Land Management Search Results
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Authors
Alberta Biodiversity Monitoring Institute
As of 2015, 29.2% of Alberta is under human footprint, up from 25.7% in 1999—that’s an average increase of about 0.22%, or around 1450 km2 (560 sections) per year.
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Vegetation workshop was held November 1979 to evaluate user needs for more detailed vegetation descriptions and maps and to review the results of the vegetation survey as a step towards meeting needs
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Authors
M.S. Thompson
J. Crosby-Diewold
Relationship between aquatic macrophyte growth and habitat factors found in the AOSERP study area is outlined, as are some implications of aquatic macrophyte inventory for management and revegetation
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Resource Date:
August
2021
With the support of Alberta Environment and Parks, the Alberta Biodiversity Monitoring Institute has become the trusted source for data about habitat, species, and the human footprint.
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As caribou habitat restoration initiatives have become more widespread across Alberta in the last decade, key uncertainties have been recognized regarding what treatment types are appropriate for...
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Authors
Roger DeAbreu
Shane Patterson
Todd Shipman
Chris Powter
NRCan pilot science projects have proven that Earth Observation can provide relevant and valuable information to inform and enhance monitoring and support regulatory frameworks
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Authors
M.D. Thompson
M.C. Wride
M.E. Kirby
Classification system devised for mapping vegetation and surficial geology from 1:60,000 scale false colour infrared photographs; 1:50 000 base maps plus a vegetation and a surficial geology overlay
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Ground surveys of vegetation and surficial geology generally confirmed that the classification systems used in the mapping accurately described and defined the ecological habitat features
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The Galena Hill Ecosystem Map (GHEM) was initially developed to provide information about existing plant communities and their growth conditions to guide upcoming reclamation efforts at the historical...
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Authors
Oumer Ahmed
Adam Shemrock
Dominique Chabot
Chris Dillon
Griffin Williams
Rachel Wasson
Steven Franklin
Resource Date:
February
2017
This resource is available on an external database and may require a paid subscription to access it. It is included on the CCLM to support our goal of capturing and sharing the breadth of all...
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Authors
Dominique Boucher
Sylvie Gauthier
Nelson Thiffault
William Marchand
Martin Girardin
Climate change is projected to increase fire severity and frequency in the boreal forest, but it could also directly affect post-fire recruitment processes by impacting seed production, germination...
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Authors
Shijuan Chen
Gregory McDermid
Guillermo Castilla
Julia Linke
Resource Date:
December
2017
Monitoring vegetation recovery typically requires ground measurements of vegetation height, which is labor-intensive and time-consuming. Recently, unmanned aerial vehicles (UAVs) have shown great...
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Authors
Shauna-Lee Chai
Amy Nixon
Scott Nielsen
Assessed 16 potentially new invasive plant species not yet present in Alberta for their invasiveness and climate change-related risk
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Authors
Alberta Biodiversity Monitoring Institute
Resource Date:
January
2020
Linear features, including seismic lines, pipelines, transmission lines, roads, railways, and trails are pervasive in Alberta’s boreal forest and have been implicated as a primary factor leading to...
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Authors
Mar Martinez
Gary Borstad
Leslie Brown
Kaan Ersahin
Michael Henley
Monitoring of reclaimed sites is a complex, interdisciplinary undertaking, especially in large, disturbed areas with difficult access. In that context, remote sensing is a unique and valuable tool...
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Provides recommendations based on the field survey and ground checking, for developing methodologies to enhance the detail on 1:50 000 vegetation maps (preliminary vegetation community classification)
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This thesis investigates the effectiveness of machine learning algorithms for automatic detection of coniferous seedling data along Boreal seismic lines. In order to obtain a survival assessment and...
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Authors
Guillermo Castilla
Ronald Hall
Rob Skakun
Michelle Filiatrault
André Beaudoin
Michael Gartrell
Lisa Smith
Kathleen Groenewegen
Chris Hopkinson
Jurjen van der Sluijs
Resource Date:
February
2022
Wall-to-wall 30 m raster maps of broad forest type, stand height, crown closure, stand volume, total volume, aboveground biomass, and stand age were created for a ~400,000 km2 area, validated with independent data, and generalized into a polygon GIS layer resembling a traditional FI map. The MVI project showed that a reasonably accurate FI map for large, remote, predominantly non-inventoried boreal regions can be obtained at a low cost by combining limited field data with remote sensing data from multiple sources.
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Authors
Karine Pigeon
Meghan Anderson
Doug MacNearney
Jerome Cranston
Gordon Stenhouse
Laura Finnegan
This resource is available on an external database and may require a paid subscription to access it. It is included on the CCLM to support our goal of capturing and sharing the breadth of all...
Resource
Authors
K.A. Baldwin
Lorna Allen
S. Basquill
K. Chapman
D. Downing
N. Flynn
W. Mackenzie
M. Major
W.J. Meades
D. Meidinger
C. Morneau
J.-P. Saucier
J. Thorpe
Vegetation Zones of Canada: a Biogeoclimatic Perspective maps Canadian geography in relation to regional climate, as indicated by vegetation patterns. Compared to previous similar national-scale...