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FIGURE 13. Pachydermophyllum austropapillosum 1. LX659 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 13. Pachydermophyllum austropapillosum 1. LX659, The Chasm; 2. LX1014, Little-03; 3. LX658, The Chasm. All scale bars equal 10 mm.
FIGURE 2. Representative Catlins Coast fossil locality photographs. 1 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 2. Representative Catlins Coast fossil locality photographs. 1. The Chasm. Fossils are from loose blocks at the base of the cliffs. 2. Little Beach. Note tree trunk to left of rock hammer, associated with soil (arrowed) 3. Boat Harbour. Approximate location of fossil site arrowed. 4. Otara Beach. Note tree stump (arrowed).
FIGURE 5. Coniopteris murrayana. 1 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 5. Coniopteris murrayana. 1. Fragment of fertile secondary pinna, LX2066, Slope-03 (scale bar equals 10 mm); 2. Detail of fertile pinnules, LX2066, Slope-03 (scale bar equals 10 mm).
FIGURE 10 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 10. Pseudoctenis? ensiformis 1. LX1204; 2. LX1212; 3. LX1206; 4. LX1214. All Haldane-Curio Bay Road, scale bars equal 10 mm.
FIGURE 19. Podozamites gracilis 1. LX1084 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 19. Podozamites gracilis 1. LX1084, Curio Bay; 2. LX1012, Little-03; 3. LX1084, Curio Bay. All scale bars equal 10 mm.
FIGURE 9. Otozamites douglasii 1 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 9. Otozamites douglasii 1. Photographed in the field, Slope-04; 2. LX1231, Curio Bay; 3. LX656, Slope-01, with slightly auriculate acroscopic margin of the pinnule bases; 4. LX1191, Black Point, showing distinctly auriculate acroscopic margin of the pinnule bases; 5. LX1231, Curio Bay, with contracted basiscopic margin of the pinnule bases. All scale bars equal 10 mm.
FIGURE 8. Equisetum laterale. 1. Diaphragm, LX2684 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 8. Equisetum laterale. 1. Diaphragm, LX2684, Otara-35; 2. Leaf sheath, LX1008, Owaka; 3. Possible rhi- zome, LX1066, Little Bay-01. All scale bars equal 10 mm.
FIGURE 20 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 20. Pagiophyllum sp. 1. LX1142, Owaka; 2. LX1016, Little-03; 3. LX1023, Little-03. All scale bars equal 10 mm.
FIGURE 3 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 3. Summary of the current understanding of stratigraphic relations of the fossil localities. These are simplified stratigraphic columns through the Slope Point Block and the Brothers Block (Pole, 2004) and the South Limb of the Southland Syncline (based on Speden, 1971). Pole (2004) proposed that all terrestrial sediments should be recognised as False Island Formation. For ease of comparison, the formations of Speden (1971) are indicated for the South Limb.
FIGURE 18 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 18. Bellarinea richardsii, all Little Bay-01. 1. LX0676; 2. LX0675; 3. LX1275; 4. LX1130. All scale bars equal 10 mm.
FIGURE 11. Rintoulia pectinata 1. LX1029 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 11. Rintoulia pectinata 1. LX1029, Little Bay-03; 2. LX1021, Little Bay-03; 3. LX669, Owaka. All scale bars equal 10 mm.
FIGURE 17. Elatocladus spp. 1 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 17. Elatocladus spp. 1. Elatocladus sp. A, LX1054, Little Bay-01; 2. Elatocladus sp. A, LX1061, Little Bay-01; 3. Elatocladus sp. A, LX1131, Little Bay-01; 4. Elatocladus sp. A, LX1159, Little Bay-01; 5. Elatocladus sp. B, LX2077, Blue Cod Bay. All scale bars equal 10 mm.
FIGURE 15. Taeniopteris spatulata details. 1. LX1218 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand
FIGURE 15. Taeniopteris spatulata details. 1. LX1218, Curio Bay; 2. LX1097, Curio Bay; 3. LX1277, Curio Bay; 4. LX1241, Curio Bay. All scale bars equal 10 mm.
Fig. 2 in A New Boxfish of the Genus Kentrocapros Collected from New Zealand (Acanthopterygii, Tetraodontiformes, Aracanidae)
Fig. 2. Kentrocapros eco, holotype, NMNZ P.000903, 116 mm SL, north of Pahia Bay, Bay of Islands, New Zealand. Photograph, courtesy of NMNZ.
Fig. 1 in A New Boxfish of the Genus Kentrocapros Collected from New Zealand (Acanthopterygii, Tetraodontiformes, Aracanidae)
Fig. 1. Holotype (A–C) and paratype (D) of Kentrocapros flavimaculatus n. sp. Lateral (A), dorsal (B), and ventral (C) views of holotype (AIM MA180380, 62.7 mm SL), and lateral view of paratype (NSMT-P 43344, 114 mm SL). Photographs of A–C, courtesy of AIM.
Fig. 16 in Chandlerea and Nunnea (Coleoptera: Staphylinidae: Pselaphinae), two new genera from New Zealand with descriptions of three new species
Fig. 16. Known collection localities of Chandlerea gen. nov. and Nunnea gen. nov. C. donaldi sp. nov.: black squares; N. johni sp. nov.: black circles;N. kuscheli sp. nov.: triangles.
Figs. 1–3 in Chandlerea and Nunnea (Coleoptera: Staphylinidae: Pselaphinae), two new genera from New Zealand with descriptions of three new species
Figs. 1–3. Habitus. Scale bars = 1 mm. (1) Chandlerea donaldi sp. nov.; (2) Nunnea johni sp. nov.; (3) N. kuscheli sp. nov.
Fig. 4 in The ectoparasites of hybrid ducks in New Zealand (Mallard x Grey Duck)
Fig. 4. Tanglegram showing the associations between the CO1 gene trees for the host ducks (on the left, n = 15) and the three species of louse (on the right, n = 61) from Manawatu, New Zealand. For lice, only the different haplotypes are shown. The two hosts with Grey Duck mtDNA are shown in bold as well as the louse haplotypes exclusive to them. Thin lines indicate host–parasite associations. Lice photos are illustrative and not to scale.
Fig. 3 in The ectoparasites of hybrid ducks in New Zealand (Mallard x Grey Duck)
Fig. 3. Bayesian phylogeny of Anaticola crassicornis based on 378 bp of CO1 gene from Escalante et al. (2016) but with the addition of 16 new sequences from New Zealand hosts. The values above branches are posterior probabilities. The scale bar indicates nucleotide substitutions per site along the branch lengths. Haplotypes names correspond to those shown in Fig. 2. For simplicity we are showing the portion of the tree of interest, the full tree with all downloaded sequences can be found in the Supplementary Fig. S2. NZ = New Zealand.
Fig. 1 in Variable changes in nematode infection prevalence and intensity after Rabbit Haemorrhagic Disease Virus emerged in wild rabbits in Scotland and New Zealand
Fig. 1. Differences in mean intensity of nematode parasite infection in rabbits sampled seasonally from New Zealand and Scotland before the spread of RHDV (a), rabbits sampled seasonally from Sotland before and after RHDV (b), and rabbits sampled in autumn season from New Zealand and Scotland before and after RHDV (c). Nematode parasites included T. retortaeformis (i) G. strigosum (ii) and P. ambiguus (iii) found in rabbits sampled in spring (Spr), summer (Sum), autumn (Aut) and winter (Win).
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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