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Molecular and Cellular Probes|August 9, 2006
Development of quantitative real-time PCR assays to detect Rickettsia typhi and Rickettsia felis, the causative agents of murine typhus and flea-borne spotted feverKatherine M Henry, Ju Jiang, Patrick J Rozmajzl, et al.The American Journal of Tropical Medicine and Hygiene|June 19, 2003
Spotted fever group rickettsiae in ticks from the Masai Mara region of KenyaKevin R Macaluso, Jon Davis, Uzma Alam, et al.Molecular Ecology|September 29, 2015
Cofeeding intra- and interspecific transmission of an emerging insect-borne rickettsial pathogenLisa D Brown, Rebecca C Christofferson, Kaikhushroo H Banajee, et al.Ticks and Tick-Borne Diseases|April 24, 2017
Comparative vertical transmission of Rickettsia by Dermacentor variabilis and Amblyomma maculatumEmma K Harris, Victoria I Verhoeve, Kaikhushroo H Banajee, et al.Mitochondrial DNA. Part B, Resources|January 18, 2021
The complete mitochondrial genome of the cat flea, <i>Ctenocephalides felis</i>Victoria I Verhoeve, Mariah L Plumer, Timothy P Driscoll, et al.Infection and Immunity|March 28, 2018
Role of Sca2 and RickA in the Dissemination of Rickettsia parkeri in Amblyomma maculatumEmma K Harris, Krit Jirakanwisal, Victoria I Verhoeve, et al.Genome Biology and Evolution|July 31, 2018
A Tangled Web: Origins of Reproductive ParasitismJoseph J Gillespie, Timothy P Driscoll, Victoria I Verhoeve, et al.Plos One|August 6, 2015
Amblyomma maculatum Feeding Augments Rickettsia parkeri Infection in a Rhesus Macaque Model: A Pilot StudyKaikhushroo H Banajee, Monica E Embers, Ingeborg M Langohr, et al.Infection and Immunity|March 7, 2012
Susceptibility of inbred mice to Rickettsia parkeriBritton J Grasperge, Kathryn E Reif, Timothy D Morgan, et al.Plos One|April 16, 2014
Novel identification of Dermacentor variabilis Arp2/3 complex and its role in rickettsial infection of the arthropod vectorNatthida Petchampai, Piyanate Sunyakumthorn, Mark L Guillotte, et al.Pageof 8