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J A P Heesterbeek

Showing results (11-20 of 49) with videos related to

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Mathematical Biosciences|March 15, 2006
The type-reproduction number T in models for infectious disease controlJ A P Heesterbeek, M G Roberts
Journal of Mathematical Biology|October 23, 2012
Characterizing the next-generation matrix and basic reproduction number in ecological epidemiologyM G Roberts, J A P Heesterbeek
Journal of the Royal Society, Interface|November 7, 2009
The construction of next-generation matrices for compartmental epidemic modelsO Diekmann, J A P Heesterbeek, M G Roberts
Journal of Theoretical Biology|June 26, 2008
A fully coupled, mechanistic model for infectious disease dynamics in a metapopulation: movement and epidemic durationM Jesse, P Ezanno, S Davis, et al.
Theoretical Population Biology|March 16, 2002
The metapopulation dynamics of an infectious disease: tuberculosis in possumsG R Fulford, M G Roberts, J A P Heesterbeek
Journal of Dairy Science|July 27, 2010
Detection of clinical mastitis with sensor data from automatic milking systems is improved by using decision-tree inductionC Kamphuis, H Mollenhorst, J A P Heesterbeek, et al.
Plos One|October 12, 2022
Exploring the influence of competition on arbovirus invasion risk in communitiesAfonso Dimas Martins, Quirine Ten Bosch, J A P Heesterbeek
Journal of Mathematical Biology|September 4, 2012
Extending the type reproduction number to infectious disease control targeting contacts between typesZhisheng Shuai, J A P Heesterbeek, P van den Driessche
Journal of Mathematical Biology|March 25, 2015
Erratum to: Extending the type reproduction number to infectious disease control targeting contacts between typesZhisheng Shuai, J A P Heesterbeek, P van den Driessche
Journal of Animal Science|September 15, 2006
Changes in disease gene frequency over time with differential genotypic fitness and various control strategiesP N Thompson, J A P Heesterbeek, J A M van Arendonk
Pageof 5

Showing results (11-20 of 49) with videos related to

Sort By:
Pageof 5
Mathematical Biosciences|March 15, 2006
The type-reproduction number T in models for infectious disease controlJ A P Heesterbeek, M G Roberts
Journal of Mathematical Biology|October 23, 2012
Characterizing the next-generation matrix and basic reproduction number in ecological epidemiologyM G Roberts, J A P Heesterbeek
Journal of the Royal Society, Interface|November 7, 2009
The construction of next-generation matrices for compartmental epidemic modelsO Diekmann, J A P Heesterbeek, M G Roberts
Journal of Theoretical Biology|June 26, 2008
A fully coupled, mechanistic model for infectious disease dynamics in a metapopulation: movement and epidemic durationM Jesse, P Ezanno, S Davis, et al.
Theoretical Population Biology|March 16, 2002
The metapopulation dynamics of an infectious disease: tuberculosis in possumsG R Fulford, M G Roberts, J A P Heesterbeek
Journal of Dairy Science|July 27, 2010
Detection of clinical mastitis with sensor data from automatic milking systems is improved by using decision-tree inductionC Kamphuis, H Mollenhorst, J A P Heesterbeek, et al.
Plos One|October 12, 2022
Exploring the influence of competition on arbovirus invasion risk in communitiesAfonso Dimas Martins, Quirine Ten Bosch, J A P Heesterbeek
Journal of Mathematical Biology|September 4, 2012
Extending the type reproduction number to infectious disease control targeting contacts between typesZhisheng Shuai, J A P Heesterbeek, P van den Driessche
Journal of Mathematical Biology|March 25, 2015
Erratum to: Extending the type reproduction number to infectious disease control targeting contacts between typesZhisheng Shuai, J A P Heesterbeek, P van den Driessche
Journal of Animal Science|September 15, 2006
Changes in disease gene frequency over time with differential genotypic fitness and various control strategiesP N Thompson, J A P Heesterbeek, J A M van Arendonk
Pageof 5