Department of Mathematics, Pennsylvania State University, State College, PA 16802, USA.
Math Biosci. 2011 Apr;230(2):67-78. doi: 10.1016/j.mbs.2011.01.003. Epub 2011 Jan 28.
Reconciling the interests of individuals with the interests of communities is a major challenge in designing and implementing health policies. In this paper, we present a technique based on a combination of mechanistic population-scale models, Markov decision process theory and game theory that facilitates the evaluation of game theoretic decisions at both individual and community scales. To illustrate our technique, we provide solutions to several variants of the simple vaccination game including imperfect vaccine efficacy and differential waning of natural and vaccine immunity. In addition, we show how path-integral approaches can be applied to the study of models in which strategies are fixed waiting times rather than exponential random variables. These methods can be applied to a wide variety of decision problems with population-dynamic feedbacks.
协调个人利益与社区利益是设计和实施卫生政策的主要挑战。在本文中,我们提出了一种基于机制人群规模模型、马尔可夫决策过程理论和博弈论相结合的技术,该技术有助于在个体和社区层面评估博弈论决策。为了说明我们的技术,我们提供了几种简单疫苗接种游戏变体的解决方案,包括不完全疫苗效力和自然与疫苗免疫力的不同衰减。此外,我们展示了如何将路径积分方法应用于策略是固定等待时间而不是指数随机变量的模型研究。这些方法可以应用于具有人口动态反馈的各种决策问题。