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Biodiversitätsindex in Wäldern×Abschätzung der Kronendachbedeckung×
FachgebietForstwissenschaftForstwissenschaft
FamilieProcess / pipelineProcess / pipeline
Entstehungsjahr1948–20042000s
UrheberShannon, Simpson, and MagurranJennings, Brown, Sheil, and colleagues
TypAnalysis and quantification pipelineMeasurement and estimation pipeline
Wegweisende QuelleShannon, C. E. (1948). A Mathematical Theory of Communication. The Bell System Technical Journal, 27(3), 379–423. DOI ↗Jennings, S. B., Brown, N. D., & Sheil, D. (2000). Assessing Forest Canopies and Understorey Illumination: Methods and Applications. Forest Ecology and Management, 129(1-3), 219–243. link ↗
AliasnamenForest diversity index, Species richness assessment, Shannon index forestryCanopy closure measurement, Crown cover estimation, Overstory density assessment
Verwandt44
ZusammenfassungForest biodiversity indices quantify species richness, evenness, and overall diversity in forest ecosystems. Rooted in information theory (Shannon) and statistical ecology (Simpson, Magurran), these indices compress complex multispecies data into interpretable metrics. Applied to forest inventory data, biodiversity indices guide conservation planning, assess ecological health, and track responses to management or disturbance.Canopy cover, or canopy closure, is the proportion of ground area covered by tree crowns when viewed from above, typically expressed as a percentage. Formalized by Jennings and colleagues in pioneering work on tropical forest structure, canopy cover estimation employs multiple methods—from field-based ocular assessment to sophisticated remote sensing and terrestrial LiDAR—providing essential data on forest structure, light availability, and habitat characteristics relevant to ecology, silviculture, and climate research.
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ScholarGateMethoden vergleichen: Biodiversity Index in Forests · Canopy Cover Estimation. Abgerufen am 2026-06-18 von https://scholargate.app/de/compare