Adopting a spatially explicit perspective to study the mysterious fairy circles of Namibia
about
What caused extinction of the Pleistocene megafauna of Sahul?Spatial Self-Organization of Vegetation Subject to Climatic Stress-Insights from a System Dynamics-Individual-Based Hybrid ModelImproving spatial prioritisation for remote marine regions: optimising biodiversity conservation and sustainable development trade-offs.A morphometric analysis of vegetation patterns in dryland ecosystems.Gradual regime shifts in fairy circles.The relative influences of climate and competition on tree growth along montane ecotones in the Rocky Mountains.Self-Replication of Localized Vegetation Patches in Scarce EnvironmentsA Method to Categorize 2-Dimensional Patterns Using Statistics of Spatial Organization.Discovery of fairy circles in Australia supports self-organization theoryExperiments Testing the Causes of Namibian Fairy Circles.Individual species affect plant traits structure in their surroundings: evidence of functional mechanisms of assembly.Reply to Walsh et al.: Hexagonal patterns of Australian fairy circles develop without correlation to termitaria.Biodiversity losses and conservation responses in the Anthropocene.Integrated population models reveal local weather conditions are the key drivers of population dynamics in an aerial insectivore.Genotypic richness predicts phenotypic variation in an endangered clonal plant.Got Dung? Resource Selection by Dung Beetles in Neotropical Forest Fragments and Cattle Pastures.A theoretical foundation for multi-scale regular vegetation patterns.Satellite Remote Sensing for Coastal Management: A Review of Successful Applications.Environmental selection of planktonic methanogens in permafrost thaw ponds.Response to Janeka et al. 2017.Defaunation effects on plant recruitment depend on size matching and size trade-offs in seed-dispersal networks.Assessing the robustness of spatial pattern sequences in a dryland vegetation model.From wolf to dog: Late Pleistocene ecological dynamics, altered trophic strategies, and shifting human perceptionsClarifying misunderstandings regarding vegetation self-organisation and spatial patterns of fairy circles in Namibia: a response to recent termite hypothesesCommon plants as indicators of habitat suitability for rare plants; quantifying the strength of the association between threatened plants and their neighboursEcohydrological interactions within “fairy circles” in the Namib Desert: Revisiting the self-organization hypothesisWeaknesses in the plant competition hypothesis for fairy circle formation and evidence supporting the sand termite hypothesisThe effects of oil palm plantations on the functional diversity of Amazonian birdsCrossing the threshold: an amphibian assemblage highly infected withBatrachochytrium dendrobatidisin the southern Brazilian Atlantic forest
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P2860
Adopting a spatially explicit perspective to study the mysterious fairy circles of Namibia
description
im Mai 2014 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в травні 2014
@uk
name
Adopting a spatially explicit ...... rious fairy circles of Namibia
@en
Adopting a spatially explicit ...... rious fairy circles of Namibia
@nl
type
label
Adopting a spatially explicit ...... rious fairy circles of Namibia
@en
Adopting a spatially explicit ...... rious fairy circles of Namibia
@nl
prefLabel
Adopting a spatially explicit ...... rious fairy circles of Namibia
@en
Adopting a spatially explicit ...... rious fairy circles of Namibia
@nl
P2093
P2860
P356
P1433
P1476
Adopting a spatially explicit ...... rious fairy circles of Namibia
@en
P2093
Ehud Meron
Hezi Yizhaq
Jost von Hardenberg
Stephan Getzin
P2860
P356
10.1111/ECOG.00911
P577
2014-05-20T00:00:00Z