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Updated: May 31, 2026

Optimization of a Quantitative Micro-neutralization Assay
Published on: December 14, 2016
Quasi-neutral theory of epidemic outbreaks
Oscar A Pinto1, Miguel A Muñoz
1Departamento de Física, Instituto de Física Aplicada, Universidad Nacional de San Luis-CONICET, San Luis, Argentina.
Abstract:
Some epidemics have been empirically observed to exhibit outbreaks of all possible sizes, i.e., to be scale-free or scale-invariant. Different explanations for this finding have been put forward; among them there is a model for "accidental pathogens" which leads to power-law distributed outbreaks without apparent need of parameter fine tuning. This model has been claimed to be related to self-organized criticality, and its critical properties have been conjectured to be related to directed percolation. Instead, we show that this is a (quasi) neutral model, analogous to those used in Population Genetics and Ecology, with the same critical behavior as the voter-model, i.e. the theory of accidental pathogens is a (quasi)-neutral theory. This analogy allows us to explain all the system phenomenology, including generic scale invariance and the associated scaling exponents, in a parsimonious and simple way.
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