Referencing for people who value simplicity, privacy, and speed.
Get Citationsy
← Back to Search
Get Citationsy
An Application Of The Theory Of Probabilities To The Study Of A Priori Pathometry.--Part III
R. Ross, H. P. Hudson
Mathematics
Reduce the time it takes to create your bibliography by a factor of 10 by using the world’s favourite reference manager
Time to take this seriously.
This paper is referenced by
10.1142/S0218127412500289
Zero-Diffusion Domains in reaction-Diffusion Morphogenetic and epidemiologic Processes
J. Demongeot (2012)
10.4269/AJTMH.2006.75.2_SUPPL.0750001
Mathematical modeling of the impact of malaria vaccines on the clinical epidemiology and natural history of Plasmodium falciparum malaria: Overview.
T. Smith (2006)
10.1016/j.amc.2014.01.090
Dynamical analysis and perturbation solution of an SEIR epidemic model
Xiaoyun Wang (2014)
10.1016/j.physa.2020.125586
Information, opinion and pandemic
A. Bernardes (2021)
Rift Valley Fever an emerging threat to livestock trade and food security in the Horn of Africa : a review
P. Bonnet (2001)
10.1186/1475-2875-10-202
Mathematical models of malaria - a review
S. Mandal (2010)
10.1016/B978-0-444-51787-6.50004-0
Theories and Models in Medicine
R. P. Thompson (2011)
10.1007/978-3-642-61317-3_8
Periodicity in Epidemiological Models
H. Hethcote (1989)
10.1016/j.physd.2020.132674
Inversion of a SIR-based model: A critical analysis about the application to COVID-19 epidemic
A. Comunian (2020)
10.1101/101535
The shape of the contact-density function matters when modelling disease transmission in fluctuating populations
B. Borremans (2017)
10.1086/425288
Multilevel analysis of infectious diseases.
A. D. Diez Roux (2005)
10.1111/J.1467-842X.2006.00447.X
INVITED DISCUSSION OF THE PAPER BY DOMIJAN, JORGENSEN & REID
S. Haslett (2006)
On evolution dynamics and strategies in some host-parasite models
L. Dai (2013)
10.1371/journal.ppat.1002588
Ross, Macdonald, and a Theory for the Dynamics and Control of Mosquito-Transmitted Pathogens
D. L. Smith (2012)
10.1016/B978-0-12-802260-3.00004-3
W.O. Kermack and A.G. McKendrick: A seminal contribution to the mathematical theory of epidemics (1927)
I. Foppa (2017)
10.1016/j.jocs.2011.05.004
A workflow for software development within computational epidemiology
B. Cakici (2011)
Epidemics with Behavior
S. Fukuda (2021)
ON EVOLUTIONARY DYNAMICS AND STRATEGIES IN SOME HOST-PARASITE MODELS (Thesis format: Integrated Article)
L. Dai (2013)
Efficient Bayesian inference for partially observed stochastic epidemics and a new class of semi-parametric time series models
T. Kypraios (2007)
10.1017/S0950268800057241
Malaria transmission rates estimated from serological data.
M. Burattini (1993)
10.1016/j.drudis.2009.04.001
Immunoinformatics: Current trends and future directions
J. C. Tong (2009)
10.1007/s40471-016-0078-4
Trends in the Mechanistic and Dynamic Modeling of Infectious Diseases
J. Lessler (2016)
10.1016/S1473-3099(08)70069-0
Measuring malaria endemicity from intense to interrupted transmission
S. Hay (2008)
10.1007/BF02897701
Disease ecology and the global emergence of zoonotic pathogens
Bruce A Wilcox (2005)
Análise Computacional da Disseminação de Epidemias Considerando a Diluição e a Mobilidade dos Agentes
Vicente Silva Cruz (2013)
10.1371/journal.pone.0088110
Modeling Malaria Infection and Immunity against Variant Surface Antigens in Príncipe Island, West Africa
Cátia Bandeiras (2014)
10.1007/978-3-642-45692-3_7
On the Solution of the Two-Sex Mixing Problem
C. Castillo-Chavez (1991)
Social Heterogeneities in Classical New Product Diffusion Models
P. Manfredi (1998)
10.1016/S0169-5347(02)02615-0
Trophic strategies, animal diversity and body size
K. Lafferty (2002)
10.1111/J.1467-9574.1996.TB01482.X
The concept of RO in epidemic theory
J. Heesterbeek (1996)
10.1046/J.1526-0992.1998.00079.X
Modelling the temperature sensitivity of some physiological parameters of epidemiologic significance
E. Massad (1998)
STRUCTURED SI EPIDEMIC MODELS WITH APPLICATIONS TO HIV EPIDEMIC
Roxana López-Cruz (2006)
See more