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Patterns and drivers of early conifer regeneration following stand-replacing wildfire in Pacific Northwest (USA) temperate maritime forests

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Madison M. Laughlin, Liliana K. Rangel-Parra, Jenna E. Morris, Daniel C. Donato, Joshua S. Halofsky, Brian J. Harvey, and Northwest, 2023-12-01, Patterns and drivers of early conifer regeneration following stand-replacing wildfire in Pacific Northwest (USA) temperate maritime forests: Forest Ecology and Management, v. 549, no. 121491.

Summary

Tree regeneration is a critical mechanism of forest resilience to stand-replacing wildfire (i.e., where fire results in >90 % tree mortality), and post-fire regeneration is a concern worldwide as the climate becomes warmer. Although post-fire tree regeneration has been relatively well-studied in fire-prone forests across western North America, it is less understood in fire regimes characterized by large patches of stand-replacing fire at long intervals, such as the nominally infrequent, high-severity fire regimes of the western Cascades of Washington and northern Oregon, USA (northwestern Cascadia) where some of world’s highest-biomass forests reside. Recent wildfire activity (2015–2020) in northwestern Cascadia provides a unique opportunity [...]

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  • National and Regional Climate Adaptation Science Centers
  • Northwest CASC

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citationTypeJournal Article
journalForest Ecology and Management
parts
typeDOI
valuehttps://doi.org/10.1016/j.foreco.2023.121491
typeVolume
value549
typeNumber
value121491

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