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55 result(s) for "Baxby, D."
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Transmission dynamics of a zoonotic pathogen within and between wildlife host species
The transmission dynamics of the cowpox virus infection have been quantified in two mixed populations of bank voles (Clethrionomys glareolus) and wood mice (Apodemus sylvaticus), through analyses of detailed time-series of the numbers of susceptible, infectious and newly infected individuals. The cowpox virus is a zoonosis which circulates in these rodent hosts and has been shown to have an adverse effect on reproductive output. The transmission dynamics within species is best described as frequency dependent rather than density dependent, contrary to the 'mass action' assumption of most previous studies, both theoretical and empirical. Estimation of a transmission coefficient for each species in each population also allows annual and seasonal variations in transmission dynamics to be investigated through an analysis of regression residuals. Transmission between host species is found to be negligible despite their close co-habitation. The consequences of this for the combining ability of hosts as zoonotic reservoirs, and for apparent competition between hosts, are discussed.
Cowpox: reservoir hosts and geographic range
It is generally accepted that the reservoir hosts of cowpox virus are wild rodents, although direct evidence for this is lacking for much of the virus's geographic range. Here, through a combination of serology and PCR, we demonstrate conclusively that the main hosts in Great Britain are bank voles, wood mice and short-tailed field voles. However, we also suggest that wood mice may not be able to maintain infection alone, explaining the absence of cowpox from Ireland where voles are generally not found. Infection in wild rodents varies seasonally, and this variation probably underlies the marked seasonal incidence of infection in accidental hosts such as humans and domestic cats.
A longitudinal study of an endemic disease in its wildlife reservoir: cowpox and wild rodents
Cowpox is an orthopoxvirus infection endemic in European wild rodents, but with a wide host range including human beings. In this longitudinal study we examined cowpox in two wild rodent species, bank voles Clethrionomys glareolus and wood mice Apodemus sylvaticus, to investigate the dynamics of a virus in its wild reservoir host. Trapping was carried out at 4-weekly intervals over 3 years and each animal caught was uniquely identified, blood sampled and tested for antibodies to cowpox. Antibody prevalence was higher in bank voles than in wood mice and seroconversion varied seasonally, with peaks in autumn. Infection was most common in males of both species but no clear association with age was demonstrated. This study provides a model for studying other zoonotic infections that derive from wild mammals since other approaches, such as one-off samples, will fail to detect the variation in infection and thus, risk to human health, demonstrated here.
effect of cowpox virus infection on fecundity in bank voles and wood mice
Although epidemic infectious diseases are a recognized cause of changes in host population dynamics, there is little direct evidence for the effect of endemic infections on populations. Cowpox virus is an orthopoxvirus which is endemic in bank voles (Clethrionomys glareolus), wood mice (Apodemus sylvaticus) and field voles (Microtus agrestis) in Great Britain. It does not cause obvious signs of disease nor does it affect survival, but in this study we demonstrate experimentally that it can reduce the fecundity of bank voles and wood mice by increasing the time to first litter by 20-30 days. The pathogenic mechanisms causing this effect are at present not known, but this finding suggests that natural subclinical infection could have a considerable effect on the dynamics of wild populations.
Smallpox vaccination techniques; from knives and forks to needles and pins
Factors affecting the development of smallpox vaccination techniques are discussed and 11 different techniques for inoculating the vaccine are identified and described. The earliest, the simple cut or scratch, was already widely used for smallpox inoculation (variolation). Later, when it became evident that Jenner’s claim of lifelong protection was not being achieved parallel, cross-hatched and rotatory methods which produced more severe reactions were introduced, often at more than one site. These methods were then discontinued and even prohibited in some countries, when improved vaccine quality resulted in excessively-severe reactions with such techniques. They were replaced by improved methods such as multiple pressure and multiple puncture with the bifurcated needle, both of which were used extensively. However, the simple scratch method remained popular until the end of the vaccination era. Although the instruments used are not discussed in detail, representative examples of the wide variety used at various times and for the various techniques are illustrated. Again, the simplest and earliest designs remained in use throughout.
Serological evidence for the reservoir hosts of cowpox virus in British wildlife
The reservoir host of cowpox virus in Western Europe is not known, but epidemiological evidence from human and feline infections indicates that the virus is probably endemic in small wild rodents. Therefore, serum and tissue samples were collected from a variety of wild British mammals and some birds, and tested for evidence of Orthopoxvirus infection. Antibody reacting with cowpox virus was detected in 9/44 (20%) bank voles (Clethrionomys glareolus), 8/24 (33%) field voles (Microtus agrestis), 17/86 (20%) wood mice (Apodemus sylvaticus) and 1/44 house mice (Mus musculus), but in no other animal species tested. Although virus was not isolated from any animal, this serological survey, together with other evidence, suggests that bank and field voles and wood mice are the main reservoir hosts of cowpox virus in Great Britain.
The Jenner bicentenary; still uses for smallpox vaccine
Edward Jenner performed his first vaccination, on James Phipps, on 14 May 1796 [1,2]. The centenary of that event was celebrated [3] rather than that of the publication of Jenner's famous Inquiry of 1798 [1], and that precedent is generally being followed for the bicentenary [4]. We are marking the bicentenary by publishing two Special Articles which describe how progress with poxvirus recombinant vaccines is leading to significant advances in the control of infection.