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Journal Abstract Search


283 related items for PubMed ID: 9682026

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  • 24. Photoisomerization of antiaggregation pheromone verbenone: Biological and practical implications with respect to the mountain pine beetle,Dendroctonus ponderosae Hopkins (Coleoptera: Scolytidae).
    Kostyk BC, Borden JH, Gries G.
    J Chem Ecol; 1993 Aug; 19(8):1749-59. PubMed ID: 24249238
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  • 25. A Model for Mountain Pine Beetle Outbreaks in an Age-Structured Forest: Predicting Severity and Outbreak-Recovery Cycle Period.
    Duncan JP, Powell JA, Gordillo LF, Eason J.
    Bull Math Biol; 2015 Jul; 77(7):1256-84. PubMed ID: 25976694
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  • 29. Spray deposition from ground-based applications of carbaryl to protect individual trees from bark beetle attack.
    Fettig CJ, Munson AS, McKelvey SR, Bush PB, Borys RR.
    J Environ Qual; 2008 Jul; 37(3):1170-9. PubMed ID: 18453436
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  • 30. Coupling Mountain Pine Beetle and Forest Population Dynamics Predicts Transient Outbreaks that are Likely to Increase in Number with Climate Change.
    Brush M, Lewis MA.
    Bull Math Biol; 2023 Sep 29; 85(11):108. PubMed ID: 37775681
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  • 31. Transcriptome and full-length cDNA resources for the mountain pine beetle, Dendroctonus ponderosae Hopkins, a major insect pest of pine forests.
    Keeling CI, Henderson H, Li M, Yuen M, Clark EL, Fraser JD, Huber DP, Liao NY, Docking TR, Birol I, Chan SK, Taylor GA, Palmquist D, Jones SJ, Bohlmann J.
    Insect Biochem Mol Biol; 2012 Aug 29; 42(8):525-36. PubMed ID: 22516182
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  • 33. Climate and weather influences on spatial temporal patterns of mountain pine beetle populations in Washington and Oregon.
    Preisler HK, Hicke JA, Ager AA, Hayes JL.
    Ecology; 2012 Nov 29; 93(11):2421-34. PubMed ID: 23236913
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  • 34. Integrating models to investigate critical phenological overlaps in complex ecological interactions: the mountain pine beetle-fungus symbiosis.
    Addison A, Powell JA, Bentz BJ, Six DL.
    J Theor Biol; 2015 Mar 07; 368():55-66. PubMed ID: 25556687
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  • 35. Population structure and migration pattern of a conifer pathogen, Grosmannia clavigera, as influenced by its symbiont, the mountain pine beetle.
    Tsui CK, Roe AD, El-Kassaby YA, Rice AV, Alamouti SM, Sperling FA, Cooke JE, Bohlmann J, Hamelin RC.
    Mol Ecol; 2012 Jan 07; 21(1):71-86. PubMed ID: 22118059
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  • 36. Factors governing outbreak dynamics in a forest intensively managed for mountain pine beetle.
    Kunegel-Lion M, Lewis MA.
    Sci Rep; 2020 May 05; 10(1):7601. PubMed ID: 32372031
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  • 38. Seed release in serotinous lodgepole pine forests after mountain pine beetle outbreak.
    Teste FP, Lieffers VJ, Landhausser SM.
    Ecol Appl; 2011 Jan 05; 21(1):150-62. PubMed ID: 21516894
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  • 39. Modeling Landscape-Level Spatial Variation in Sex Ratio Skew in the Mountain Pine Beetle (Coleoptera: Curculionidae).
    James PM, Janes JK, Roe AD, Cooke BJ.
    Environ Entomol; 2016 Aug 05; 45(4):790-801. PubMed ID: 27209334
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