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Modeling the Impact of Community First Responders

Author

Listed:
  • Pieter L. van den Berg

    (Rotterdam School of Management, Erasmus University, 3062 PA Rotterdam, Netherlands)

  • Shane G. Henderson

    (Cornell University, Ithaca, New York 14850)

  • Caroline J. Jagtenberg

    (Vrije Universiteit Amsterdam, 1081 HV Amsterdam, Netherlands)

  • Hemeng Li

    (Cornell University, Ithaca, New York 14850)

Abstract

In community first responder (CFR) systems, traditional emergency service response is augmented by a network of trained volunteers who are dispatched via an app. A central application of such systems is out-of-hospital cardiac arrest (OHCA), where a very fast response is crucial. For a target performance level, how many volunteers are needed, and from which locations should they be recruited? We model the presence of volunteers throughout a region as a Poisson point process, which permits the computation of the response-time distribution of the first-arriving volunteer. Combining this with known survival-rate functions, we deduce survival probabilities in the cardiac arrest setting. We then use convex optimization to compute a location distribution of volunteers across the region that optimizes either the fraction of incidents with a fast response (a common measure in the industry) or patient survival in the case of OHCA. The optimal location distribution provides a bound on the best possible performance with a given number of volunteers. This can be used to determine whether introducing a CFR system in a new region is worthwhile or can serve as a guide for additional recruitment in existing systems. Effective target areas for recruitment are not always obvious because volunteers recruited from one area may be found in various areas across the city depending on the time of day; we explicitly capture this issue. We demonstrate these methods through an extended case study of Auckland, New Zealand.

Suggested Citation

  • Pieter L. van den Berg & Shane G. Henderson & Caroline J. Jagtenberg & Hemeng Li, 2025. "Modeling the Impact of Community First Responders," Management Science, INFORMS, vol. 71(2), pages 992-1008, February.
  • Handle: RePEc:inm:ormnsc:v:71:y:2025:i:2:p:992-1008
    DOI: 10.1287/mnsc.2022.04024
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    References listed on IDEAS

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    1. Mark S. Daskin, 1983. "A Maximum Expected Covering Location Model: Formulation, Properties and Heuristic Solution," Transportation Science, INFORMS, vol. 17(1), pages 48-70, February.
    2. Shane G. Henderson & Pieter L. van den Berg & Caroline J. Jagtenberg & Hemeng Li, 2022. "How should volunteers be dispatched to out-of-hospital cardiac arrest cases?," Queueing Systems: Theory and Applications, Springer, vol. 100(3), pages 437-439, April.
    3. Ramesh Johari & Vijay Kamble & Yash Kanoria, 2021. "Matching While Learning," Operations Research, INFORMS, vol. 69(2), pages 655-681, March.
    4. Justin J. Boutilier & Timothy C. Y. Chan, 2022. "Drone Network Design for Cardiac Arrest Response," Manufacturing & Service Operations Management, INFORMS, vol. 24(5), pages 2407-2424, September.
    5. Timothy C. Y. Chan & Derya Demirtas & Roy H. Kwon, 2016. "Optimizing the Deployment of Public Access Defibrillators," Management Science, INFORMS, vol. 62(12), pages 3617-3635, December.
    6. Damitha Bandara & Maria E. Mayorga & Laura A. McLay, 2012. "Optimal dispatching strategies for emergency vehicles to increase patient survivability," International Journal of Operational Research, Inderscience Enterprises Ltd, vol. 15(2), pages 195-214.
    7. Vahideh Manshadi & Scott Rodilitz, 2022. "Online Policies for Efficient Volunteer Crowdsourcing," Management Science, INFORMS, vol. 68(9), pages 6572-6590, September.
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