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Mathematical models of the interplay between individual vaccinating decisions and disease dynamics: A need for closer integration of models and data

机译:个体疫苗接种决策与疾病动态之间相互作用的数学模型:需要更紧密地整合模型和数据

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In non-mandatory vaccination policies, individual choice can be a major driver of vaccine uptake. Choice thereby influences whether public health targets can be achieved. Individual vaccinating decisions can be influenced by perceptions of vaccine risks or infection risks. There is also the potential for non-vaccinators to strategically 'free-ride' on herd immunity provided by vaccinators. This strategic interaction between individuals generates a social dilemma - a conflict between self-interest and what is best for the group as a whole. Game theory and related mathematical approaches that couple mechanistic models of vaccinating decisions with mechanistic models of disease spread can capture this social dilemma and address relevant questions. The past decade has seen significant growth in the theoretical literature developing and analyzing such models. Here, we argue that using these models to address specific public health challenges will require more work that integrates information from empirical studies into the development and validation of such models, as well as more collaboration between mathematical modelers, psychologists, economists and public health experts.
机译:在非强制性疫苗接种政策中,个人选择可能是疫苗接种的主要驱动力。因此,选择会影响是否可以实现公共卫生目标。疫苗接种或感染风险的感知可能会影响个体的疫苗接种决定。非疫苗接种者也有可能在战略上对疫苗接种者提供的牛群免疫“搭便车”。个体之间的这种战略互动产生了社会困境-自我利益与对整个群体最有利的利益之间的冲突。将疫苗接种决策的机械模型与疾病传播的机械模型结合在一起的博弈论和相关数学方法可以解决这一社会难题并解决相关问题。在过去的十年中,开发和分析此类模型的理论文献有了显着增长。在这里,我们认为,使用这些模型来应对特定的公共卫生挑战将需要更多的工作,将来自经验研究的信息整合到此类模型的开发和验证中,以及数学建模者,心理学家,经济学家和公共卫生专家之间的更多协作。

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