Dynamically simulating spruce budworm in eastern Canada and its interactions with wildfire
暂无分享,去创建一个
[1] J. Kaplan,et al. Tropical forest restoration under future climate change , 2022, Nature Climate Change.
[2] S. J. Mayor,et al. Dry corridors opened by fire and low CO2 in Amazonian rainforest during the Last Glacial Maximum , 2021, Nature Geoscience.
[3] H. Morin,et al. Does the type of silvicultural practice influence spruce budworm defoliation of seedlings? , 2021 .
[4] K. Thonicke,et al. Tackling unresolved questions in forest ecology: The past and future role of simulation models , 2021, Ecology and evolution.
[5] J. Lawler,et al. Global review on interactions between insect pests and other forest disturbances , 2021, Landscape Ecology.
[6] C. Bourque,et al. Physiological and Morphological Variation in Balsam Fir Provenances Growing in New Brunswick, Canada , 2021, Forests.
[7] Victor Kafka,et al. Fifty years of wildland fire science in Canada , 2020, Canadian Journal of Forest Research.
[8] J. Régnière,et al. Modeling Climatic Influences on Three Parasitoids of Low-Density Spruce Budworm Populations. Part 1: Tranosema rostrale (Hymenoptera: Ichneumonidae) , 2020, Forests.
[9] M. Parisien,et al. Fire deficit increases wildfire risk for many communities in the Canadian boreal forest , 2020, Nature Communications.
[10] D. Maclean. Protection Strategy against Spruce Budworm , 2019, Forests.
[11] J. Régnière,et al. A Conceptual Framework for the Spruce Budworm Early Intervention Strategy: Can Outbreaks be Stopped? , 2019, Forests.
[12] J. Régnière,et al. Dynamics and Management of Rising Outbreak Spruce Budworm Populations , 2019, Forests.
[13] C. Peng,et al. Simulation and Analysis of the Effect of a Spruce Budworm Outbreak on Carbon Dynamics in Boreal Forests of Quebec , 2019, Ecosystems.
[14] J. Kaplan,et al. Increases in heat-induced tree mortality could drive reductions of biomass resources in Canada’s managed boreal forest , 2019, Landscape Ecology.
[15] J. Régnière,et al. Influence of temperature on historic and future population fitness of the western spruce budworm, Choristoneura occidentalis , 2019, International Journal of Pest Management.
[16] L. De Grandpré,et al. Phenological synchrony between eastern spruce budworm and its host trees increases with warmer temperatures in the boreal forest , 2018, Ecology and evolution.
[17] H. Morin,et al. A Holocene landscape dynamic multiproxy reconstruction: How do interactions between fire and insect outbreaks shape an ecosystem over long time scales? , 2018, PloS one.
[18] M. Girardin,et al. Adverse climatic periods precede and amplify defoliator‐induced tree mortality in eastern boreal North America , 2018, Journal of Ecology.
[19] R. Fleming,et al. Ecoregional Patterns of Spruce Budworm—Wildfire Interactions in Central Canada’s Forests , 2018 .
[20] Zhiliang Zhu,et al. Translating MC2 DGVM Results into Ecosystem Services for Climate Change Mitigation and Adaptation , 2017 .
[21] R. Rothermel. A Mathematical Model for Predicting Fire Spread in Wildland Fuels , 2017 .
[22] J. Kaplan,et al. The pyrogeography of eastern boreal Canada from 1901 to 2012 simulated with the LPJ-LMfire model , 2017 .
[23] A. Weiskittel,et al. Even low levels of spruce budworm defoliation affect mortality and ingrowth but net growth is more driven by competition , 2017 .
[24] Ronald J. Hall,et al. Biotic disturbances in Northern Hemisphere forests – a synthesis of recent data, uncertainties and implications for forest monitoring and modelling , 2017 .
[25] B. Wotton,et al. Lagged cumulative spruce budworm defoliation affects the risk of fire ignition in Ontario, Canada. , 2017, Ecological applications : a publication of the Ecological Society of America.
[26] D. Pureswaran,et al. Paradigms in Eastern Spruce Budworm (Lepidoptera: Tortricidae) Population Ecology: A Century of Debate , 2016, Environmental Entomology.
[27] Philippe Ciais,et al. The status and challenge of global fire modelling , 2016 .
[28] W. Kurz,et al. Negative impacts of high temperatures on growth of black spruce forests intensify with the anticipated climate warming , 2015, Global change biology.
[29] R. GrayDavid,et al. The influence of forest composition and climate on outbreak characteristics of the spruce budworm in eastern Canada , 2013 .
[30] J. Régnière,et al. Predicting insect distributions under climate change from physiological responses: spruce budworm as an example , 2012, Biological Invasions.
[31] S. Levis,et al. A process-based fire parameterization of intermediate complexity in a Dynamic Global Vegetation Model , 2012 .
[32] H. Morin,et al. Dendrochronological reconstruction of spruce budworm (Choristoneura fumiferana) outbreaks in southern Quebec for the last 400 years 1 , 2012 .
[33] Brian R. Miranda,et al. Comparing modern and presettlement forest dynamics of a subboreal wilderness: does spruce budworm enhance fire risk? , 2012, Ecological applications : a publication of the Ecological Society of America.
[34] Darren T. Drewry,et al. The Jena Diversity-Dynamic Global Vegetation Model (JeDi-DGVM): a diverse approach to representing t , 2012 .
[35] KneeshawDaniel,et al. Effects of forest management legacies on spruce budworm (Choristoneura fumiferana) outbreaks , 2012 .
[36] H. Morin,et al. Long‐term spruce budworm outbreak dynamics reconstructed from subfossil trees , 2011 .
[37] R. Fleming,et al. Forecasting the response of spruce budworm defoliation to climate change in Ontario , 2011 .
[38] S. Ziegler,et al. The Geography of Spruce Budworm in Eastern North America , 2011 .
[39] C. Peng,et al. Toward dynamic global vegetation models for simulating vegetation–climate interactions and feedbacks: recent developments, limitations, and future challenges , 2010 .
[40] W. Kurz,et al. Future Spruce Budworm Outbreak May Create a Carbon Source in Eastern Canadian Forests , 2010, Ecosystems.
[41] Sandy P. Harrison,et al. The influence of vegetation, fire spread and fire behaviour on biomass burning and trace gas emissions: results from a process-based model , 2010 .
[42] S. Sitch,et al. The role of fire disturbance for global vegetation dynamics: coupling fire into a Dynamic Global Vegetation Model , 2008 .
[43] S. Payette,et al. Rapid expansion of lichen woodlands within the closed‐crown boreal forest zone over the last 50 years caused by stand disturbances in eastern Canada , 2008 .
[44] Werner A. Kurz,et al. Risk of natural disturbances makes future contribution of Canada's forests to the global carbon cycle highly uncertain , 2008, Proceedings of the National Academy of Sciences.
[45] D. Gray,et al. Outbreak patterns of the spruce budworm and their impacts in Canada , 2006 .
[46] H. Temesgen,et al. Leaf mass per area relationships across light gradients in hybrid spruce crowns , 2006, Trees.
[47] Richard A. Fleming,et al. Landscape-scale spatial distribution of spruce budworm defoliation in relation to bioclimatic conditions , 2005 .
[48] N. Carter,et al. ANALYSIS OF SPRUCE BUDWORM OUTBREAK CYCLES IN NEW BRUNSWICK, CANADA, SINCE 1952 , 2005 .
[49] D. Arseneault,et al. Spruce budworm outbreaks in eastern Quebec over the last 450 years , 2004 .
[50] I. C. Prentice,et al. Evaluation of ecosystem dynamics, plant geography and terrestrial carbon cycling in the LPJ dynamic global vegetation model , 2003 .
[51] Richard A. Fleming,et al. Landscape-Scale Analysis of Interactions between Insect Defoliation and Forest Fire in Central Canada , 2002 .
[52] É. Bauce,et al. Development of the First-Instar Spruce Budworm (Lepidoptera: Tortricidae) , 2000 .
[53] Richard A. Fleming,et al. Spatiotemporal patterns of large-scale defoliation caused by the spruce budworm in Ontario since 1941 , 1998 .
[54] É. Bauce,et al. Non‐freeze survival of spruce budworm larvae, Choristoneura fumiferana, at sub‐zero temperatures during diapause , 1995 .
[55] P. Rusnock,et al. The rise and fall of the silvicultural hypothesis in spruce budworm (Choristoneura fumiferana) management in eastern Canada , 1993 .
[56] J. Régnière,et al. A simulation model of spruce budworm (Lepidoptera: Tortricidae) feeding on balsam fir and white spruce , 1991 .
[57] H. S. Crawford,et al. PREDATION BY BIRDS ON SPRUCE BUDWORM CHORISTONEURA FUMIFERANA: FUNCTIONAL, NUMERICAL, AND TOTAL RESPONSES' , 1989 .
[58] J. Régnière. TEMPERATURE-DEPENDENT DEVELOPMENT OF EGGS AND LARVAE OF CHORISTONEURA FUMIFERANA (CLEM.) (LEPIDOPTERA: TORTRICIDAE) AND SIMULATION OF ITS SEASONAL HISTORY , 1987, The Canadian Entomologist.
[59] B. Stocks. Fire Potential in the Spruce Budworm-damaged Forests of Ontario , 1987 .
[60] J. Régnière. AN OVIPOSITION MODEL FOR THE SPRUCE BUDWORM, CHORISTONEURA FUMIFERANA (LEPIDOPTERA: TORTRICIDAE) , 1983, The Canadian Entomologist.
[61] J. Blais. Trends in the frequency, extent, and severity of spruce budworm outbreaks in eastern Canada , 1983 .
[62] J. Régnière. A PROCESS-ORIENTED MODEL OF SPRUCE BUDWORM PHENOLOGY (LEPIDOPTERA: TORTRICIDAE) , 1982, The Canadian Entomologist.
[63] J. Blais. Mortality of balsam fir and white spruce following a spruce budworm outbreak in the Ottawa River watershed in Quebec , 1981 .
[64] D. E. Leonard,et al. Comparison of energy budgets for spruce budworm Choristoneura fumiferana (Clemens) on balsam fir and white spruce , 1981, Oecologia.
[65] D. Maclean. Vulnerability of Fir-Spruce Stands During Uncontrolled Spruce Budworm Outbreaks: A Review and Discussion , 1980 .
[66] C. Miller. Spruce Budworm: How it Lives and What it Does , 1975 .
[67] R. Belyea. Death and Deterioration of Balsam Fir Weakened by Spruce Budworm Defoliation in Ontario: Part I Notes on the seasonal history and habits of insects breeding in severely weakened and dead trees , 1952, The Canadian Entomologist.
[68] R. Snell,et al. Simulating long‐distance seed dispersal in a dynamic vegetation model , 2014 .
[69] M. Fortin,et al. Modelling Spatial Interactions Among Fire, Spruce Budworm, and Logging in the Boreal Forest , 2010, Ecosystems.
[70] Some Discussions on the Leaf Biomass of Forest Stands and Trees , 2004 .
[71] R. Werner,et al. Fire and insects in northern and boreal forest ecosystems of North America. , 1998, Annual review of entomology.
[72] R. F. Morris. The Dynamics of Epidemic Spruce Budworm Populations , 1963 .
[73] R. F. Morris. THE DEVELOPMENT OF PREDICTIVE EQUATIONS FOR THE SPRUCE BUDWORM BASED ON KEY-FACTOR ANALYSIS , 1963 .