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REVIEW

Risk Assessment Tools from the One Health Perspective: A Narrative Review

ORCID Icon, ORCID Icon & ORCID Icon
Pages 955-972 | Received 09 Oct 2023, Accepted 10 Apr 2024, Published online: 16 Apr 2024

References

  • van Seventer JM, Hochberg NS. Principles of Infectious Diseases: transmission, Diagnosis, Prevention, and Control. Int Encycl of Public Health. 2017;22. doi:10.1016/B978-0-12-803678-5.00516-6
  • Naghavi M. Global, regional, and national age-sex specific all-cause and cause-specific mortality for 240 causes of death, 1990-2013: a systematic analysis for the Global Burden of Disease Study 2013. Lancet. 2015;385:117.
  • Gray A, Sharara F. Global and regional sepsis and infectious syndrome mortality in 2019: a systematic analysis. Lancet Glob Health. 2022;10:S2. doi:10.1016/S2214-109X(22)00131-0
  • Kahn LH. Confronting Zoonoses, Linking Human and Veterinary Medicine. Emerg Infect Dis. 2006;12(4):556. doi:10.3201/eid1204.050956
  • Webster JP, Gower CM, Knowles SCL, Molyneux DH, Fenton A. One health – an ecological and evolutionary framework for tackling Neglected Zoonotic Diseases. Evol Appl. 2016;9(2):313. doi:10.1111/eva.12341
  • Vos T, et al. Global, regional, and national incidence, prevalence, and years lived with disability for 301 acute and chronic diseases and injuries in 188 countries, 1990-2013: a systematic analysis for the Global Burden of Disease Study 2013. Lancet. 2015;386:743–800.
  • Arsalan M, Mubin O, Alnajjar F, Alsinglawi B, Zaki N. Global and Temporal COVID-19 Risk Evaluation. Front Public Health. 2020;8. doi:10.3389/fpubh.2020.00440
  • Understanding Risk. Available from: https://www.undrr.org/building-risk-knowledge/understanding-risk. Accessed April 10, 2024.
  • Davies W. Understanding the strategy. Strategy Leadership. 2000;28(5):25–30. doi: 10.1787/9789264114586-en
  • Chatterjee R, Bajwa S, Dwivedi D, et al. COVID-19 Risk Assessment Tool: dual application of risk communication and risk governance. Progress Disaster Sci. 2020;7:100109. doi:10.1016/j.pdisas.2020.100109
  • Morse SS, et al. Prediction and prevention of the next pandemic zoonosis. Lancet. 2012;380:1956.
  • Šehović AB. SARS and H5N1. Coordinating Global Health Policy Responses. 2017;83. doi:10.1007/978-3-319-52006-3_5
  • McGowan J, Wojahn A, Nicolini JR. Risk Management Event Evaluation and Responsibilities. StatPearls. 2023.
  • Human Health Risk Assessment | US EPA. Available from: https://www.epa.gov/risk/human-health-risk-assessment. Accessed April 10, 2024.
  • Pintye J, Drake AL, Kinuthia J, et al. A Risk Assessment Tool for Identifying Pregnant and Postpartum Women Who May Benefit From Preexposure Prophylaxis. Clinl Infect Dis. 2017;64(6):751–758. doi:10.1093/cid/ciw850
  • Popa R ECDC EUFRAT Tool on line. European Blood Alliance; 2016. Available from: https://europeanbloodalliance.eu/ecdc-eufrat-tool-on-line/. Accessed April 10, 2024.
  • ECDC EUFRAT Tool on line - European Blood Alliance. Available from: https://europeanbloodalliance.eu/ecdc-eufrat-tool-on-line/. Accessed April 10, 2024.
  • Sze To GN, Chao CYH. Review and comparison between the Wells–Riley and dose-response approaches to risk assessment of infectious respiratory diseases. Indoor Air. 2010;20:2–16. doi:10.1111/j.1600-0668.2009.00621.x
  • Hammer CC, Brainard J, Hunter PR. Rapid risk assessment for communicable diseases in humanitarian emergencies: validation of a rapid risk assessment tool for communicable disease risk in humanitarian emergencies. Global Biosecur. 2019;1(2):9. doi:10.31646/gbio.24
  • Mohammadfam I, Sajedi A, Mahmoudi S, Mohammadfam F. Application of Hazard and Operability Study (HAZOP) in Evaluation of Health, Safety and Environmental (HSE) Hazards. Int J Occupational Hygiene. 2012;4:17–20.
  • Maier GU, Love WJ, Karle BM, et al. A novel risk assessment tool for bovine respiratory disease in preweaned dairy calves. J Dairy Sci. 2020;103(10):9301–9317. doi:10.3168/jds.2019-17650
  • Abutarbush SM, Hamdallah A, Hawawsheh M, et al. Implementation of one health approach in Jordan: joint risk assessment of rabies and avian influenza utilizing the tripartite operational tool. One Health. 2022;15:100453. doi:10.1016/j.onehlt.2022.100453
  • Adlam B. Risk Assessment Tool (DAISY) For Emerging Human Infectious Diseases Health Analysis & Information For Action (HAIFA). Int J Med. 2012.
  • Chen S, Chen B, Fath BD. Ecological risk assessment on the system scale: a review of state-of-The-art models and future perspectives. Ecol Modell. 2013;250:25–33. doi:10.1016/j.ecolmodel.2012.10.015
  • El-Ghitany EM, Farghaly AG, Farag S, El-Wahab EWA. Validation of EGCRISC for Chronic Hepatitis C Infection Screening and Risk Assessment in the Egyptian Population. PLoS One. 2016;11(12):e0168649. doi:10.1371/journal.pone.0168649
  • Singhal A, Abraham AR, Singhal P, Raje D, Singhal K. Validation of the All Wales Covid-19 Risk Assessment tool in Practice. The Physician. 2022;7(2):1–14. doi:10.38192/1.7.2.6
  • Peters R, Hipper TJ, Kricun H, Chernak E. A quantitative public health risk assessment tool for planning for at-risk populations. Am J Public Health. 2019;109(S4):S286–S289. doi:10.2105/AJPH.2019.305181
  • Organization, W. H. How to Use WHO Risk Assessment and Mitigation Checklist for Mass Gatherings in the Context of COVID-19; 2020.
  • Neumann G, Kawaoka Y. Predicting the Next Influenza Pandemics. J Infect Dis. 2019;219:S14–S20. doi:10.1093/infdis/jiz040
  • Cáceres P, et al. SARS-CoV-2 in animals used for fur farming GLEWS+ Risk assessment ‘GLEWS+’ is the Joint FAO-OIE-WHO Global Early Warning System for health threats and emerging risks at the human-animal-ecosystems interface SARS-CoV-2 in animals used for fur farming GLEWS+ Risk assessment-NC-SA 3.0 IGO licence. World Health Organization; 2021.
  • Burke SA, Trock SC. Use of Influenza Risk Assessment Tool for Prepandemic Preparedness. Emerg Infect Dis. 2018;24(3):471. doi:10.3201/eid2403.171852
  • Khorram-Manesh A. Facilitating Multiagency Collaboration Before Mass Gatherings - The Development of MAGRAT (Mass Gathering Risk Assessment Tool. Biomed J Sci Tech Res. 2020;24:67.
  • WHO Human Health Risk Assessment Toolkit: chemical Hazards, second edition. Available from: https://www.who.int/publications/i/item/9789240035720. Accessed April 10, 2024.
  • Smeets PWMH, Rietveld LC, Van Dijk JC, Medema GJ. Practical applications of quantitative microbial risk assessment (QMRA) for water safety plans. Wat Sci Technol. 2010;61(6):1561–1568. doi:10.2166/wst.2010.839
  • Rout BK, Sikdar BK. Hazard Identification, Risk Assessment, and Control Measures as an Effective Tool of Occupational Health Assessment of Hazardous Process in an Iron Ore Pelletizing Industry. Indian J Occup Environ Med. 2017;21(2):56–76. doi:10.4103/ijoem.IJOEM_19_16
  • Jahangiri M, Mostafavi A, Choobineh A, et al. Development and Validation of HOSHRA Index for Occupational Safety and Health Risk Assessment in Hospitals. Shiraz E Med J. 2020;21(6). doi:10.5812/semj.95357.
  • Bell E, Turner P, Meinke H, Holbrook N. Developing rural community health risk assessments for climate change: a Tasmanian pilot study. Rural Remote Health. 2015;15:3174.
  • Schijven J, Rijs GBJ, De Roda Husman AM. Quantitative Risk Assessment of FMD Virus Transmission via Water. Risk Anal. 2005;25:13–21. doi:10.1111/j.0272-4332.2005.00563.x
  • Guo Y, Qian H, Sun Z, et al. Assessing and controlling infection risk with Wells-Riley model and spatial flow impact factor (SFIF). Sustain Cities Soc. 2021;67:102719. doi:10.1016/j.scs.2021.102719
  • Ajith S, Arumugaprabu V, Ajith V, Naresh K, Sreekanth PSR. Hazard identification and risk assessment in firework industry. Mater Today Proc. 2022;56:1083–1085. doi:10.1016/j.matpr.2021.10.102
  • Squarzoni-Diaw C, Arsevska E, Kalthoum S, et al. Using a participatory qualitative risk assessment to estimate the risk of introduction and spread of transboundary animal diseases in scarce-data environments. Transbound Emerg Dis. 2021;68(4):1966–1978. doi:10.1111/tbed.13920
  • Hammer CC, Brainard J, Hunter PR. Risk factors and risk factor cascades for communicable disease outbreaks in complex humanitarian emergencies: a qualitative systematic review. BMJ Glob Health. 2018;3(4):e000647. doi:10.1136/bmjgh-2017-000647
  • Kojima G, Walters K, Iliffe S, Taniguchi Y, Tamiya N. Marital Status and Risk of Physical Frailty: a Systematic Review and Meta-analysis. J Am Med Dir Assoc. 2020;21(3):322–330. doi:10.1016/j.jamda.2019.09.017
  • Hundal JS, Sodhi SS, Gupta A, Singh J, Chahal US. Awareness, knowledge, and risks of zoonotic diseases among livestock farmers in Punjab. Vet World. 2016;9(2):186. doi:10.14202/vetworld.2016.186-191
  • Adam-Poupart A, Drapeau L-M, Bekal S, et al. Foodborne and Animal Contact Disease Outbreaks: occupations at risk of contracting zoonoses of public health significance in Québec. Canada Communicable Dis Report. 2021;47(1):47. doi:10.14745/ccdr.v47i01a08
  • Abeya SG, Barkesa SB, Sadi CG, et al. Adherence to COVID-19 preventive measures and associated factors in Oromia regional state of Ethiopia. PLoS One. 2021;16(10):e0257373. doi:10.1371/journal.pone.0257373
  • Eisen L, Wong D, Shelus V, Eisen RJ. What is the Risk for Exposure to Vector-Borne Pathogens in United States National Parks? J Med Entomol. 2013;50(2):221–230. doi:10.1603/ME12228
  • Katona P, Katona‐Apte J. The Interaction between Nutrition and Infection. Clinl Infect Dis. 2008;46(10):1582–1588. doi:10.1086/587658
  • Zhou Y, Yang Q, Chi J, et al. Comorbidities and the risk of severe or fatal outcomes associated with coronavirus disease 2019: a systematic review and meta-analysis. Inter J Infect Dis. 2020;99:47–56. doi:10.1016/j.ijid.2020.07.029
  • Ellwanger JH, Veiga ABGD, Kaminski VDL, et al. Control and prevention of infectious diseases from a One Health perspective. Genet Mol Biol. 2021;44(1 suppl 1). doi:10.1590/1678-4685-gmb-2020-0256.
  • Lal A, Abdalla SM, Chattu VK, et al. Pandemic preparedness and response: exploring the role of universal health coverage within the global health security architecture. Lancet Glob Health. 2022;10(11):e1675–e1683. doi:10.1016/S2214-109X(22)00341-2
  • Skuce RA, Allen AR, McDowell SWJ. Herd-Level Risk Factors for Bovine Tuberculosis: a Literature Review. Vet Med Int. 2012;2012:1–10. doi:10.1155/2012/621210
  • Estrada-Peña A, Ostfeld RS, Peterson AT, Poulin R, de la Fuente J. Effects of environmental change on zoonotic disease risk: an ecological primer. Trends Parasitol. 2014;30(4):205–214. doi:10.1016/j.pt.2014.02.003
  • Mishra J, Mishra P, Arora NK. Linkages between environmental issues and zoonotic diseases: with reference to COVID-19 pandemic. Environ Sustainability. 2021;4(3):455–467. doi:10.1007/s42398-021-00165-x
  • Cortes-Ramirez J, Vilcins D, Jagals P, Soares Magalhaes RJ. Environmental and sociodemographic risk factors associated with environmentally transmitted zoonoses hospitalisations in Queensland, Australia. One Health. 2021;12:100206. doi:10.1016/j.onehlt.2020.100206
  • Zinsstag J, Schelling E, Roth F, et al. Human Benefits of Animal Interventions for Zoonosis Control. Emerg Infect Dis. 2007;13(4):527. doi:10.3201/eid1304.060381
  • Magouras I, Brookes VJ, Jori F, et al. Emerging Zoonotic Diseases: should We Rethink the Animal–Human Interface? Front Vet Sci. 2020;7:748. doi:10.3389/fvets.2020.582743