MicroMoB-package | MicroMoB: Microsimulation for mosquito-borne pathogens |
approx_equal | Check if two numeric values are approximately equal |
compute_bloodmeal | Compute bloodmeals taken by mosquitoes on hosts |
compute_emergents | Compute number of newly emerging adults (lambda) |
compute_emergents.BH | Compute number of newly emerging adults from Beverton-Holt dynamics |
compute_emergents.trace | Compute number of newly emerging adults from forcing term |
compute_emergents.trace_deterministic | Compute number of newly emerging adults from forcing term (deterministic) |
compute_emergents.trace_stochastic | Compute number of newly emerging adults from forcing term (stochastic) |
compute_f | Compute mosquito feeding rate (f) |
compute_f.BQ | Compute mosquito feeding rate for BQ model (f) |
compute_f.RM | Compute mosquito feeding rate for RM model (f) |
compute_f.trace | Compute null mosquito feeding rate (f) |
compute_H | Compute human population strata sizes (H) |
compute_H.MOI | Compute human population strata sizes for MOI model (H) |
compute_H.SIR | Compute human population strata sizes for SIR model (H) |
compute_H.SIS | Compute human population strata sizes for SIS model (H) |
compute_O | Compute available alternative blood hosts (O) |
compute_O.trace | Compute available alternative blood hosts for trace model (O) |
compute_oviposit | Compute number of eggs laid from oviposition for each patch |
compute_oviposit.BQ | Compute number of eggs laid from oviposition for each aquatic habitat for BQ model |
compute_oviposit.BQ_deterministic | Compute number of eggs laid from oviposition for each patch for deterministic RM model |
compute_oviposit.BQ_stochastic | Compute number of eggs laid from oviposition for each patch for stochastic RM model |
compute_oviposit.RM | Compute number of eggs laid from oviposition for each patch for RM model |
compute_oviposit.RM_deterministic | Compute number of eggs laid from oviposition for each patch for deterministic RM model |
compute_oviposit.RM_stochastic | Compute number of eggs laid from oviposition for each patch for stochastic RM model |
compute_oviposit.trace | Compute number of eggs laid from oviposition for each patch for null model |
compute_Psi | Compute time at risk matrix (Psi) |
compute_Psi.MOI | Compute time at risk matrix for MOI model (Psi) |
compute_Psi.SIR | Compute time at risk matrix for SIR model (Psi) |
compute_Psi.SIS | Compute time at risk matrix for SIS model (Psi) |
compute_q | Compute human blood feeding fraction (q) |
compute_q.BQ | Compute human blood feeding fraction for BQ model (q) |
compute_q.RM | Compute human blood feeding fraction for RM model (q) |
compute_q.trace | Compute null human blood feeding fraction (q) |
compute_Wd | Compute available visitors (W_{delta}) |
compute_Wd.trace | Compute available visitors for trace model (W_{delta}) |
compute_wf | Compute human biting weights (w_{f}) |
compute_wf.MOI | Compute human biting weights for MOI model (w_{f}) |
compute_wf.SIR | Compute human biting weights for SIR model (w_{f}) |
compute_wf.SIS | Compute human biting weights for SIS model (w_{f}) |
compute_x | Compute net infectiousness of humans (x) |
compute_x.MOI | Compute net infectiousness for MOI model (x) |
compute_x.SIR | Compute net infectiousness for SIR model (x) |
compute_x.SIS | Compute net infectiousness for SIS model (x) |
compute_xd | Compute net infectiousness of visitors (x_{delta}) |
compute_xd.trace | Compute net infectiousness of visitors for trace model (x_{delta}) |
compute_Z | Compute density of infective mosquitoes (Z) |
compute_Z.BQ | Compute density of infective mosquitoes for BQ model (Z) |
compute_Z.RM | Compute density of infective mosquitoes for RM model (Z) |
compute_Z.trace | Compute null density of infective mosquitoes (Z) |
distribute | Distribute items into bins as evenly as possible |
divmod | Division of integers |
draw_multinom | Draw a multinomially distributed random vector |
get_config_alternative_trace | Get parameters for trace driven alternative blood hosts |
get_config_aqua_BH | Get parameters for aquatic (immature) model with Beverton-Holt dynamics |
get_config_aqua_trace | Get parameters for aquatic (immature) model with forced emergence |
get_config_humans_MOI | Get parameters for MOI human model |
get_config_humans_SIR | Get parameters for SIR human model |
get_config_humans_SIS | Get parameters for SIS human model |
get_config_mosquito_RM | Get parameters for generalized Ross-Macdonald mosquito model |
get_config_mosquito_trace | Get parameters for null mosquito model |
get_config_visitor_trace | Get parameters for trace driven visitors |
is_binary | Does a numeric object consist of only zeros and ones? |
make_MicroMoB | Make a model object |
MicroMoB | MicroMoB: Microsimulation for mosquito-borne pathogens |
output_aqua | Get output for aquatic (immature) mosquito populations |
output_aqua.BH | Get output for aquatic (immature) mosquito populations with Beverton-Holt dynamics |
output_aqua.trace | Get output for aquatic (immature) mosquito populations with forced emergence |
output_mosquitoes | Get output for mosquito populations |
output_mosquitoes.RM | Get output for Ross-Macdonald mosquito populations |
output_mosquitoes.trace | Get output for null mosquito populations |
sample_stochastic_matrix | Sample a stochastic matrix |
sample_stochastic_vector | Sample a stochastic vector |
setup_alternative_trace | Setup trace driven alternative blood hosts |
setup_aqua_BH | Setup aquatic (immature) mosquito model with Beverton-Holt dynamics |
setup_aqua_trace | Setup aquatic (immature) mosquito model with trace (forced) emergence |
setup_humans_MOI | Setup humans with MOI (multiplicity of infection) pathogen model |
setup_humans_SIR | Setup humans with SIR infection model |
setup_humans_SIS | Setup humans with SIS pathogen model |
setup_mosquito_BQ | Setup blood feeding & oviposition (BQ) behavioral state mosquito model |
setup_mosquito_RM | Setup generalized Ross-Macdonald mosquito model |
setup_mosquito_trace | Setup null mosquito model |
setup_visitor_trace | Setup trace driven visitors |
step_aqua | Update aquatic (immature) mosquito populations |
step_aqua.BH | Update aquatic (immature) mosquito populations for Beverton-Holt dynamics |
step_aqua.BH_deterministic | Update aquatic (immature) mosquito populations for deterministic Beverton-Holt dynamics |
step_aqua.BH_stochastic | Update aquatic (immature) mosquito populations for stochastic Beverton-Holt dynamics |
step_aqua.trace | Update aquatic (immature) mosquito populations for forced emergence |
step_humans | Update human population |
step_humans.MOI | Update MOI human model |
step_humans.MOI_deterministic | Update MOI human model (deterministic) |
step_humans.MOI_stochastic | Update MOI human model (stochastic) |
step_humans.SIR | Update SIR human model |
step_humans.SIR_deterministic | Update SIR human model (deterministic) |
step_humans.SIR_stochastic | Update SIR human model (stochastic) |
step_humans.SIS | Update SIS human model |
step_humans.SIS_deterministic | Update SIS human model (deterministic) |
step_humans.SIS_stochastic | Update SIS human model (stochastic) |
step_mosquitoes | Update mosquito population |
step_mosquitoes.BQ | Update blood feeding & oviposition (BQ) behavioral state mosquitoes |
step_mosquitoes.BQ_deterministic | Update blood feeding & oviposition (BQ) behavioral state mosquitoes (deterministic) |
step_mosquitoes.BQ_stochastic | Update blood feeding & oviposition (BQ) behavioral state mosquitoes (stochastic) |
step_mosquitoes.RM | Update Ross-Macdonald mosquitoes |
step_mosquitoes.RM_deterministic | Update Ross-Macdonald mosquitoes (deterministic) |
step_mosquitoes.RM_stochastic | Update Ross-Macdonald mosquitoes (stochastic) |
step_mosquitoes.trace | Update null mosquito population |
strata_to_residency_counts | Helper function for lumped population strata (counts) |
strata_to_residency_proportion | Helper function for lumped population strata (proportional assignment) |
time_patch_varying_parameter | Input parameters that may vary by time and patch |
time_varying_parameter | Input parameters that may vary by time |