Sources
The circuit. Martin Stacho, Christina Herold, Noemi Rook, Hermann Wagner, Markus Axer, Katrin Amunts & Onur Güntürkün, “A cortex-like canonical circuit in the avian forebrain,” Science 369, eabc5534 (2020), doi:10.1126/science.abc5534. Source of the 3D polarised light imaging method, the orthogonal radial and tangential fibre organisation across the whole extent of the Wulst and sensory dorsal ventricular ridge, the iterative circuit motif across three modalities and both species, the barn owl's more sub-differentiated Wulst, the mosaic-like arrangement in non-sensory dorsal ventricular ridge (spread four), and the stem-amniote conclusion quoted in full on spread eight. Read from the article's research-article summary and body as stored in our library; open: the figure panels were not inspected, and the schematic in Figure 1 of this zine is our own simplification rather than a redrawing of theirs.
The four features, and the dispensable isocortex. Onur Güntürkün, Roland Pusch & Jonas Rose, “Why birds are smart,” Trends in Cognitive Sciences 28(3), 2024. Source of the four proposed features, the convergently evolved and hard to replace claims, the quoted sentence on spread nine, the “obviously, this is a speculative list” self-grading, the 19 / 62 / 78 per cent pallial neuron shares, the kea, raven and chimpanzee pallial neuron totals, the corvid brain mass of 8–10 g, and the authors' own not entirely fair hedge on the associative-neuron comparison (spread seven). Two bibliographic notes, given rather than tidied. Our library records this paper as 2023 and its own running head gives March 2024, volume 28, issue 3 — an online-first / print split, and we cite the print year. And the paper's abstract gives corvid and parrot brains as 1–25 g while its own highlights box gives 5–20 g; spread seven prints the wider range and attributes it to the abstract, because choosing the tighter figure would be us quietly picking the better number.
The cells. Bastienne Zaremba, Amir Fallahshahroudi, Céline Schneider, Julia Schmidt, Ioannis Sarropoulos, Evgeny Leushkin, Bianka Berki, Enya Van Poucke, Per Jensen, Rodrigo Senovilla-Ganzo, Francisca Hervas-Sotomayor, Nils Trost, Francesco Lamanna, Mari Sepp, Fernando García-Moreno & Henrik Kaessmann, “Developmental origins and evolution of pallial cell types and structures in birds,” Science 387, eadp5182 (14 February 2025), doi:10.1126/science.adp5182. Source of the single-nucleus RNA sequencing and spatial transcriptomic atlases of the adult chicken pallium and eight in ovo developmental stages, the conserved inhibitory neuron expression patterns with one cell type expanded in birds, the conservation of hippocampal excitatory types, and the transcriptomic convergence finding. Open: read from the research-article summary and opening sections; the per-cell-type detail beyond those has not been worked through, and spread ten deliberately states the shape of the result rather than enumerating types.
The neuron counts. Seweryn Olkowicz et al., “Birds have primate-like numbers of neurons in the forebrain,” PNAS 113, 7255–7260 (2016) — the 28 species, the roughly two-fold density against primates and up to four-fold against rodents. Cited here via Güntürkün, Pusch and Rose; it is also already the source behind the corvid entry in Field Guide No. 11. Associative neurons: Felix Ströckens et al., “High associative neuron numbers could drive cognitive performance in corvid species,” Journal of Comparative Neurology 530, 1588–1605 (2022) — source of the corvid-versus-ostrich comparison on spread seven. Fuel: Kaya von Eugen et al., “Avian neurons consume three times less glucose compared to mammals,” Current Biology (2022). Flagged: the reference list we took this from prints the volume as 23, which cannot be right for a 2022 paper in that journal; we give author, title, journal and year and leave the volume out rather than repeat a number we can see is wrong or silently guess at 32.
The behaviours. Barbara C. Klump et al., “Innovation and geographic spread of a complex foraging culture in an urban parrot,” Science 373, 456–460 (2021) — the sulphur-crested cockatoo bin-opening culture, the 44 suburbs, the individual and site-specific styles, and the human counter-measures. Can Kabadayi & Mathias Osvath, “Ravens parallel great apes in flexible planning for tool-use and bartering,” Science 357, 202–204 (2017) — the next-day tool and token result. Romana Gruber et al., “New Caledonian crows use mental representations to solve metatool problems,” Current Biology 29, 686–692 (2019). On the domain-general question raised and answered on spread two's premise: Onur Güntürkün & Thomas Bugnyar, “Cognition without cortex,” Trends in Cognitive Sciences 20, 291–303 (2016); Megan L. Lambert et al., “Birds of a feather? Parrot and corvid cognition compared,” Behaviour 156, 505–594 (2019). All four cited via Güntürkün, Pusch and Rose's reference list rather than read at primary, and graded accordingly: the behavioural claims in this zine are the ones that recur across several of these reviews, and none of them is doing load-bearing work that the circuit finding does not already do.
The 320 million years. A conventional figure for the depth of the split between the lineages leading to birds and to mammals, given on spread twelve as something like and roughly for a reason: divergence dates of this age carry real uncertainty, and Güntürkün, Pusch and Rose's own reference list includes dos Reis et al. (2015) on precisely the limits of precision in molecular timescales. Do not quote 320 from us as a measured value. The argument on that spread needs only very deep, which every estimate supports.
What this deliberately does not re-argue
No. 36 owns the yardstick argument, and owns it in the harder case: the long-finned pilot whale counted above us and the ranking survived anyway, because it was never resting on the count. Difference read as deficit, conducted by neuroscientists, about whales. This zine cites that and does not rebuild it — a bird version would have been the same piece with feathers. No. 85 owns the words: the neostriatum, the archistriatum and the century-old vocabulary in which every label asserted a claim that turned out to be wrong. It is the direct predecessor of this piece, and this piece is the question it leaves behind — if not that, then what is in there? Field Guide No. 11 gave the crow one card among eleven nervous systems; Field Guide No. 23 is where the birds get a catalogue of their own, and where the behaviours in this zine are laid out one to a card with their sourcing attached.
A rhyme, not a proof. We are not claiming a bird's mind is like yours, and we are not claiming it is unlike yours. We are pointing at a piece of equipment neither lineage designed, and noticing that a shared inheritance cannot be a hierarchy.