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Fig. 4. Anticura flinti, first instar. A–B in Larval Morphology and Biology of the New Zealand-Chilean Genera Cylomissus Broun and Anticura Spangler (Coleoptera: Hydrophilidae: Rygmodinae)
Fig. 4. Anticura flinti, first instar. A–B) Antenna, dorsal and ventral views, C–D) Left and right mandible, dorsal view, E–F) Maxilla, dorsal and ventral views, G–H) Labium, dorsal and ventral views.
Fig. 9. Cylomissus glabratus. A in Larval Morphology and Biology of the New Zealand-Chilean Genera Cylomissus Broun and Anticura Spangler (Coleoptera: Hydrophilidae: Rygmodinae)
Fig. 9. Cylomissus glabratus. A) First instar, dorsal view, B–D) Third instar, dorsal, lateral, and ventral views, E) Adult, F) Taranaki, Mt. Egmont National Park, Te Popo stream at Curtis Falls Track, New Zealand; M. Fikáček placing floating mosses in a plastic jar, G) Gisborne, Te Urewera National Park, Te Kumi stream at Waipai-Ruapani Track, New Zealand, H) Details of mosses at Wharekai Te Kou Walk from which Cylomissus was collected, I) Westland, Wharekai Te Kou Walk NNW of Jackson Bay, New Zealand, J) Taranaki, Mt. Egmont National Park, unnamed stream 0.2 km S of Pukeiti Garden, New Zealand, K) Westland, Mount Aspiring National Park, Mur Creek at Pleasant Flat, New Zealand, L) Detail of mosses in Mur Creek with Cylomissus. Photographs F–G and J by J. Hájek.
Fig. 6 in Larval Morphology and Biology of the New Zealand-Chilean Genera Cylomissus Broun and Anticura Spangler (Coleoptera: Hydrophilidae: Rygmodinae)
Fig. 6. Anticura flinti, third instar, head capsule. A) Dorsal view, B) Ventral view, C) Anterior margin, dorsal view.
Fig. 3 in Larval Morphology and Biology of the New Zealand-Chilean Genera Cylomissus Broun and Anticura Spangler (Coleoptera: Hydrophilidae: Rygmodinae)
Fig. 3. Anticura flinti, first instar, head capsule. A) Dorsal view, B) Ventral view, C) Anterior margin, dorsal view.
Fig. 8. Anticura flinti, third instar. A in Larval Morphology and Biology of the New Zealand-Chilean Genera Cylomissus Broun and Anticura Spangler (Coleoptera: Hydrophilidae: Rygmodinae)
Fig. 8. Anticura flinti, third instar. A) Head, dorsal view, B) Prosternal sclerite, ventral view, C) Metathoracic leg, ventral view, D) Abdominal segments 8–10 with spiracular atrium, dorsal view.
Fig. 12 in Larval Morphology and Biology of the New Zealand-Chilean Genera Cylomissus Broun and Anticura Spangler (Coleoptera: Hydrophilidae: Rygmodinae)
Fig. 12. Cylomissus glabratus, third instar, head capsule. A) Dorsal view, B) Ventral view, C) Anterior margin, dorsal view.
Fig. 5. Anticura flinti, second instar. A–B in Larval Morphology and Biology of the New Zealand-Chilean Genera Cylomissus Broun and Anticura Spangler (Coleoptera: Hydrophilidae: Rygmodinae)
Fig. 5. Anticura flinti, second instar. A–B) Antenna, dorsal and ventral views, C–D) Maxilla, dorsal and ventral views.
Fig. 13. Cylomissus glabratus, third instar. A–B in Larval Morphology and Biology of the New Zealand-Chilean Genera Cylomissus Broun and Anticura Spangler (Coleoptera: Hydrophilidae: Rygmodinae)
Fig. 13. Cylomissus glabratus, third instar. A–B) Antenna, dorsal and ventral views, C–D) Left and right mandible, dorsal view, E–F) Maxilla, dorsal and ventral views, G–H) Labium, dorsal and ventral views.
Figure 6 in An unprecedented new genus and family of Tetractinellida (Porifera, Demospongiae) from New Zealand's Colville Ridge, with a new type of mitochondrial group I intron
Figure 6. Megascleres and microscleres of Stupenda singularis gen. et sp. nov., holotype NIWA 86177, Colville Ridge, Kermadec Volcanic Arc, 387–422 m: A, oxea, one end showing strong attenuation, scale bar = 1000 μm; B, orthotriaene I megascleres with clubbed clads, scale bar = 1000 μm; C, orthotriaene I megascleres with clubbed bulbous clads, scanning electron microscopy (left), light microscopy (LM) (right), scale bar = 200 μm; D, orthotriaene I megasclere with reduced irregular clads, scale bar = 200 μm; E, orthotriaene I megascleres with diaene modifications, scale bar = 200 μm; F, orthotriaene I megasclere with monaene modification, LM, scale bar = 200 μm; G, orthotriaene II megasclere with normal clads, scale bar = 200 μm; H, orthotriaene II megasclere with irregular reduced clads, entirely smooth, scale bar = 200 μm; I, sigmaspires, scale bar = 5 μm.
Figure 2. Tetractinellida 18S in An unprecedented new genus and family of Tetractinellida (Porifera, Demospongiae) from New Zealand's Colville Ridge, with a new type of mitochondrial group I intron
Figure 2. Tetractinellida 18S rDNA maximum likelihood (ML) tree reconstructed with RAxML under the generalized time-reversible Gamma (GTRGAMMA) model: 89 sequences. At each key node, ML bootstrap supports (100 bootstrap replicates) and Bayesian posterior probabilities are given (only bootstrap supports above 50 are shown). GenBank accession numbers are given after each taxon name; when sequences have been merged, two accession numbers are given. 'K94' indicates that this is a short 18S sequence (V4–V5 region) from Kelly-Borges & Pomponi (1994) (accession numbers KT356876–KT356885).
Figure 3. Tetractinellida cytochrome c oxidase subunit I in An unprecedented new genus and family of Tetractinellida (Porifera, Demospongiae) from New Zealand's Colville Ridge, with a new type of mitochondrial group I intron
Figure 3. Tetractinellida cytochrome c oxidase subunit I (COI) maximum likelihood (ML) trees reconstructed with RAxML under the generalized time-reversible Gamma – GTRGAMMA – model: 140 sequences At each key node, ML bootstrap supports (100 bootstrap replicates) and Bayesian posterior probabilities are given. There are two bootstrap supports: nucleotide analyses/amino-acid analyses (only bootstrap supports above 50 are shown). GenBank accession numbers are given after each taxon name. Presence of mitochondrial introns are given in the COI tree (the number given to each intron indicates its position with respect to the Amphimedon queenslandica complete COI as reference).
Figure 5 in An unprecedented new genus and family of Tetractinellida (Porifera, Demospongiae) from New Zealand's Colville Ridge, with a new type of mitochondrial group I intron
Figure 5. Morphology and skeletal architecture of Stupenda singularis gen. et sp. nov., holotype NIWA 86177, Colville Ridge, Kermadec Volcanic Arc, 387–422 m: A, preserved specimen, scale bar = 10 mm; B, preserved specimen showing thick cortex and strictly radiating skeleton, emanating from a centrum, scale bar = 10 mm; C, D, histological thick section showing strictly radiating megascleres in cortex, scale bars = 200 μm.
Figure 4 in An unprecedented new genus and family of Tetractinellida (Porifera, Demospongiae) from New Zealand's Colville Ridge, with a new type of mitochondrial group I intron
Figure 4. Mitochondrial intron of Stupenda singularis gen. et sp. nov. COI, cytochrome c oxidase subunit I gene; COB, cytochrome b gene; nt, nucleotide; ORF, open reading frame.
Figure 1 in An unprecedented new genus and family of Tetractinellida (Porifera, Demospongiae) from New Zealand's Colville Ridge, with a new type of mitochondrial group I intron
Figure 1. Study area showing the collection locality for Stupenda singularis gen. et sp. nov. (●), Colville Ridge volcano, Colville Ridge, New Zealand Exclusive Economic Zone.
FIGURE 8 in On the sand and among the crowds: a new species of Woodworthia gecko (Reptilia Diplodactylidae) from Auckland, Aotearoa/ New Zealand
FIGURE 8. Precloacal and femoral pores of paratype (AWMM LH4068, adult male) of Woodworthia korowai sp. nov., Te Oneone Rangatira/ Muriwai Beach, Auckland.
FIGURE 10 in On the sand and among the crowds: a new species of Woodworthia gecko (Reptilia Diplodactylidae) from Auckland, Aotearoa/ New Zealand
FIGURE 10. In-life images of W. korowai sp. nov. and its habitat, illustrating: A, adult female from Te Oneone Rangatira/ Muriwai Beach, Auckland; B, juvenile from Te Oneone Rangatira/ Muriwai Beach, Auckland; C, typical duneland habitat of W. korowai sp. nov. on Te Korowai-o-Te-Tonga/ South Kaipara Peninsula; D, Oaia Island off the coast of Muriwai; and E, habitat of W. korowai sp. nov. on Oaia Island's eastern face.
FIGURE 7 in On the sand and among the crowds: a new species of Woodworthia gecko (Reptilia Diplodactylidae) from Auckland, Aotearoa/ New Zealand
FIGURE 7. Paratypes of Woodworthia korowai sp. nov., in dorsal and ventral views; A, D, AWMM LH4067, adult female, Oaia Island, Muriwai, Auckland; B, E, AWMM LH4068, adult male, Te Oneone Rangatira/ Muriwai Beach, Auckland; C, F, AWMM LH4069, adult male, Woodhill Forest, Auckland.
FIGURE 6 in On the sand and among the crowds: a new species of Woodworthia gecko (Reptilia Diplodactylidae) from Auckland, Aotearoa/ New Zealand
FIGURE 6. Head details of Woodworthia korowai sp. nov., holotype (AWMM LH2445, adult female), Te Oneone Rangatira/ Muriwai Beach, Auckland. A, left view of head; B, dorsal view of head; C, right view of head; D, ventral view of head.
FIGURE 4 in On the sand and among the crowds: a new species of Woodworthia gecko (Reptilia Diplodactylidae) from Auckland, Aotearoa/ New Zealand
FIGURE 4. Boxplot comparisons of discrete meristic characters among Woodworthia maculata (light blue), Woodworthia "Mt Arthur" (purple), and Woodworthia korowai sp. nov. (yellow). Bold plot outlines denote characters bearing statistically significant mean differences between W. korowai sp. nov. and W. maculata (the most closely related congener). Abbreviations are listed in the Materials and methods.
FIGURE 5 in On the sand and among the crowds: a new species of Woodworthia gecko (Reptilia Diplodactylidae) from Auckland, Aotearoa/ New Zealand
FIGURE 5. Holotype of Woodworthia korowai sp. nov. (AWMM LH02445, adult female), Te Oneone Rangatira/ Muriwai Beach, Auckland; A, dorsal view illustrating the pale buff dorsolateral stripes converging either at the tail base, and indistinct and broken buff mid-dorsal stripe; B, ventral view showing the uniform cream colour.
ScienceDex guides
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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.