Modeling Addictive Consumption as an Infectious Disease

Benjamin Alamar, University of California, San Francisco
Stanton A. Glantz, University of California, San Francisco

A BEJEAP Contributions article.

Abstract

The dominant model of addictive consumption in economics is the theory of rational addiction. The addict in this model chooses how much they are going to consume based upon their level of addiction (past consumption), the current benefits and all future costs. Several empirical studies of cigarette sales and price data have found a correlation between future prices and consumption and current consumption. These studies have argued that the correlation validates the rational addiction model and invalidates any model in which future consumption is not considered. An alternative to the rational addiction model is one in which addiction spreads through a population as if it were an infectious disease, as supported by the large body of empirical research of addictive behaviors. In this model an individual's probability of becoming addicted to a substance is linked to the behavior of their parents, friends and society. In the infectious disease model current consumption is based only on the level of addiction and current costs. Price and consumption data from a simulation of the infectious disease model showed a qualitative match to the results of the rational addiction model. The infectious disease model can explain all of the theoretical results of the rational addiction model with the addition of explaining initial consumption of the addictive good.

Submitted: July 11, 2005 · Accepted: January 7, 2006 · Published: March 17, 2006

Originally published in Contributions to Economic Analysis & Policy.

Recommended Citation

Alamar, Benjamin and Glantz, Stanton A. (2006) "Modeling Addictive Consumption as an Infectious Disease," Contributions to Economic Analysis & Policy: Vol. 5 : Iss. 1, Article 7.
Available at: http://www.bepress.com/bejeap/contributions/vol5/iss1/art7

Related Files

Infectious.nlogo (16 kB)
NetLogo 2.0 Code for simulation of the model

 
 
 
 

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