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Economic impacts of East Coast Fever immunization on smallholder farms, Kenya: a simulation analysis

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  • Hezron O. Nyangito
  • James W. Richardson
  • Darrell S. Mundy
  • Adrian W. Mukhebi
  • Peter Zimmel
  • Jerry Namken

Abstract

A whole farm simulation model, Technology Impact Evaluation System (TIES), was used to assess ex‐ante financial and economic impacts of immunization of dairy cattle against East Coast Fever (ECF) by the infection and treatment method (ITM) on smallholder farms from two sites in Kenya. Four alternative strategics of immunization in combination with different levels of acaricide use were compared with the current acaricide‐based method of control. The economic impacts were estimated using simulated net present values, present values of ending net worth, internal rates of return, benefit‐cost ratios, annual cash farm incomes, cash expenses, and net farm incomes. The results from the analysis indicate that ECF immunization strategics are financially and economically viable on smallholder farms. Based on the risk preference for risk averse producers, the most preferred strategy was to adopt ITM in combination with a 75% reduction in acaricidc use. The results obtained provide a good indication of the relative orders of magnitude of the farm level financial and economic effects of ECF immunization by ITM. The whole farm simulation model used for the analysis has the advantage of incorporating the risks involved in farm production. Whole farm simulation offers a flexible method for assessing the financial and economic impacts of alternative disease control methods on smallholder farms.

Suggested Citation

  • Hezron O. Nyangito & James W. Richardson & Darrell S. Mundy & Adrian W. Mukhebi & Peter Zimmel & Jerry Namken, 1996. "Economic impacts of East Coast Fever immunization on smallholder farms, Kenya: a simulation analysis," Agricultural Economics, International Association of Agricultural Economists, vol. 13(3), pages 163-177, February.
  • Handle: RePEc:bla:agecon:v:13:y:1996:i:3:p:163-177
    DOI: 10.1111/j.1574-0862.1996.tb00385.x
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    Cited by:

    1. Oriade, Caleb A. & Dillon, Carl R., 1997. "Developments in biophysical and bioeconomic simulation of agricultural systems: a review," Agricultural Economics, Blackwell, vol. 17(1), pages 45-58, October.
    2. Lien, Gudbrand, 2003. "Assisting whole-farm decision-making through stochastic budgeting," Agricultural Systems, Elsevier, vol. 76(2), pages 399-413, May.
    3. Vorotnikova, Ekaterina & Borisova, Tatiana & VanSickle, John J., 2014. "Evaluation of the profitability of a new precision fungicide application system for strawberry production," Agricultural Systems, Elsevier, vol. 130(C), pages 77-88.
    4. Clarke, Neville & Bizimana, Jean-Claude & Dile, Yihun & Worqlul, Abeyou & Osorio, Javier & Herbst, Brian & Richardson, James W. & Srinivasan, Raghavan & Gerik, Thomas J. & Williams, Jimmy & Jones, Cha, 2017. "Evaluation of new farming technologies in Ethiopia using the Integrated Decision Support System (IDSS)," Agricultural Water Management, Elsevier, vol. 180(PB), pages 267-279.

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