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生物信息学和计算生物学在流感监测及疫苗株选择中的应用。

Applications of bioinformatics and computational biology to influenza surveillance and vaccine strain selection.

作者信息

Smith Derek J

机构信息

Department of Zoology, University of Cambridge, Downing Street, CB2 3EJ, Cambridge, UK.

出版信息

Vaccine. 2003 May 1;21(16):1758-61. doi: 10.1016/s0264-410x(03)00068-9.

Abstract

In recent years, collaborations often between mathematical and computational biologists and scientists in the World Health Organization (WHO) global influenza surveillance network, have resulted in a number of mathematical and computational advances including: increasing the resolution at which antigenic surveillance data can be analyzed, providing methods for genetic analysis and prediction, and an increased understanding of the determinants of repeated influenza vaccination. These advances increase the information extracted from influenza surveillance and increase the quantitative data available for the vaccine strain selection process. This mathematical and computational work is possible because of the wealth of information collected over many years by the WHO global influenza surveillance network, and further advances will be greatly facilitated by implementation of the proposed strengthening of virological and epidemiological surveillance in the WHO global agenda on influenza surveillance and control.

摘要

近年来,数学和计算生物学家与世界卫生组织(WHO)全球流感监测网络中的科学家之间的合作,带来了许多数学和计算方面的进展,包括:提高抗原监测数据分析的分辨率,提供基因分析和预测方法,以及加深对重复流感疫苗接种决定因素的理解。这些进展增加了从流感监测中提取的信息,并增加了疫苗株选择过程中可用的定量数据。由于WHO全球流感监测网络多年来收集的丰富信息,这项数学和计算工作得以开展,而WHO全球流感监测与控制议程中拟议的加强病毒学和流行病学监测的实施,将极大地推动进一步的进展。

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