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5,312 results for “New Zealand”
Fig. 7 in New species of Monepidosis Mamaev, 1966 and Antipodosis gen. nov., a closely related genus from New Zealand (Diptera, Cecidomyiidae)
Fig. 7. Antipodosis rotoiti gen. et sp. nov., Ƌ, holotype. A. Genitalia, ventral. B. Parameres and ejaculatory
Fig. 9 in New species of Monepidosis Mamaev, 1966 and Antipodosis gen. nov., a closely related genus from New Zealand (Diptera, Cecidomyiidae)
Fig. 9. Antipodosis waipapa gen. et sp. nov., Ƌ, holotype. A. Genitalia, ventral. B. Parameres and ejaculatory apodeme, ventral. Scale lines: 0.05 mm.
Fig. 6 in New species of Monepidosis Mamaev, 1966 and Antipodosis gen. nov., a closely related genus from New Zealand (Diptera, Cecidomyiidae)
Fig. 6. Antipodosis rakiura gen. et sp. nov., Ƌ, holotype. A. Genitalia, ventral. B. Parameres and ejaculatory apodeme, ventral. Scale lines: 0.05 mm.
Fig. 5 in New species of Monepidosis Mamaev, 1966 and Antipodosis gen. nov., a closely related genus from New Zealand (Diptera, Cecidomyiidae)
Fig. 5. Antipodosis pureora gen. et sp. nov., Ƌ, holotype. A. Genitalia, ventral. B. Parameres and ejaculatory apodeme, ventral. Scale lines: 0.05 mm.
Fig. 2 in New species of Monepidosis Mamaev, 1966 and Antipodosis gen. nov., a closely related genus from New Zealand (Diptera, Cecidomyiidae)
Fig. 2. Antipodosis australis gen. et sp. nov., Ƌ, holotype. A. Genitalia, ventral. B. Parameres and ejaculatory apodeme, ventral. Scale lines: 0.05 mm.
Fig. 1 in New species of Monepidosis Mamaev, 1966 and Antipodosis gen. nov., a closely related genus from New Zealand (Diptera, Cecidomyiidae)
Fig. 1. Male morphology of Antipodosis gen. nov. and Monepidosis Mamaev, 1966. A. Wing of A. granvillensis gen. et sp. nov., holotype, setae omitted. B. Wing of M. shikokuensis sp. nov., holotype, setae omitted. C. Fourth flagellomere of A. rakiura gen. et sp. nov., holotype, lateral. D. Fourth flagellomere of M. scepteroides sp. nov., holotype, lateral. Scale lines: A–B = 0.50 mm, C–D = 0.05 mm.
Fig. 4 in Echiodon prionodon, a new species of Carapidae (Pisces, Ophidiiformes) from New Zealand
Fig. 4. Distribution of Echiodon prionodon. The red circle depicts the locality where the holotype was caught.
Fig. 2 in Echiodon prionodon, a new species of Carapidae (Pisces, Ophidiiformes) from New Zealand
Fig. 2. Echiodon prionodon sp. nov., left lateral view of the left premaxillary fang showing the posterior serrated margin.
Fig. 9 in Halanonchus scintillatulus sp. nov. from New Zealand and a review of the suborder Trefusiina (Nematoda: Enoplida)
Fig. 9. Anterior and posterior body regions of Trefusiina genera (members of the families Simpliconematidae, Xennellidae, Trischistomatidae and Lauratonematidae) (continued on next page). A. Simpliconema aenigmatoides Blome & Schrage, 1985. B. Xennella suecica Allgén, 1935. C. Porocoma striata Cobb, 1920. D. Tripylina arenicola (de Man, 1880) Brzeski, 1963. E. Trischistoma gracile Andrássy, 1985. F. Lauratonema juncta Fadeeva, 1989. G. Lauratonemella spiculifer (Gerlach, 1959) Tchesunov, 1984. H. Lauratonemoides minutus (Platonova, 1971) Tchesunov, 1984. Drawings modified from De Coninck (1937), Gerlach (1959, 1962), Blome & Schrage (1985), Fadeeva (1989) and Andrassy (2007).
Figure 10 in Ontogeny of the deep-sea cranchiid squid Teuthowenia pellucida (Cephalopoda: Cranchiidae) from New Zealand waters
Figure 10. Development of fin shape between juvenile and sub-adult stages (stages E and F) of Teuthowenia pellucida. Specimen maturation from left to right.
Figure 8 in Ontogeny of the deep-sea cranchiid squid Teuthowenia pellucida (Cephalopoda: Cranchiidae) from New Zealand waters
Figure 8. Arm modifications in adult Teuthowenia pellucida. Brachial end organ (A) on the tips of all arms in mature females; (B) four series of small suckers on the distal tip of arms I and II in adult males. Scale bar = 1 cm.
Figure 6 in Ontogeny of the deep-sea cranchiid squid Teuthowenia pellucida (Cephalopoda: Cranchiidae) from New Zealand waters
Figure 6. Simplified diagram of eye photophores and lens from (A) anterior view and (B) ventral side of the eye in adult Teuthowenia pellucida.
Figure 4 in Ontogeny of the deep-sea cranchiid squid Teuthowenia pellucida (Cephalopoda: Cranchiidae) from New Zealand waters
Figure 4. Schematic diagram of Teuthowenia pellucida tentacle showing paired zig-zag sucker pattern on stalk, visible from Stage D onwards.
Figure 2 in Ontogeny of the deep-sea cranchiid squid Teuthowenia pellucida (Cephalopoda: Cranchiidae) from New Zealand waters
Figure 2. Development of Teuthowenia pellucida eyes through ontogeny showing both anterior (right) and lateral (left) perspective. Eye presented from (A) stage A; (B) stage B; (C) stage C; (D) stage D; (E) stage E and F; (F) adult (anterior); (G) adult (ventral). Scale bar = 1 mm.
Figure 12 in Ontogeny of the deep-sea cranchiid squid Teuthowenia pellucida (Cephalopoda: Cranchiidae) from New Zealand waters
Figure 12. Difference in visible rachis shape at anterior dorsal midline of (A) Teuthowenia; (B) Megalocranchia; (C) Liguriella (ML range: 17–29 mm).
5-day WRF case study for the Southern Alps of New Zealand (hourly output)
<p>Full output file from the Weather and Research Forecasting (WRF) model for a 2 km resolution domain centered over the Southern Alps of New Zealand. Modelling period is 02-Feb-2011 00:00:00 UTC to 07-Feb-2011 00:00:00 UTC (5 days) with hourly output frequency. The data-set was generated in the framework of a case study to investigate the mesoscale influence of an atmospheric river on the mass balance of Brewster Glacier (Southern Alps) during a summertime melt event. For the related publication refer to <a href="https://doi.org/10.1029/2020JD034217">https://doi.org/10.1029/2020JD034217</a>.</p>
Fig. 8 in New and known Halichoanolaimus de Man, 1886 species (Nematoda: Selachinematidae) from New Zealand's continental margin
Fig. 8. Halichoanolaimus funestus sp. nov. A. Entire paratype ♀ (NIWA 139249). B. Entire holotype ♂ (NIWA 139248). Scale bar = 250 µm.
Fig. 6 in New and known Halichoanolaimus de Man, 1886 species (Nematoda: Selachinematidae) from New Zealand's continental margin
Fig. 6. Halichoanolaimus ossilagulus sp. nov. Light micrographs. A, B. Cephalic region of paratype ♀ (NIWA 139247), showing structure of buccal cavity. C. Cloacal region of holotype ♂ (NIWA 139246), showing cuticle ornamentation and pore complexes (arrows). D. Junction of pharynx and intestine of paratype ♀ showing position of secretory-excretory gland (seg) and pseudoceolomocyte (pc). Scale bar: A–B = 15 µm; C = 11 µm; D = 17 µm.
Fig. 5 in New and known Halichoanolaimus de Man, 1886 species (Nematoda: Selachinematidae) from New Zealand's continental margin
Fig. 5. Halichoanolaimus ossilagulus sp. nov. A. Entire holotype ♂ (NIWA 139246). B. Entire paratype ♀ (NIWA 139247). Scale bar = 150 µm.
Fig. 7 in New and known Halichoanolaimus de Man, 1886 species (Nematoda: Selachinematidae) from New Zealand's continental margin
Fig. 7. Halichoanolaimus funestus sp. nov. A. Anterior body region of paratype ♀ (NIWA 139249). B. Holotype ♂ (NIWA 139248), cephalic region. C. Paratype ♀, cephalic region. D. Holotype ♂, posterior pharyngeal region and anterior intestinal region showing location of pseudocoelomocytes. E. Holotype ♂, spicular apparatus. F. Paratype ♀, posterior body region. G. Holotype ♂, posterior body region. Scale bar: A = 112 µm; B–C, E = 50 µm; D = 105 µm; F = 115 µm; G = 75 µm.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.