Wildfire‐mediated vegetation change in boreal forests of Alberta, Canada
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- Type
- article
- Published
- 2018-03-01
- Cited by
- 132
- References
- 114
- Access
- Open access
- OpenAlex
- https://openalex.org/W2794864193
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:90768264
Keywords
Environmental science, Boreal, Vegetation (pathology), Fire regime, Climate change
References
- Global mountain topography and the fate of montane species under climate change
- Forest Fire History in the Northern Rockies
- The climate space of fire regimes in north‐western North America
- Tradeoffs between forestry resource and conservation values under alternate policy regimes: A spatial analysis of the western Canadian boreal plains
- Connectivity of forest fuels and surface fire regimes
- Massive mortality of aspen following severe drought along the southern edge of the Canadian boreal forest
- Post‐Hypsithermal plant disjunctions in western Alberta, Canada
- Megaproject reclamation and climate change
- Boreal forest health and global change
- Climate, competition and connectivity affect future migration and ranges of European trees
- Research agenda for integrated landscape modeling
- Anticipating the consequences of climate change for Canada’s boreal forest ecosystems1
- On underestimation of global vulnerability to tree mortality and forest die-off from hotter drought in the Anthropocene
- Hydrological feedbacks in northern peatlands
- Alberta's Natural Subregions Under a Changing Climate: Past, Present, and Future
- Forest fire occurrence and climate change in Canada
- Climate and the southern limit of the western Canadian boreal forest
- Observations from old forests underestimate climate change effects on tree mortality
- A General Mathematical Framework for Modeling Two-Dimensional Wildland Fire Spread
- Potential changes in forest composition could reduce impacts of climate change on boreal wildfires.
Cited by
- Climate change, wildfire, and vegetation shifts in a high-inertia forest landscape: Western Washington, U.S.A.
- Topoedaphic and Forest Controls on Post-Fire Vegetation Assemblies Are Modified by Fire History and Burn Severity in the Northwestern Canadian Boreal Forest
- Anticipating fire‐mediated impacts of climate change using a demographic framework
- Demand for nonprovisioning ecosystem services as a driver of change in the Canadian boreal zone1
- Insights on the persistence of pines (Pinus species) in the Late Cretaceous and their increasing dominance in the Anthropocene
- Distribution of Cranberry Blue Butterflies (Agriades optilete) and Their Responses to Forest Disturbance from In Situ Oil Sands and Wildfires
- Potential impacts of climate change on the habitat of boreal woodland caribou
- Satellite-derived emissions of carbon monoxide, ammonia, and nitrogen dioxide from the 2016 Horse River wildfire in the Fort McMurray area
- Hydrology of a Moderate–Rich Fen Watershed Prior to, and Following Wildfire in the Western Boreal Plain, Northern Alberta, Canada,
- Could restoration of a landscape to a pre-European historical vegetation condition reduce burn probability?
- Living on the edge: trailing edge forests at risk of fire‐facilitated conversion to non‐forest
- High-resolution regional climate modeling and projection over western Canada using a weather research forecasting model with a pseudo-global warming approach
- Climate change likely to reshape vegetation in North America's largest protected areas
- Additive and interactive cumulative effects on boreal landbirds: winners and losers in a multi‐stressor landscape
- Scientists’ warning on wildfire — a Canadian perspective
- Changes to the hydrophysical properties of upland and riparian soils in a burned fen watershed in the Athabasca Oil Sands Region, northern Alberta, Canada
- Drivers of lodgepole pine recruitment across a gradient of bark beetle outbreak and wildfire in British Columbia
- Applications of simulation-based burn probability modelling: a review
- Projected climate change effects on Alberta's boreal forests imply future challenges for oil sands reclamation
- Climate change shifts in habitat suitability and phenology of huckleberry (Vaccinium membranaceum)
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