- See Also
-
Links
- “Avian Neurons Consume 3× Less Glucose Than Mammalian Neurons”, Eugen et al 2022
- “Neuron Numbers Link Innovativeness With Both Absolute and Relative Brain Size in Birds”, Sol et al 2022
- “Theropod Dinosaurs Had Primate-Like Numbers of Telencephalic Neurons”, Herculano-Houzel 2022
- “High Associative Neuron Numbers Could Drive Cognitive Performance in Corvid Species”, Ströckens et al 2022
- “The Evolution of Brain Neuron Numbers in Amniotes”, Kverková et al 2022
- “The Evolution of Quantitative Sensitivity”, Bryer et al 2021
- “Parental Provisioning Drives Brain Size in Birds”, Griesser et al 2021
- “Vultures As an Overlooked Model in Cognitive Ecology”, Overveld et al 2021
- “Behavioral and Neuronal Representation of Numerosity Zero in the Crow”, Kirschhock et al 2021
- “Birds Do Have a Brain Cortex—And Think: Like Mammals, Birds Have a Pallium That Sustains Correlates of Consciousness”, Herculano-Houzel 2020
- “A Neural Correlate of Sensory Consciousness in a Corvid Bird”, Nieder et al 2020
- “A Cortex-Like Canonical Circuit in the Avian Forebrain”, Stacho et al 2020
- “Brainiacs, Not Birdbrains: Crows Possess Higher Intelligence Long Thought a Primarily Human Attribute”, Begley 2020
- “Tempo and Pattern of Avian Brain Size Evolution”, Ksepka et al 2020
- “Big Brains Stabilize Populations and Facilitate Colonization of Variable Habitats in Birds”, Fristoe et al 2017
- “Light Enough to Travel or Wise Enough to Stay? Brain Size Evolution and Migratory Behavior in Birds”, Vincze 2016
- “Birds Have Primate-Like Numbers of Neurons in the Forebrain”, Olkowicz et al 2016
- “Cognition without Cortex”, Güntürkün & Bugnyar 2016
- “Neuronal Factors Determining High Intelligence”, Dicke & Roth 2016
- “Big Birds and Their Brains: Paleoneurology of the New Zealand Moa”, Ashwell & Scofield 2007
- “Seasonal Plasticity in the Adult Brain”, Tramontin & Brenowitz 2000
- “Seasonal Plasticity in the Song Nuclei of Wild Rufous-Sided Towhees”, Smith 1996
- Sort By Magic
- Wikipedia
- Miscellaneous
- Bibliography
See Also
Links
“Avian Neurons Consume 3× Less Glucose Than Mammalian Neurons”, Eugen et al 2022
Avian neurons consume 3× less glucose than mammalian neurons
“Neuron Numbers Link Innovativeness With Both Absolute and Relative Brain Size in Birds”, Sol et al 2022
Neuron numbers link innovativeness with both absolute and relative brain size in birds
“Theropod Dinosaurs Had Primate-Like Numbers of Telencephalic Neurons”, Herculano-Houzel 2022
Theropod dinosaurs had primate-like numbers of telencephalic neurons
“High Associative Neuron Numbers Could Drive Cognitive Performance in Corvid Species”, Ströckens et al 2022
High associative neuron numbers could drive cognitive performance in corvid species
“The Evolution of Brain Neuron Numbers in Amniotes”, Kverková et al 2022
“The Evolution of Quantitative Sensitivity”, Bryer et al 2021
“Parental Provisioning Drives Brain Size in Birds”, Griesser et al 2021
“Vultures As an Overlooked Model in Cognitive Ecology”, Overveld et al 2021
“Behavioral and Neuronal Representation of Numerosity Zero in the Crow”, Kirschhock et al 2021
Behavioral and Neuronal Representation of Numerosity Zero in the Crow
“Birds Do Have a Brain Cortex—And Think: Like Mammals, Birds Have a Pallium That Sustains Correlates of Consciousness”, Herculano-Houzel 2020
“A Neural Correlate of Sensory Consciousness in a Corvid Bird”, Nieder et al 2020
A neural correlate of sensory consciousness in a corvid bird
“A Cortex-Like Canonical Circuit in the Avian Forebrain”, Stacho et al 2020
“Brainiacs, Not Birdbrains: Crows Possess Higher Intelligence Long Thought a Primarily Human Attribute”, Begley 2020
“Tempo and Pattern of Avian Brain Size Evolution”, Ksepka et al 2020
“Big Brains Stabilize Populations and Facilitate Colonization of Variable Habitats in Birds”, Fristoe et al 2017
Big brains stabilize populations and facilitate colonization of variable habitats in birds
“Light Enough to Travel or Wise Enough to Stay? Brain Size Evolution and Migratory Behavior in Birds”, Vincze 2016
Light enough to travel or wise enough to stay? Brain size evolution and migratory behavior in birds
“Birds Have Primate-Like Numbers of Neurons in the Forebrain”, Olkowicz et al 2016
“Cognition without Cortex”, Güntürkün & Bugnyar 2016
“Neuronal Factors Determining High Intelligence”, Dicke & Roth 2016
“Big Birds and Their Brains: Paleoneurology of the New Zealand Moa”, Ashwell & Scofield 2007
Big Birds and Their Brains: Paleoneurology of the New Zealand Moa
“Seasonal Plasticity in the Adult Brain”, Tramontin & Brenowitz 2000
“Seasonal Plasticity in the Song Nuclei of Wild Rufous-Sided Towhees”, Smith 1996
Seasonal plasticity in the song nuclei of wild rufous-sided towhees
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Beginning with the newest annotation, it uses the embedding of each annotation to attempt to create a list of nearest-neighbor annotations, creating a progression of topics. For more details, see the link.
avian-intelligence
corvid-neuroscience
seasonal-plasticity
Wikipedia
Miscellaneous
Bibliography
-
2022-voneugen.pdf
: “Avian Neurons Consume 3× Less Glucose Than Mammalian Neurons”, -
2022-sol.pdf
: “Neuron Numbers Link Innovativeness With Both Absolute and Relative Brain Size in Birds”, -
https://onlinelibrary.wiley.com/doi/full/10.1002/cne.25298
: “High Associative Neuron Numbers Could Drive Cognitive Performance in Corvid Species”, -
https://royalsocietypublishing.org/doi/10.1098/rstb.2020.0529
: “The Evolution of Quantitative Sensitivity”, -
2021-vanoverveld.pdf
: “Vultures As an Overlooked Model in Cognitive Ecology”, -
2020-herculanohouzel.pdf
: “Birds Do Have a Brain Cortex—And Think: Like Mammals, Birds Have a Pallium That Sustains Correlates of Consciousness”, -
https://www.statnews.com/2020/09/24/crows-possess-higher-intelligence-long-thought-primarily-human/
: “Brainiacs, Not Birdbrains: Crows Possess Higher Intelligence Long Thought a Primarily Human Attribute”, -
2017-fristoe.pdf
: “Big Brains Stabilize Populations and Facilitate Colonization of Variable Habitats in Birds”, -
2016-vincze.pdf
: “Light Enough to Travel or Wise Enough to Stay? Brain Size Evolution and Migratory Behavior in Birds”, -
2016-gunturkun.pdf
: “Cognition without Cortex”,