Related Experiment Video
Updated: Jun 26, 2026

Feeding of Ticks on Animals for Transmission and Xenodiagnosis in Lyme Disease Research
Published on: August 31, 2013
Contact heterogeneity in deer mice: implications for Sin Nombre virus transmission
Christine A Clay1, Erin M Lehmer, Andrea Previtali
1Department of Biology, Westminster College, 1840 South 1300 East, Salt Lake City, UT 84105, USA. cclay@westminstercollege.edu
Abstract:
Heterogeneities within disease hosts suggest that not all individuals have the same probability of transmitting disease or becoming infected. This heterogeneity is thought to be due to dissimilarity in susceptibility and exposure among hosts. As such, it has been proposed that many host-pathogen systems follow the general pattern whereby a small fraction of the population accounts for a large fraction of the pathogen transmission. This disparity in transmission dynamics is often referred to as '20/80 Rule', i.e. approximately 20 per cent of the hosts are responsible for 80 per cent of pathogen transmission. We investigated the role of heterogeneity in contact rates among potential hosts of a directly transmitted pathogen by examining Sin Nombre virus (SNV) in deer mice (Peromyscus maniculatus). Using foraging arenas and powder marking, we documented contacts between wild deer mice in Great Basin Desert, central Utah. Our findings demonstrated heterogeneity among deer mice, both in frequency and in duration of contacts with other deer mice. Contact dynamics appear to follow the general pattern that a minority of the population accounts for a majority of the contacts. We found that 20 per cent of individuals in the population were responsible for roughly 80 per cent of the contacts observed. Larger-bodied individuals appear to be the functional group with the greatest SNV transmission potential. Contrary to our predictions, transmission potential was not influenced by breeding condition or sex.
Insights
A small group of deer mice drive Sin Nombre virus (SNV) transmission due to varied contact rates. Larger mice had higher transmission potential, not sex or breeding status.
Area of Science:
- Ecology
- Epidemiology
- Mammalogy
Background:
- Disease transmission is often unevenly distributed within host populations.
- This heterogeneity is linked to variations in host susceptibility and exposure.
- The '20/80 Rule' suggests a small host fraction drives most pathogen transmission.
Purpose of the Study:
- To investigate heterogeneity in contact rates among deer mice (Peromyscus maniculatus) as a driver of Sin Nombre virus (SNV) transmission.
- To determine if contact patterns in deer mice align with the '20/80 Rule'.
Main Methods:
- Observed direct contacts between wild deer mice in naturalistic foraging arenas.
- Utilized powder marking to identify and track individual mouse interactions.
- Quantified frequency and duration of contacts within a deer mouse population in Utah.
Main Results:
- Deer mice exhibited significant heterogeneity in contact frequency and duration.
- Contact dynamics followed the '20/80 Rule': 20% of individuals accounted for 80% of contacts.
- Larger body size was associated with higher SNV transmission potential.
- Breeding condition and sex did not significantly influence transmission potential.
Conclusions:
- Contact heterogeneity is a key factor in Sin Nombre virus transmission dynamics in deer mice.
- Larger deer mice represent a critical reservoir for SNV transmission.
- Findings support the '20/80 Rule' in a wildlife host-pathogen system, highlighting the importance of individual variation.
Related Concept Videos
Viral Recombination
Rabies

