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大流行性流感的最优控制:有限的抗病毒治疗和隔离的作用。

Optimal control for pandemic influenza: the role of limited antiviral treatment and isolation.

机构信息

Mathematical and Computational Modeling Sciences Center, School of Human Evolution and Social Change, Arizona State University, PO Box 871904, Tempe, AZ 85287, USA.

出版信息

J Theor Biol. 2010 Jul 21;265(2):136-50. doi: 10.1016/j.jtbi.2010.04.003. Epub 2010 Apr 9.

Abstract

The implementation of optimal control strategies involving antiviral treatment and/or isolation measures can reduce significantly the number of clinical cases of influenza. Pandemic-level control measures must be carefully assessed specially in resource-limited situations. A model for the transmission dynamics of influenza is used to evaluate the impact of isolation and/or antiviral drug delivery measures during an influenza pandemic. Five pre-selected control strategies involving antiviral treatment and isolation are tested under the "unlimited" resource assumption followed by an exploration of the impact of these "optimal" policies when resources are limited in the context of a 1918-type influenza pandemic scenario. The implementation of antiviral treatment at the start of a pandemic tends to reduce the magnitude of epidemic peaks, spreading the maximal impact of an outbreak over an extended window in time. Hence, the controls' timing and intensity can reduce the pressures placed on the health care infrastructure by a pandemic reducing the stress put on the system during epidemic peaks. The role of isolation strategies is highlighted in this study particularly when access to antiviral resources is limited.

摘要

实施涉及抗病毒治疗和/或隔离措施的最佳控制策略可以显著减少流感的临床病例数。大流行级别的控制措施必须在资源有限的情况下进行仔细评估。本文使用流感传播动力学模型来评估在流感大流行期间隔离和/或抗病毒药物输送措施的影响。在“无限”资源假设下测试了五个预先选定的涉及抗病毒治疗和隔离的控制策略,然后在 1918 年型流感大流行情景下资源有限的情况下探索这些“最佳”政策的影响。在大流行开始时实施抗病毒治疗往往会降低流行高峰的幅度,将疫情的最大影响在更长的时间内扩散。因此,控制措施的时机和强度可以减轻大流行对医疗保健基础设施的压力,减轻疫情高峰期系统的压力。在本研究中,特别是在抗病毒资源有限的情况下,隔离策略的作用得到了强调。

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