Dynamical System and Nonlinear Regression for Estimate Host-Parasitoid Relationship
Author(s) -
Ileana Miranda Cabrera,
Heyker Lellanis Baños Díaz,
María de los Ángeles Martínez
Publication year - 2010
Publication title -
journal of applied mathematics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.307
H-Index - 43
eISSN - 1687-0042
pISSN - 1110-757X
DOI - 10.1155/2010/851037
Subject(s) - parasitoid , mathematics , functional response , nymph , host (biology) , ecology , nonlinear system , inference , predation , econometrics , predator , statistics , biology , computer science , physics , quantum mechanics , artificial intelligence
The complex relationships of a crop with the pest, its natural enemies, and the climate factors exist in all the ecosystems, but the mathematic models has studied only some components to know the relation cause-effect. The most studied system has been concerned with the relationship pest-natural enemies such as prey-predator or host-parasitoid. The present paper shows a dynamical system for studying the relationship host-parasitoid (Diaphorina citri, Tamarixia radiata) and shows that a nonlinear model permits the estimation of the parasite nymphs using nymphs healthy as the known variable. The model showed the functional answer of the parasitoid, in which a point arrives that its density is not augmented although the number host increases, and it becomes necessary to intervene in the ecosystem. A simple algorithm is used to estimate the parasitoids level using the priori relationship between the host and the climate factors and then the nonlinear model
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