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Spielman, Andrew

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Spielman

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Spielman, Andrew

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Now showing 1 - 3 of 3
  • Publication

    Entomologic and Serologic Evidence of Zoonotic Transmission of Babesia microti, Eastern Switzerland

    (Centers for Disease Control and Prevention, 2002) Foppa, Ivo M.; Krause, Peter J.; Spielman, Andrew; Goethert, Heidi; Gern, Lise; Brand, Brigit; Telford, Sam R.

    We evaluated human risk for infection with Babesia microti at a site in eastern Switzerland where several B. microti–infected nymphal Ixodes ricinus ticks had been found. DNA from pooled nymphal ticks amplified by polymerase chain reaction was highly homologous to published B. microti sequences. More ticks carried babesial infection in the lower portion of the rectangular 0.7-ha grid than in the upper (11% vs. 0.8%). In addition, we measured seroprevalence of immunoglobulin (Ig) G antibodies against B. microti antigen in nearby residents. Serum from 1.5% of the 396 human residents of the region reacted to B. microti antigen ((\geq1:64)), as determined by indirect immunofluorescence assay (IgG). These observations constitute the first report demonstrating B. microti in a human-biting vector, associated with evidence of human exposure to this agent in a European site.

  • Publication

    Chikungunya Fever, Mauritius, 2006

    (Centers for Disease Control and Prevention, 2008) Beesoon, Sanjay; Funkhouser, Ellen; Kotea, Navaratnam; Spielman, Andrew; Robich, Rebecca M
  • Publication

    Wild Primate Populations in Emerging Infectious Disease Research: The Missing Link?

    (Centers for Disease Control, 1998) Wolfe, Nathan D.; Escalante, Ananias A.; Karesh, William B.; Kilbourne, Annelisa; Spielman, Andrew; Lal, Altaf A.

    Wild primate populations, an unexplored source of information regarding emerging infectious disease, may hold valuable clues to the origins and evolution of some important pathogens. Primates can act as reservoirs for human pathogens. As members of biologically diverse habitats, they serve as sentinels for surveillance of emerging pathogens and provide models for basic research on natural transmission dynamics. Since emerging infectious diseases also pose serious threats to endangered and threatened primate species, studies of these diseases in primate populations can benefit conservation efforts and may provide the missing link between laboratory studies and the well-recognized needs of early disease detection, identification, and surveillance.