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Data from: Direction matching for sparse movement datasets: determining interaction rules in social groups
负责人:
University Of Konstanz
关键词:
baboon behaviour De Hoop Nature Reserve force matching movement Papio hamadryas ursinus social groups sparse movement data
DOI:
doi:10.5441/001/1.t2212r18
摘要:
of animals on the move. Here we propose a modified version of force matching (referred to here as direction matching), whereby sparse movement data
Baboon group movement, South Africa (data from Bonnell et al. 2016)-reference-data
负责人:
University Of Konstanz
关键词:
baboon behaviour De Hoop Nature Reserve force matching movement Papio hamadryas ursinus social groups sparse movement data
DOI:
doi:10.5441/001/1.t2212r18/2
摘要:
of animals on the move. Here we propose a modified version of force matching (referred to here as direction matching), whereby sparse movement data
Baboon group movement, South Africa (data from Bonnell et al. 2016)
负责人:
University Of Konstanz
关键词:
baboon behaviour De Hoop Nature Reserve force matching movement Papio hamadryas ursinus social groups sparse movement data
DOI:
doi:10.5441/001/1.t2212r18/1
摘要:
of animals on the move. Here we propose a modified version of force matching (referred to here as direction matching), whereby sparse movement data
Data from: Contributions of subsurface cortical modulations to discrimination of executed and imagined grasp forces throug
负责人:
关键词:
hand grasp;alpha band;central sulcus;delta band;beta band;gamma band;stereoelectroencephalography;depth electrode;grasp force;insular cortex;BMI
DOI:
doi:10.5061/dryad.nq4fs
摘要:
. In order to observe changes in frequency band modulation, participants performed force matching trials at three distinct force levels using two different
Data from: Trait-matching and phylogeny as predictors of predator-prey interactions involving ground beetles
负责人:
关键词:
networks;Matching-centrality formalism;food web;Diplopoda;Isopoda;Coleoptera;Carabidae;Pseudoscorpiones;Functional traits;Araneae;trophic interactions
DOI:
doi:10.5061/dryad.7tn01
摘要:
the evolutionary distance within each trophic level increased the ability to predict which species did not interact to >75 %. The matching of predator biting force and prey
Data from: Coevolution and the architecture of mutualistic networks
负责人:
Nuismer, Scott Landis
关键词:
Coevolution Plant-Insect Interaction Models/Simulations
DOI:
doi:10.5061/dryad.tk400
摘要:
within the community. Another important consequence is altered patterns of nestedness. Specifically, interactions mediated by a mechanism of phenotype matching tend
Data from: Swing-Leg Trajectory of Running Guinea Fowl Suggests Task-Level Priority of Force Regulation Rather than Disturbance Rejection
负责人:
关键词:
locomotion stabilty running biomechanics optimization guinea fowl
DOI:
doi:10.5061/dryad.m1c1g
摘要:
predictions to experimental data on guinea fowl running over a visible step down. Swing and stance dynamics of running guinea fowl closely match simulations
Data from: I meant to do that: determining the intentions of action in the face of disturbances
负责人:
关键词:
human;Feedback;feedforward;control of movement;Prediction;internal model;generative model;arm reaching;error;upper extremity;intention
DOI:
doi:10.5061/dryad.1257p
摘要:
Our actions often do not match our intentions when there are external disturbances such as turbulence. We derived a novel modeling approach
Data from: Darker where cold and wet: Australian birds follow their own version of Gloger's rule
负责人:
Delhey, Kaspar
关键词:
achromatic colour melanin plumage climate thermoregulation water temperature
DOI:
doi:10.5061/dryad.n7832
摘要:
pigmentation in preventing feather degradation by bacteria, but also with background-matching for camouflage. Darker plumage might be beneficial in colder
Data from: Evolution of patterned plumage as a sexual signal in estrildid finches
负责人:
Soma, Masayo
关键词:
plumage colour pattern sexual signal estrildid finch phylogenetic comparison
DOI:
doi:10.5061/dryad.35j39r8
摘要:
that too conspicuous patterns are costly, presumably because of the risk of catching the eyes of potential predators. Therefore, plumage patterns ar

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