about
Reconstructing the ups and downs of primate brain evolution: implications for adaptive hypotheses and Homo floresiensisReconsidering the evolution of brain, cognition, and behavior in birds and mammalsEvolutionary origins of ultrasonic hearing and laryngeal echolocation in bats inferred from morphological analyses of the inner earDevelopmental constraints on behavioural flexibilityBrain reorganization, not relative brain size, primarily characterizes anthropoid brain evolutionComparative analyses of evolutionary rates reveal different pathways to encephalization in bats, carnivorans, and primatesComparative analysis of encephalization in mammals reveals relaxed constraints on anthropoid primate and cetacean brain scaling.Evolutionary divergence in brain size between migratory and resident birds.The effect of body size evolution and ecology on encephalization in cave bears and extant relatives.Evolutionary change in the brain size of bats.Drosophila as a developmental paradigm of regressive brain evolution: proof of principle in the visual system.Phenotypic plasticity is maintained despite geographical isolation in an African cichlid fish, Pseudocrenilabrus multicolor.Variable extent of parallelism in respiratory, circulatory, and neurological traits across lake whitefish species pairs.Understanding the evolution of Mammalian brain structures; the need for a (new) cerebrotype approach.Light enough to travel: migratory bats have smaller brains, but not larger hippocampi, than sedentary species.Behavioral flexibility positively correlated with relative brain volume in predatory bats.A role for brain size and cognition in food webs.Auditory opportunity and visual constraint enabled the evolution of echolocation in bats.Evolution and complexity: the double-edged sword.Phylogenetic signal, feeding behaviour and brain volume in Neotropical bats.The correlated evolution of antipredator defences and brain size in mammals.Parental investment and fecundity, but not brain size, are associated with establishment success in introduced fishesEvolution of the Avian Brain and SensesConstraints of Biological Neural Networks and Their Consideration in AI Applications
P2860
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P2860
description
2005 nî lūn-bûn
@nan
2005 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2005 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
2005年の論文
@ja
2005年論文
@yue
2005年論文
@zh-hant
2005年論文
@zh-hk
2005年論文
@zh-mo
2005年論文
@zh-tw
2005年论文
@wuu
name
Bigger is not always better: when brains get smaller
@ast
Bigger is not always better: when brains get smaller
@en
Bigger is not always better: when brains get smaller
@en-gb
Bigger is not always better: when brains get smaller
@nl
type
label
Bigger is not always better: when brains get smaller
@ast
Bigger is not always better: when brains get smaller
@en
Bigger is not always better: when brains get smaller
@en-gb
Bigger is not always better: when brains get smaller
@nl
prefLabel
Bigger is not always better: when brains get smaller
@ast
Bigger is not always better: when brains get smaller
@en
Bigger is not always better: when brains get smaller
@en-gb
Bigger is not always better: when brains get smaller
@nl
P2093
P2860
P356
P1433
P1476
Bigger is not always better: when brains get smaller
@en
P2093
Dina K N Dechmann
Kamran Safi
Marc A Seid
P2860
P356
10.1098/RSBL.2005.0333
P407
P577
2005-09-22T00:00:00Z