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357 results for “colour patterns”
Figure 1 in Another case of colour pattern polymorphism in Earth Snakes of the genus Geophis (Dipsadidae) from southern Mexico
Figure 1. Phylogenetic relationships of Geophis based on a Bayesian analysis of partial sequences of the cyt-b mitochondrial gene. Numbers at nodes represent Bayesian posterior probabilities/bootstrap values.
Figure 2 in Another case of colour pattern polymorphism in Earth Snakes of the genus Geophis (Dipsadidae) from southern Mexico
Figure 2. Colour pattern variation exhibited by Geophis russatus (a: MZFC 35650, b: MZFC 35648, c: MZFC 35647) and G. laticollaris (d: MZFC 35649, e: MZFC 34933, f: MZFC 34932).
FIGURE 12 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 12. Ranges of the species based on existing information. A—H. spatzi, B—H. nitidulus, C—H. dintelmanni, D—H. sp. 1, E—H. tuberculatus, F—H. bangwae, G—H. parallelus, H—H. marmoratus, I—H. marginatus, J—H. noblei, K—H. goetzei, L—H. glandicolor, M—H. mariae, N—H. viridiflavus.
FIGURE 11 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 11. Illustrations of typical colour patterns in the Hyperolius viridiflavus complex: A—H. viridiflavus, from an illustration of 1845 by J. Vignaud; B—H. marmoratus, Storms River, South Africa, photo A. Channing; C—H. marginatus, North Luangwa National Park, Zambia, photo A. Channing; D—H. parallelus, PEM A12451, Cuanavale Source, Angola, photo W. Conradie; E—H. nitidulus, Lamto, Côte d'Ivoire, photo M.-O. Rödel; F—H. glandicolor, Kinangop, Kenya, photo A. Channing; G—H. tuberculatus, ZMB 91677, Dja Reserve, Cameroon, photo M.-O. Rödel; H—H. mariae, Kiloza, Tanzania, photo A. Channing; I—H. noblei, PEM A10608, Quinonga, Mozambique, photo W. Conradie; J—H. goetzei, Iringa, Tanzania, photo A. Channing; K—H. spatzi, Senegal, photo A. Hillers; L—H. dintelmanni, CAS 254137, Edib Hills, Cameroon, photo D. Portik.
FIGURE 10 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 10. Localities of sequences (black circles), type localities (stars) and location of junior synonyms of Hyperolius noblei (A), H. goetzei (B), H. spatzi (C) and H. dintelmanni (D). Locality codes are explained in Table 3.
FIGURE 8 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 8. Localities of sequences (black circles), type localities (stars) and location of junior synonyms of Hyperolius nitidulus (A), H. mariae (B) and H. sp 1 (C). Locality codes are explained in Table 3.
FIGURE 9 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 9. Localities of sequences (black circles), type localities (stars) and location of junior synonyms of Hyperolius bangwae (A), H. tuberculatus (B), and H. glandicolor (C). Locality codes are explained in Table 3.
FIGURE 6 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 6. Localities of sequences (black circles), type locality (star) and location of junior synonyms of Hyperolius marginatus. Locality codes are explained in Table 3.
FIGURE 7 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 7. Localities of sequences (black circles), type locality (star) and location of junior synonyms of Hyperolius parallelus. Locality codes are explained in Table 3.
FIGURE 5 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 5. Localities of sequences (black circles), type locality (star) and location of junior synonyms of Hyperolius marmoratus. Locality codes are explained in Table 3.
FIGURE 1 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 1. Localities from where sequences were obtained (black circles), and from where available names were described (red triangles). The dashed lines indicate the range of the Hyperolius viridiflavus species complex.
FIGURE 4 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 4. Localities of sequences (black circles), type locality (star) and location of junior synonyms of Hyperolius viridiflavus. Locality codes are explained in Table 3.
FIGURE 3 in Colour patterns to sequences: a perspective on the systematics of the Hyperolius viridiflavus group (Anura: Hyperoliidae) using mitochondrial DNA
FIGURE 3. Colour patterns of some of the variation recognised in taxa now included in H. viridiflavus. After Laurent (1983): 1–9, 11–13 Hyperolius karissimbiensis françoisi; 10, 14, 16–18 Hyperolius viridiflavus xanthogrammus; 15, 19–26 Hyperolius viridiflavus hybridus. After Ahl (1931): 27–31 Hyperolius variabilis. Ahl's illustrations were taken from Tornier (1897).
Supplementary material 1 from: Zach P, Panigaj Ľ, Honěk A, Nedvěd O, Kulfan J, Martinková Z, Selyemová D, Viglášová S, Roy H (2014) The invasion history, distribution and colour pattern forms of the harlequin ladybird beetle Harmonia axyridis (Pall.) (Coleoptera, Coccinellidae) in Slovakia, Central Europe. ZooKeys 412: 89-102. https://doi.org/10.3897/zookeys.412.6587
Records of Harmonia axyridis in Slovakia: Explanation note: There are records from 2008 to 2012; years 2008 and 2009 marked in bold. The localities (sites of collection) are arranged in alphabetical order. Indicated are the numeric code of the mapping square (see Fig. 1), year of the first record and name of observer. Data on absence of the species are indicated by subsequent records of the species in the same squares or near squares from which it had not previously been recorded (e.g. 2008 – no record, 2009 – first record).
FIGURE 28 in A new member of the genus Isotomurus from the Kuril Islands (Collembola: Isotomidae): returning to the problem of "colour pattern species"
FIGURE 28. Neighbour-joining trees (K2P) bаsed on COI for the four Isotomurus species аnd one colour form. 100% bootstrаp support vаlues аre shown on brаnches. For I. festus sp. nov. blаck squаres stаnd for 'bаnded' specimens аnd white squаres for 'pаles' ones.
FIGURES 25–27 in A new member of the genus Isotomurus from the Kuril Islands (Collembola: Isotomidae): returning to the problem of "colour pattern species"
FIGURES 25–27. Photos of bаnded аnd pаle specimens in dorsаl (25) аnd lаterаl (26) views; аnd the type biotope (27) of I. festus sp. nov.
FIGURES 21–24 in A new member of the genus Isotomurus from the Kuril Islands (Collembola: Isotomidae): returning to the problem of "colour pattern species"
FIGURES 21–24. Isotomurus festus sp. nov., chаetotаxy of body: 21, sensillаr chаetotаxy in аdult individuаl; 22, s-setа of Th. II, 23, setаe аnd s-setаe of dorsаl аreа of Abd. III, 24, chаetotаxy in first instаr (common setаe shown аs dots). ms—micro-ssetа, s—s-setа.
FIGURES 9–20 in A new member of the genus Isotomurus from the Kuril Islands (Collembola: Isotomidae): returning to the problem of "colour pattern species"
FIGURES 9–20. Isotomurus festus sp. nov.: 9–10, mаxillаry heаd, inner (9) аnd ventrаl (10) views (1,4,6 – lаmellаe); 11, mаxillаry outer lobe; 12, lаbium (lаbiаl guаrds not shown) аnd postlаbiаl аreа (encircled); 13–16, mucro, outer (13), inner (14), ventrаl (15), аnd dorsаl (16) views; 17–20, contrаsting vаriаnts of colour pаttern: bаnded (17), pаle (18), diffusely dаrk (19) dаrk аnd bаnded (20).
FIGURES 1–8 in A new member of the genus Isotomurus from the Kuril Islands (Collembola: Isotomidae): returning to the problem of "colour pattern species"
FIGURES 1–8. Isotomurus festus sp. nov.: 1, hаbitus; 2–4, distаl pаrt of leg 3,2, аnd 1; 5, distаl pаrt of leg 3; 6, s of Ant.3 (аreа of AO); 7, s of Ant.1; 8, dens, posterior view. s—s-setа, ms—ms-setаe, lat—lаterаl s-setаe of AO, i—inner s-setа of AO, ech— erect s-setа.
Figure 40 in Reading between the lines: revealing cryptic species diversity and colour patterns in Hypselodoris nudibranchs (Mollusca: Heterobranchia: Chromodorididae)
Figure 40. Ancestral area reconstruction estimated in RASP using the Bayesian binary Markov chain Monte Carlo (BBM) approach. Pie charts depict ancestral range probabilities for each node on our pruned Bayesian inference 50% majority-rule consensus tree. Red circles around ancestral range probabilities represent dispersal events, and blue circles represent vicariance events. Tip of each terminal branch represents the species range. Area codes and colours are depicted on the map with geographical divisions labelled. A, Indian Ocean; B, temperate South Africa; C, Coral Triangle; D, Western Pacific; E, Western Australia; F, Hawaii; G, Red Sea; H, temperate Australia.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.