Intrinsic scaling complexity in animal dispersion and abundance.
about
Using a data-constrained model of home range establishment to predict abundance in spatially heterogeneous habitatsSpatial and temporal occurrence of blue whales off the U.S. West Coast, with implications for managementReorientation patterns in central-place foraging: internal clocks and klinokinesis.Territorial dynamics and stable home range formation for central place foragersInferring spatial memory and spatiotemporal scaling from GPS data: comparing red deer Cervus elaphus movements with simulation models.The Lévy flight foraging hypothesis: forgetting about memory may lead to false verification of Brownian motionBivariate Gaussian bridges: directional factorization of diffusion in Brownian bridge models.Predicting the continuum between corridors and barriers to animal movements using Step Selection Functions and Randomized Shortest Paths.Non-random walks in monkeys and humans.Foraging Behaviour in Magellanic Woodpeckers Is Consistent with a Multi-Scale Assessment of Tree Quality.Brownian motion or Lévy walk? Stepping towards an extended statistical mechanics for animal locomotionMultiple movement modes by large herbivores at multiple spatiotemporal scalesOne size does not fit all: flexible models are required to understand animal movement across scales.Movement is the glue connecting home ranges and habitat selection.Recurrent patterning in the daily foraging routes of hamadryas baboons (Papio hamadryas): spatial memory in large-scale versus small-scale space.Of scales and stationarity in animal movements.Solvable random-walk model with memory and its relations with Markovian models of anomalous diffusion.Random walks with preferential relocations to places visited in the past and their application to biology.Slow Lévy flights.A memory-based foraging tactic reveals an adaptive mechanism for restricted space use.Linking animal movement to site fidelity.How many animals really do the Lévy walk?Optimal movement strategies for social foragers in unpredictable environments.The detection of spatial structure in populations and communities: An empirical case studyIndividual-based movement models reveals sex-biased effects of landscape fragmentation on animal movementHow a simple adaptive foraging strategy can lead to emergent home ranges and increased food intakePrimates adjust movement strategies due to changing food availability
P2860
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P2860
Intrinsic scaling complexity in animal dispersion and abundance.
description
2004 nî lūn-bûn
@nan
2004年の論文
@ja
2004年学术文章
@wuu
2004年学术文章
@zh
2004年学术文章
@zh-cn
2004年学术文章
@zh-hans
2004年学术文章
@zh-my
2004年学术文章
@zh-sg
2004年學術文章
@yue
2004年學術文章
@zh-hant
name
Intrinsic scaling complexity in animal dispersion and abundance.
@en
Intrinsic scaling complexity in animal dispersion and abundance.
@nl
type
label
Intrinsic scaling complexity in animal dispersion and abundance.
@en
Intrinsic scaling complexity in animal dispersion and abundance.
@nl
prefLabel
Intrinsic scaling complexity in animal dispersion and abundance.
@en
Intrinsic scaling complexity in animal dispersion and abundance.
@nl
P356
P1476
Intrinsic scaling complexity in animal dispersion and abundance.
@en
P2093
Arild O Gautestad
Ivar Mysterud
P356
10.1086/426673
P577
2004-11-22T00:00:00Z