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FIGURE 19 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 19. Hygrosoma hoplacantha. In situ image taken by a deep towed-camera system (DTIS) from R.V. Tangaroa, in 1556 m at 41° 42.9´S, 175° 40.7´E (Cook Strait). Note the large white hoofs.
FIGURE 27 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 27. Phormosoma bursarium. Distribution of confirmed records in New Zealand and southeast Australia, from material examined. Number of records = 216.
FIGURE 7 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 7. Sperosoma cf. nudum. Distribution of confirmed records in New Zealand and south-eastern Australia, from material examined. Number of records = 21.
FIGURE 12. Tromikosoma australe, NIWA45092 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 12. Tromikosoma australe, NIWA45092 (160 mm TD). A–D, head and valves of larger tridentate pedicellariae; E–F, valves of small tridentate pedicellariae; G–H, valves of triphyllous pedicellariae; I, valve of ophicephalous pedicellaria (NIWA45121, 29 mm TD).
FIGURE 8 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 8. Sperosoma cf. nudum, NIWA46079 (160 mm TD). A–B, valves of large, broad tridentate pedicellariae; C–G, valves and head of small, narrow tridentate pedicellariae; H–I, valves of triphyllous pedicellariae.
FIGURE 5. Sperosoma obscurum, NIWA58244 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 5. Sperosoma obscurum, NIWA58244. Transition of ambulacral plate arrangement between aboral and oral surfaces. The approximate position of the ambitus is shown by the dark horizontal line, with aboral plates above and oral plates below; the perradial suture is to the left. Inner secondary plates are shown in white, outer secondary plates in light grey, and main plates in dark grey.
FIGURE 6 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 6. Sperosoma cf. nudum, NIWA46079. (170 mm TD). Left, aboral view; right, oral view; insert, close-up of madreporite.
FIGURE 4 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 4. Sperosoma obscurum. Details of test plates (A–B, NIWA58244 (195 mm TD)) and spines (C, NIWA46077 (185 mm TD)). A, interambulacra (left, aboral; right, oral); B, ambulacra (left, aboral, right, oral); C, Oral primary spine with terminal hoof and swelling of the shaft indicating the presence of a parasitic copepod (Calvocheres spp.).
FIGURE 2 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 2. Sperosoma obscurum. Distribution of confirmed records in New Zealand and southern Australia, from material examined. Number of records = 50.
FIGURE 25 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 25. Kamptosoma asterias. Distribution of confirmed records in New Zealand and southeast Australia, from material examined. Number of records = 6.
FIGURE 3. Sperosoma obscurum, NIWA58244 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 3. Sperosoma obscurum, NIWA58244 (195 mm TD). A–C, valves and head of tridentate pedicellariae; D, valve of triphyllous pedicellaria.
FIGURE 15 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 15. Tromikosoma rugosum sp. nov. Holotype (NIWA6610, 69 mm TD). Details of interambulacral (top) and ambulacral (bottom) plates: left, aboral; right, oral.
FIGURE 21 in A review of New Zealand and southeast Australian echinothurioids (Echinodermata: Echinothurioida) — excluding the subfamily Echinothuriinae—with a description of a new species of Tromikosoma
FIGURE 21. Hygrosoma hoplacantha (NIWA33597, 214 mm TD). A, head of large tridentate pedicellaria, B–D, head and valves of small tridentate pedicellariae; E–F, valves of triphyllous pedicellariae.
Figure 3 in Genetic and morphological evidence for two species of Leucocarbo shag (Aves, Pelecaniformes, Phalacrocoracidae) from southern South Island of New Zealand
Figure 3. Parsimony-based network reconstruction of Chatham Island (green), Otago (blue), and Foveaux (red) shags. Haplotypes are represented by circles. The number of sequences within each haplotype is indicated by the size of the circles and shown by the numbers. Two haplotypes are connected by a line if they are separated by one mutation; each additional mutation is indicated by a small black dot. Light colouring refers to extinct (premodern, i.e. pre-1890 AD) haplotypes, whereas dark colouring refers to extant (modern, i.e. post-1890 AD) haplotypes.
Figure 4 in Genetic and morphological evidence for two species of Leucocarbo shag (Aves, Pelecaniformes, Phalacrocoracidae) from southern South Island of New Zealand
Figure 4. The Bayesian phylogram of Leucocarbo shags from an analysis with a single individual of each haplotype (from BEAST v. 1.7.4). Apart from the two outgroup taxa, the labels show the species (Leucocarbo chalconotus, Leucocarbo onslowi, and Leucocarbo stewarti) with the haplotype in parentheses (for haplotype designation see Table S5). The
Figure 5 in Genetic and morphological evidence for two species of Leucocarbo shag (Aves, Pelecaniformes, Phalacrocoracidae) from southern South Island of New Zealand
Figure 5. Discriminant function analysis (DFA) of pooled cranial and postcranial measurements. A, combined cranial and postcranial measurements of 18 Otago, five Foveaux, and eight Chatham Island shags [DFA loadings: LD1, greatest breadth across the processus postfrontales (GBP) -0.67; femora (fem) -1.0; tarsometatarsi (tmt) 0.91. LD2, greatest breadth across the crania (GB) -0.58; smallest breadth between the orbits on the dorsal side (smallest breadth of the pars nasalis of the frontale) (SBO) 0.82; greatest length of one-half of the mandible (apex to the most aboral point of the mandible) (GLman) -1.21; length from the most aboral point of the facies articularis on one side of the apex (Laf) 2.0; tmt 1.31]; B, cranial measurements of 22 Otago, five Foveaux, and 12 Chatham Island shags (DFA loadings: LD1 GB -0.54. DF2: GBP -0.52; GLman 0.53; Laf 1.19); C, postcranial measurements of 25 Otago, ten Foveaux, and 21 Chatham Island shags (DFA loadings: LD1, fem -0.65; LD2 fem 0.52). Otago shags, blue squares; Foveaux shags, red triangles; and Chatham Island shags, green diamonds.
Figure 6 in Genetic and morphological evidence for two species of Leucocarbo shag (Aves, Pelecaniformes, Phalacrocoracidae) from southern South Island of New Zealand
Figure 6. Principal component analysis (PCA) of pooled measurements from museum skins for 21 Otago shags (blue squares), 34 Foveaux shags (red triangles), and seven Chatham Island shags (green diamonds). Type specimens for Otago shag (Gracalus chalconotus, Graculus glaucus, and Phalacrocorax huttoni) and Foveaux shag (Phalacrocorax stewarti) are shown with labelled black circles. PC1 loadings> 0.5/<-0.5, PC2 loading Phal 0.82.
Figure 2 in Genetic and morphological evidence for two species of Leucocarbo shag (Aves, Pelecaniformes, Phalacrocoracidae) from southern South Island of New Zealand
Figure 2. Carunculation and gular pouch colour in pied morphs of Chatham Island, Otago, and Foveaux shags. The Chatham Island shag (left) has pronounced bright orange facial caruncles and gular pouch; the Otago shag (centre) has equal frequencies of small bright orange facial caruncles (shown) and dark orange scattered papillae (not shown), and bright to dark orange (shown) or purple (not shown) gular pouch; the Foveaux shag (right) has scattered dark orange papillae (shown) and bright to dark orange (shown) gular pouch. Photos (not to scale) courtesy of New Zealand Birds Online (John Kendrick, left and Brian Bell, right) and Hiltrun Ratz (centre).
Figure 1 in Genetic and morphological evidence for two species of Leucocarbo shag (Aves, Pelecaniformes, Phalacrocoracidae) from southern South Island of New Zealand
Figure 1. Distributional and morphological data for Otago, Foveaux, and Chatham Island shags. A, map of New Zeal- and showing the location of the Chatham Islands and Otago/Foveaux Strait study sites. Blue circles represent the prehistoric distribution of Otago shag outside the study area. B, distribution of Chatham Island shag breeding colonies and roosting sites (green circles). The Chatham Island shag exhibits pied plumage only (white pie chart) with pronounced bright orange caruncles in breeding plumage (orange pie chart). C, distribution of Otago (blue circles) and Foveaux (red circles) shag breeding colonies and roosting sites. Otago shag populations have 20–30% pied morphs (pie charts; black: dark-bronze; white: pied) and 50:50% small bright orange caruncles: dark orange scattered papillae in prenuptial breeding plumage (pie charts; yellow: small bright orange caruncles; grey: dark orange scattered papillae) compared with 50– 60% pied morph and dark orange scattered papillae in prenuptial breeding plumage in the Foveaux shag. In (C), multiple breeding colonies and roosting sites are represented at the following locations (from north to south): Otago Peninsula including Long Beach, Aramoana, Otago Harbour, Taiaroa Head, Boulder Beach, Papanui Beach, Allans Beach, Wharekakahu Island, and Gull Rocks; Seal Rocks and Ruapuke Island; Easy Harbour and Shag Rock. In (C), the Leucocarbo shag species illustrating plumage characters are: pied morph (Otago shag), bronze morph (Foveaux shag), small caruncles (Otago shag), and scattered papillae (Foveaux shag). Figure adapted from Rawlence et al. (2014).
Figure 11 in Early Miocene Formicidae (Amblyoponinae, Ectatomminae, ?Dolichoderinae, Formicinae, and Ponerinae) from the Foulden Maar Fossil Lagerstätte, New Zealand, and their biogeographic relevance
Figure 11. World map showing the occurrence of published fossil members of subfamily Amblyoponinae (Ambl.) and extinct species of Rhytidoponera (R), Myrmecorhynchus (M) and Austroponera (A) in one Eocene and four Miocene localities. (1) Messel Maar, Germany, Eocene (Lutetian): Amblyoponinae: Stigmatomma groehni, S. electrinum and Casaleia eocenica; (2) Foulden Maar, New Zealand, early Miocene: Amblyoponinae gen. et. sp. indet., Rhytidoponera waipiata n. sp., Rhytidoponera gibsoni n. sp., Myrmecorhynchus novaeseelandiae n. sp., Austroponera schneideri n. sp.; (3) Radoboj, Croatia, early Miocene: Amblyoponinae: Casaleia longiventris; (4) Shanwang Formation, China, middle Miocene: Amblyoponinae: Myopopone sinensis; (5) Kotchkorka District, Kyrgyzstan, middle Miocene: Amblyoponinae: Casaleia inversa, Rhytidoponera: R. kirghizorum.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.