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Folders: ROOT > ScienceBase Catalog > LC MAP - Landscape Conservation Management and Analysis Portal > Upper Midwest and Great Lakes Landscape Conservation Cooperative > Projects > Forest Conservation Projects ( Show direct descendants )

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Researchers assessed how an expansion of forest reserves and climate-adaptive management may improve ecological connectivity and resilience under different climate scenarios. Resilience is measured as the capacity for these systems to maintain extant forest communities and aboveground live biomass. Forest landscape change was simulated via a spatially explicit forest ecosystem model, LANDIS-II. Simulations covered areas in northern Minnesota and northern lower Michigan that represent northern Great Lakes forest types. Restoring and maintaining ecological connectivity is one of the primary climate change adaptation strategies available to land managers, in addition to silvicultural practices. This study is...
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Land managers and resource and conservation professionals across political and organizational boundaries (e.g. state and federal agencies, non-governmental organizations, private landowners) often lack a common framework for planning and coordinated decision-making on a regional scale. We created and implemented such a framework and demonstrated its application through Story Maps, an interactive web-based communication tool. Story Maps facilitate collective understanding and decision-making by displaying interactive maps and spatial data with narrative text and multimedia. We developed a framework for coordinated development of Story Maps, integrating both the Ecosystem Services and Human Well-Being frameworks used...
Forest-dominated landscapes provide a wide range of ecosystem services to many different sectors of society, including forest products (e.g., timber), recreational opportunities and support of tourism, carbon sequestration, and habitat for fish and wildlife and other biodiversity. However, many forests and embedded aquatic systems in the Northwoods are in degraded condition due to land and resource management decisions, impacts of over-abundant deer populations, and the spread of nonnative forest pests and pathogens that have led to “surprise” losses of key tree species. The long-term viability of these vast expanses of forest-dominated systems has great potential to be further compromised as climatic changes...
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The emerald ash borer (EAB) poses a tremendous threat to ash forest habitats across the upper Great Lakes. Of particular concern is the impact EAB will have on the ecology and functioning of black ash ( Fraxinus nigra) forested wetlands, which cover over 500,000 ha in Michigan, Minnesota, and Wisconsin and represent the region’s most common ash forest habitat. Black ash often occurs in relatively pure stands on poorly drained sites where it serves as a foundation species exerting a strong control over ecosystem structure and functioning. Correspondingly, extirpation of this species by EAB could have negative cascading effects, including dramatic rises in water tables and shifts in vegetation composition towards...


    map background search result map search result map Scenarios for forest reserve expansion and adaptive management under alternative climate change scenarios in the northern Great Lakes Quantifying and mitigating the impacts of emerald ash borer on black ash forests in the upper Great Lakes region Supporting Conservation and Decision-Making in the Northwoods: Mapping Forest Values, Services, and Threats Supporting Conservation and Decision-Making in the Northwoods: Mapping Forest Values, Services, and Threats Scenarios for forest reserve expansion and adaptive management under alternative climate change scenarios in the northern Great Lakes Quantifying and mitigating the impacts of emerald ash borer on black ash forests in the upper Great Lakes region