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    Results: 1 to 20 of 109

    2.

    Population dynamics of sporogony for Plasmodium vivax parasites from western Thailand developing within three species of colonized Anopheles mosquitoes.

    Zollner GE, Ponsa N, Garman GW, Poudel S, Bell JA, Sattabongkot J, Coleman RE, Vaughan JA.

    Malar J. 2006 Aug 3;5:68.

    PMID:
    16887043
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    3.

    Transmission blocking activity of a standardized neem (Azadirachta indica) seed extract on the rodent malaria parasite Plasmodium berghei in its vector Anopheles stephensi.

    Lucantoni L, Yerbanga RS, Lupidi G, Pasqualini L, Esposito F, Habluetzel A.

    Malar J. 2010 Mar 2;9:66.

    PMID:
    20196858
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    4.

    Inhibitory action of the anti-malarial compound atovaquone (566C80) against Plasmodium berghei ANKA in the mosquito, Anopheles stephensi.

    Fowler RE, Billingsley PF, Pudney M, Sinden RE.

    Parasitology. 1994 May;108 ( Pt 4):383-8.

    PMID:
    8008451
    [PubMed - indexed for MEDLINE]
    5.

    The use of transgenic Plasmodium berghei expressing the Plasmodium vivax antigen P25 to determine the transmission-blocking activity of sera from malaria vaccine trials.

    Ramjanee S, Robertson JS, Franke-Fayard B, Sinha R, Waters AP, Janse CJ, Wu Y, Blagborough AM, Saul A, Sinden RE.

    Vaccine. 2007 Jan 15;25(5):886-94. Epub 2006 Sep 20.

    PMID:
    17049690
    [PubMed - indexed for MEDLINE]
    6.

    Imaging movement of malaria parasites during transmission by Anopheles mosquitoes.

    Frischknecht F, Baldacci P, Martin B, Zimmer C, Thiberge S, Olivo-Marin JC, Shorte SL, Ménard R.

    Cell Microbiol. 2004 Jul;6(7):687-94.

    PMID:
    15186404
    [PubMed - indexed for MEDLINE]
    7.

    The dynamics of interactions between Plasmodium and the mosquito: a study of the infectivity of Plasmodium berghei and Plasmodium gallinaceum, and their transmission by Anopheles stephensi, Anopheles gambiae and Aedes aegypti.

    Alavi Y, Arai M, Mendoza J, Tufet-Bayona M, Sinha R, Fowler K, Billker O, Franke-Fayard B, Janse CJ, Waters A, Sinden RE.

    Int J Parasitol. 2003 Aug;33(9):933-43. Erratum in: Int J Parasitol. 2004 Feb;34(2):245-7.

    PMID:
    12906877
    [PubMed - indexed for MEDLINE]
    8.

    Suppressive effect of azithromycin on Plasmodium berghei mosquito stage development and apicoplast replication.

    Shimizu S, Osada Y, Kanazawa T, Tanaka Y, Arai M.

    Malar J. 2010 Mar 10;9:73.

    PMID:
    20219090
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    9.

    Progression of Plasmodium berghei through Anopheles stephensi is density-dependent.

    Sinden RE, Dawes EJ, Alavi Y, Waldock J, Finney O, Mendoza J, Butcher GA, Andrews L, Hill AV, Gilbert SC, Basáñez MG.

    PLoS Pathog. 2007 Dec 28;3(12):e195.

    PMID:
    18166078
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    10.

    Improvement of the observational method for Plasmodium berghei oocysts in the midgut of mosquitoes.

    Usui M, Fukumoto S, Inoue N, Kawazu S.

    Parasit Vectors. 2011 Jun 27;4:118.

    PMID:
    21707972
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    11.
    12.

    Real-time, in vivo analysis of malaria ookinete locomotion and mosquito midgut invasion.

    Vlachou D, Zimmermann T, Cantera R, Janse CJ, Waters AP, Kafatos FC.

    Cell Microbiol. 2004 Jul;6(7):671-85.

    PMID:
    15186403
    [PubMed - indexed for MEDLINE]
    13.

    Using green fluorescent malaria parasites to screen for permissive vector mosquitoes.

    Frischknecht F, Martin B, Thiery I, Bourgouin C, Menard R.

    Malar J. 2006 Mar 28;5:23.

    PMID:
    16569221
    [PubMed - indexed for MEDLINE]
    Free PMC Article
    15.

    The early sporogonic cycle of Plasmodium falciparum in laboratory-infected Anopheles gambiae: an estimation of parasite efficacy.

    Gouagna LC, Mulder B, Noubissi E, Tchuinkam T, Verhave JP, Boudin C.

    Trop Med Int Health. 1998 Jan;3(1):21-8.

    PMID:
    9484964
    [PubMed - indexed for MEDLINE]
    Free Article
    16.

    Evaluation of the standard membrane feeding assay (SMFA) for the determination of malaria transmission-reducing activity using empirical data.

    van der Kolk M, De Vlas SJ, Saul A, van de Vegte-Bolmer M, Eling WM, Sauerwein RW.

    Parasitology. 2005 Jan;130(Pt 1):13-22. Erratum in: Parasitology. 2005 Oct;131(Pt 4):578. Sauerwein, W [corrected to Sauerwein, RW].

    PMID:
    15700753
    [PubMed - indexed for MEDLINE]
    17.

    Plasmodium berghei HAP2 induces strong malaria transmission-blocking immunity in vivo and in vitro.

    Blagborough AM, Sinden RE.

    Vaccine. 2009 Aug 20;27(38):5187-94. Epub 2009 Jul 9. Review.

    PMID:
    19596419
    [PubMed - indexed for MEDLINE]
    18.

    Quantitative assessment of Plasmodium falciparum sexual development reveals potent transmission-blocking activity by methylene blue.

    Adjalley SH, Johnston GL, Li T, Eastman RT, Ekland EH, Eappen AG, Richman A, Sim BK, Lee MC, Hoffman SL, Fidock DA.

    Proc Natl Acad Sci U S A. 2011 Nov 22;108(47):E1214-23. Epub 2011 Oct 31.

    PMID:
    22042867
    [PubMed - indexed for MEDLINE]
    19.

    Cyclical transmission of Plasmodium berghei (Coccidiida: plasmodiidae) by Anopheles omorii (Diptera: Culicidae).

    Matsuoka H, Yamamoto S, Chinzei Y, Ando K, Arakawa R, Kamimura K, Syafruddin, Kawamoto F, Ishii A.

    J Med Entomol. 1992 Mar;29(2):343-5.

    PMID:
    1495055
    [PubMed - indexed for MEDLINE]
    20.

    Plasmodium falciparum malaria disease manifestations in humans and transmission to Anopheles gambiae: a field study in Western Kenya.

    Gouagna LC, Ferguson HM, Okech BA, Killeen GF, Kabiru EW, Beier JC, Githure JI, Yan G.

    Parasitology. 2004 Mar;128(Pt 3):235-43.

    PMID:
    15074873
    [PubMed - indexed for MEDLINE]

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