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- Accurate estimation of aboveground forest biomass stocks is required to assess the impacts of land use changes such as deforestation and subsequent regrowth on concentrations of atmospheric CO2. The Global Ecosystem Dynamics Investigation (GEDI) is a lidar mission launched by NASA to the International Space Station in 2018. GEDI was specifically designed to retrieve vegetation structure within a novel, theoretical sampling design that explicitly quantifies biomass and its uncertainty across a variety of spatial scales. In this paper we provide the estimates of pan-tropical and temperate...AuthorsRalph Dubayah, John Armston, Sean P. Healey, Jamis M. Bruening, Paul L. Patterson, James R. Kellner, Laura Duncanson, Svetlana Saarela, Goran Stahl, Zhiqiang Yang, Hao Tang, J. Bryan Blair, Lola Fatoyinbo, Scott Goetz, Steven Hancock, Matthew Hansen, Michelle Hofton, George Hurtt, Scott LuthckeKeywordsSourceEnvironmental Research Letters. 17(9): 095001.Year2022
- Underlying policy efforts to address global climate change is the scientific need to develop the methods to accurately measure and model carbon stocks and fluxes across the wide range of spatial and temporal scales in the Earth system. Initiated in 2010, the NASA Carbon Monitoring System is one of the most ambitious relevant science initiatives to date, exploiting the satellite remote sensing resources, computational capabilities, scientific knowledge, airborne science capabilities, and end-to-end system expertise that are major strengths of the NASA Earth Science program. Here we provide...AuthorsGeorge C. Hurtt, Arlyn Andrews, Kevin Bowman, Molly E. Brown, Abhishek Chatterjee, Vanessa Escobar, Lola Fatoyinbo, Peter Griffith, Maddie Guy, Sean P. Healey, Daniel J. Jacob, Robert Kennedy, Steven Lohrenz, Megan E. McGroddy, Valeria Morales, Thomas Nehrkorn, Lesley Ott, Sassan Saatchi, Edil Sepulveda Carlo, Shawn P. Serbin, Hanqin TianKeywordsSourceEnvironmental Research Letters. 17: 063010.Year2022
- NASA’s Global Ecosystem Dynamics Investigation (GEDI) mission offers data for temperate and pan-tropical estimates of aboveground forest biomass (AGB). The spaceborne, full-waveform LiDAR from GEDI provides sample footprints of canopy structure, expected to cover about 4% of the land area following two years of operation. Several options are available for estimating AGB at different geographical scales. Using GEDI sample data alone, gridded biomass predictions are based on hybrid inference which correctly propagates errors due to the modeling and accounts for sampling variability, but this...AuthorsSvetlana Saarela, Soren Holm, Sean P. Healey, Paul L. Patterson, Zhiqiang Yang, Hans-Erik Andersen, Ralph O. Dubayah, Wenlu Qi, Laura I Duncanson, John D. Armston, Terje Gobakken, Erik Naesset, Magnus Ekstrom, Goran StahlKeywordsSourceRemote Sensing of Environment. 278: 113074.Year2022
- Phellinus noxius is a fungus that causes brown root rot disease in tree and shrub species of subtropical and tropical regions. It has infected and rapidly killed hundreds of important tree and shrub species in these regions. It is widespread in the Pacific Region including all the island states of American Samoa, the Federated States of Micronesia (Chuuk, Kosrae, Pohnpei, and Yap), the Republic of Palau, the Commonwealth of the Northern Mariana Islands (Islands of Rota and Saipan), and Guam. This report explains how to detect brown root rot disease and its causal pathogen (P. noxius) by...AuthorsPhilip G. Cannon, Ned B. Klopfenstein, Mee-Sook Kim, Jane E. Stewart, Chia-Lin ChungKeywordsSourceGen. Tech. Rep. PNW-GTR-1006. Portland, OR: U.S. Department of Agriculture, Forest Service, Pacific Northwest Research Station. 99 p.Year2022
- Mountain pine beetle (MPB) is a native disturbance agent across most pine forests in the western US. Climate changes will directly and indirectly impact frequencies and severities of MPB outbreaks, which can then alter fuel characteristics and wildland fire dynamics via changes in stand structure and composition. To investigate the importance of MPB to past and future landscape dynamics, we used the mechanistic, spatially explicit ecosystem process model FireBGCv2 to quantify interactions among climate, MPB, wildfire, fire suppression, and fuel management under historical and projected...AuthorsRobert E. Keane, Barbara J. Bentz, Lisa M. Holsinger, Vicki A. Saab, Rachel A. LoehmanKeywordsSourceFire Ecology. 18: 12.Year2022
- Mountain pine beetle (Dendroctonus ponderosae) and spruce beetle (D. rufipennis) are two significant native tree mortality agents with expansive distributions throughout North America. The range of spruce beetle is considered coincident with Picea across North America. Although the distribution of mountain pine beetle in Pinus forests has historically been restricted by climate, recent warming has accelerated migration northward in western Canada. Both species are being directly influenced by changes in climate, particularly warming temperatures that can reduce winter mortality and shorten...AuthorsBarbara J. Bentz, Matt Hansen, Marianne Davenport, David SoderbergKeywordsSourceIn: Gandhi, Kamal J. K.; Hofstetter, Richard W., eds. Bark beetle management, ecology, and climate change. Elsevier, Academic Press. p. 31-54.Year2022
- Promoting ecological resilience to increasing disturbance activity is a key management priority under warming climate. Across the Northern Hemisphere, tree mortality from widespread bark beetle outbreaks raises concerns for how forest management can foster resilience to future outbreaks. Density reduction (i.e., thinning) treatments can increase vigor of remaining trees, but the longevity of treatment efficacy for reducing susceptibility to future disturbance remains a key knowledge gap. Using one of the longest-running replicated experiments in old-growth subalpine forests, we measured...AuthorsJenna E. Morris, Michele S. Buonanduci, Michelle C. Agne, Michael A. Battaglia, Brian J. HarveyKeywordsSourceEcological Applications. 32(1): e02474.Year2022
- A changing climate is altering ecosystem carbon dynamics with consequences for natural systems and human economies, but there are few tools available for land managers to meaningfully incorporate carbon trajectories into planning efforts. To address uncertainties wrought by rapidly changing conditions, many practitioners adopt resistance and resilience as ecosystem management goals, but these concepts have proven difficult to monitor across landscapes. Here, we address the growing need to understand and plan for ecosystem carbon with concepts of resistance and resilience. Using time series...AuthorsThomas S. Davis, Arjan J. H. Meddens, Camille S. Stevens‐Rumann, Vincent S. Jansen, Jason S. Sibold, Michael A. BattagliaSourceEcological Applications. 2022: e2704.Year2022
- Over the past several decades, the management of historically frequent-fire forests in the western United States has received significant attention due to the linked ecological and social risks posed by the increased occurrence of large, contiguous patches of high-severity fire. As a result, efforts are underway to simultaneously reduce potential fire and fuel hazards and restore characteristics indicative of historical forest structures and ecological processes that enhance the diversity and quality of wildlife habitat across landscapes. Despite widespread agreement on the need for...AuthorsScott Ritter, Chad M. Hoffman, Michael A. Battaglia, Terrie B. JainKeywordsSourceEcological Applications. 2022: e2682.Year2022
- Adverse effects of wildfires can be mitigated within fuel treatments, but empirical evidence of their effectiveness across large areas is needed to guide design and implementation at the landscape level. We conducted a systematic literature review of empirically based studies that tested the influence of landscape-level fuel treatments on subsequent wildfires in North America over the past 30 years to evaluate how treatment type and configuration affect subsequent wildfire behavior or enable more effective wildfire response.AuthorsShawn McKinney, Ilana Abrahamson, Terrie B. Jain, Nathaniel AndersonKeywordsSourceFire Ecology. 18: 21.Year2022