Levin S A, Grenfell B, Hastings A, Perelson A S
Department of Ecology and Evolutionary Biology, Princeton University, Princeton, NJ 08544, USA.
Science. 1997 Jan 17;275(5298):334-43. doi: 10.1126/science.275.5298.334.
Mathematical and computational approaches provide powerful tools in the study of problems in population biology and ecosystems science. The subject has a rich history intertwined with the development of statistics and dynamical systems theory, but recent analytical advances, coupled with the enhanced potential of high-speed computation, have opened up new vistas and presented new challenges. Key challenges involve ways to deal with the collective dynamics of heterogeneous ensembles of individuals, and to scale from small spatial regions to large ones. The central issues-understanding how detail at one scale makes its signature felt at other scales, and how to relate phenomena across scales-cut across scientific disciplines and go to the heart of algorithmic development of approaches to high-speed computation. Examples are given from ecology, genetics, epidemiology, and immunology.
数学和计算方法为研究种群生物学和生态系统科学中的问题提供了强大工具。该学科有着与统计学和动力系统理论发展紧密相连的丰富历史,但近期的分析进展,再加上高速计算能力的提升,开辟了新的视野并带来了新的挑战。关键挑战包括如何处理个体异质集合的集体动态,以及如何从小空间区域扩展到大面积区域。核心问题——理解一个尺度上的细节如何在其他尺度上留下印记,以及如何关联不同尺度上的现象——跨越了科学学科,并且涉及高速计算方法算法开发的核心。文中给出了来自生态学、遗传学、流行病学和免疫学的例子。