones for community-based health reporting. PLoS Med 7:e1000376. https://doi.org/10.1371/journal.pmed.1000376 Gao H, Barbier G, Goolsby R (2011) Harnessing the Crowdsourcing power of social Media for Disaster Relief. IEEE Intell Syst 26:10–14. https://doi.org/10.1109/MIS.2011.52 Greenwald G (2015) No place to hide. Hamish Hamilton, London Grein T (2000) Rumors of Disease in the Global Village: Outbreak Verification. Emerg Infect Dis 6:97–102. https://doi.org/10.3201/eid0602.000201 Hulnick A (2002) The downside of open source intelligence. Int J Intell Counterintell 15:565–579. https://doi.org/10.1080/08850600290101767 H.R. 1815 (109th): National Defense Authorization Act for Fiscal Year 2006. United States. Available at https://www.govtrack.us/congress/bills/109/hr1815/text. Last accessed 01 February 2018 Kickbusch I, Orbinski J, Winkler T, Schnabel A (2015) We need a sustainable development goal 18 on global health security. Lancet 385:1069 Koplan J, Bond T, Merson M, Reddy K, Rodriguez M, Sewankambo N, Wasserheit J (2009) Towards a common definition of global health. Lancet 373:1993–1995. https://doi.org/10.1016/S0140-6736(09)60332-9 Lazer D, Kennedy R, King G, Vespigiani A (2014) The Parable of google flu: traps in big data analysis. Science 343:1203–1205. https://doi.org/10.1126/science.1248506 Lerbinger O (2012) The crisis manager. Routledge, New York MacAskill E, Hopkins N, Davies N, Ball J (2013) How does GCHQ’s internet surveillance work. The Guardian. Available at http://www.theguardian.com/uk/2013/jun/21/how-does-gchq-internet-surveillance-work. Accessed 1 Feb 2018 Mawadeku A (2007) Global Public Health Surveillance: The Role of Nontraditional Surveillance Tools. In: Lemon S (ed) Global Infectious Disease Surveillance and Detection: Assessing the Challenges - Finding Solutions. National Academies Press, Washington D.C Milinovich G, Magalhães R, Hu W (2015) Rolse of big data in the early detection of Ebola and other emerging infectious diseases. Lancet Glob Health 3:e20–e21. https://doi.org/10.1016/S2214-109X(14)70356-0 Omand D, Barlett J, Miller C (2012) Introducing social media intelligence (SOCMINT). Intell Natl Secur 27:801–823. https://doi.org/10.1080/02684527.2012.716965 Pallaris C (2008) Open source intelligence: a strategic enabler of nation security. Centre of Security Studies 3. Available at: http://www.css.ethz.cg/content/dam/ethz/special-interest/gess/cis/center-for-security-studies/pdf/CSS-Analyses-32.pdf. Accessed 24 Oct. 2017 Salathé M, Freifeld C, Mekaru S, Tomasulo A, Brownstein J (2013) Influenza a (H7N9) and the importance of digital epidemiology. N Engl J Med 369:401–404. https://doi.org/10.1056/NEJMp1307752 Smith M (2017) International security. Palgrave Macmillan, Basingstoke United Nations Office for the Coordination of Humanitarian Affairs (2011) Libya Crisis Map Deployment [online]. Available at: https://docs.google.com/file/d/0By08EjY3-T3RR0FqV11zRldveE0/edit. Accessed 24 Oct 2017 Wenham C (2016) Digitalising disease surveillance: the global safety net. Glob Health Gov 10:124–137 World Health Organisation (2008) International health regulations. WHO, Geneva World Health Organisation (2014) Early detection, assessment and response to acute public health events: implementation of early warning and response with a focus on even based surveillance. WHO, Geneva Zook M, Graham M, Shelton T, Gorman S (2010) Volunteered geographic information and Crowdsourced disaster relief: a case study of the Haitian earthquake. World Med Health Policy 2:7–33. https://doi.org/10.2202/1948-4682.1069