Dynamic social networks and the implications for the spread of infectious disease
Top Cited Papers
- 4 March 2008
- journal article
- Published by The Royal Society in Journal of The Royal Society Interface
- Vol. 5 (26) , 1001-1007
- https://doi.org/10.1098/rsif.2008.0013
Abstract
Understanding the nature of human contact patterns is crucial for predicting the impact of future pandemics and devising effective control measures. However, few studies provide a quantitative description of the aspects of social interactions that are most relevant to disease transmission. Here, we present the results from a detailed diary-based survey of casual (conversational) and close contact (physical) encounters made by a small peer group of 49 adults who recorded 8,661 encounters with 3,528 different individuals over 14 non-consecutive days. We find that the stability of interactions depends on the intimacy of contact and social context. Casual contact encounters mostly occur in the workplace and are predominantly irregular, while close contact encounters mostly occur at home or in social situations and tend to be more stable. Simulated epidemics of casual contact transmission involve a large number of non-repeated encounters, and the social network is well captured by a random mixing model. However, the stability of the social network should be taken into account for close contact infections. Our findings have implications for the modelling of human epidemics and planning pandemic control policies based on social distancing methods.Keywords
This publication has 27 references indexed in Scilit:
- Mixing patterns and the spread of close-contact infectious diseasesEmerging Themes in Epidemiology, 2006
- Social mixing patterns for transmission models of close contact infections: exploring self-evaluation and diary-based data collection through a web-based interfaceEpidemiology and Infection, 2006
- Strategies for mitigating an influenza pandemicNature, 2006
- Modelling disease outbreaks in realistic urban social networksNature, 2004
- Planning for smallpox outbreaksNature, 2003
- Detecting measurement bias in respondent reports of personal networksSocial Networks, 2002
- Modeling dynamic and network heterogeneities in the spread of sexually transmitted diseasesProceedings of the National Academy of Sciences, 2002
- Social networks, support cliques, and kinshipHuman Nature, 1995
- Comparing four different methods for measuring personal social networksSocial Networks, 1990
- Contacts and influenceSocial Networks, 1978