Author
Taylor, D
Klimm, F
Harrington, H
Kramár, M
Mischaikow, K
Porter, M
Mucha, P
Journal title
Nature communications
DOI
10.1038/ncomms8723
Volume
6
Last updated
2024-04-03T20:05:10.147+01:00
Page
7723-
Abstract
Social and biological contagions are influenced by the spatial embeddedness of networks. Historically, many epidemics spread as a wave across part of the Earth's surface; however, in modern contagions long-range edges-for example, due to airline transportation or communication media-allow clusters of a contagion to appear in distant locations. Here we study the spread of contagions on networks through a methodology grounded in topological data analysis and nonlinear dimension reduction. We construct 'contagion maps' that use multiple contagions on a network to map the nodes as a point cloud. By analysing the topology, geometry and dimensionality of manifold structure in such point clouds, we reveal insights to aid in the modelling, forecast and control of spreading processes. Our approach highlights contagion maps also as a viable tool for inferring low-dimensional structure in networks.
Symplectic ID
533583
Favourite
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Publication type
Journal Article
Publication date
21 Jul 2015
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