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13,453 results for “Australia.”
Figure 11 in A new genus and new species of Desmosomatidae (Crustacea: Isopoda: Asellota) from the deep sea of south-eastern Australia
Figure 11. Disparella kensleyi sp. nov. Holotype female. NMV J18605. (A) Dorsal and (B) lateral views.
Figure 4A-I. Ectopleura exxonia. A in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 4A-I. Ectopleura exxonia. A, proximal stem and hydrorhiza; B, hydranth with immature gonophores (after Watson, 1978); C, cluster of developing gonophores; D, developing gonophore at base of aboral tentacle; E, F, apical process on nearly mature gonophore; G, stenotele from aboral tentacle; H, stenotele from oral tentacle; I, heteroneme from tentacles. Scale bar: A, B, 1 mm, C, 0.2 mm, D, 0.3 mm, G−I, 10 µm.
Figure 3A-G. Eudendrium pennycuikae. A in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 3A-G. Eudendrium pennycuikae. A, branch with hydranths; B, hydranth with extended tapering tentacles; C, developing female gonophores; D, mature female gonophores; E, cluster of male gonophores; F, eurytele from tentacles. Drawn from preserved material. Scale bar: A, 2 mm, B, 0.3 mm, C, D, E, 0.5 mm, F, 10 µm.
Figure 2A-G. Amphinema dinema. A in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 2A-G. Amphinema dinema. A, hydrocaulus with extended hydranth and gonophores on hydrorhiza. B, contracted hydranth, C, corrugated hydrocaulus. D, nearly mature gonophore. E, newly released medusa, F, eurytele from tentacles, G, desmoneme from hypostome. Scale bar: A, B, E, 0.5 mm, C, 0.3 m, D, 0.2 mm, F, G, 10 µm.
Figure 6A-J. Pennaria wilsoni. A in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 6A-J. Pennaria wilsoni. A, branch with extended hydranths; B, basal annulations of branch; C, capitate tentacles surrounding hypostome; D, developing female gonophore; E newly released released eumedusa with scattered nematocysts; F−H, stenoteles from oral and aboral tentacles; I, desmoneme from hypostome; J, microbasic mastigophore from aboral tentacles. Scale bar: A, 5 mm, B, D, E, 0.5, mm, C, 0.25 mm, F−J, 20 µm.
Figure 1A-D in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 1A-D. Hydractinia gelinea sp. nov. Holotype (NMV F202870). A, hydranth with developing gonophores; B, mature gonophore with scattered nematocysts; C, undischarged heteroneme from hydranth body and gonophores; D, undischarged heteroneme from tentacles. Drawn from preserved material. Scale bar: A, 0.5 mm; B, 0.2 mm; C, D, 10 µm.
Figure 5 in Five athecate hydroids (hydrozoa: anthoathecata) from south-eastern australia
Figure 5. Pennaria wilsoni. In situ photograph of colony, Port Phillip Heads, depth 10 m, showing bushy growth habit (photograph by author). Scale bar: 5 cm.
Fig. 1 in The identification of Theileria bicornis in captive rhinoceros in Australia
Fig. 1. Photomicrograph of Diff-Quik stained blood smear from black rhinoceros, Siabuwa infected with T. bicornis. The morphology of T. bicornis is not well-described in the literature. We observed comma-shaped piroplasms approximately 1.5 μm in length closely resembling T. orientalis. Ring forms were also occasionally observed (not shown). Bar = 5 μm.
Fig. 2 in The identification of Theileria bicornis in captive rhinoceros in Australia
Fig. 2. Molecular phylogenetic analysis of the piroplasm 18S rRNA gene, including the three rhinoceros samples (Aluka, Umfana and Siabuwa) used in this study. The 18S rRNA sequences were extracted from Genbank during BLAST analysis. The rooted phylogenetic tree was constructed using the neighbour-joining method with T. gondii forming the outgroup. Bootstrap percentages are represented on each node based on 1000 replicates. Phylogenetic analyses were conducted using the PHYLIP packages (Felsenstein, 2005). The haplotypes of the three T. bicornis sequences from this study are indicated at the end of the sequence label.
Fig. 3 in The identification of Theileria bicornis in captive rhinoceros in Australia
Fig. 3. Truncated alignment of the 18S rRNA T. bicornis haplotypes including the new haplotype H4 identified in this study. Geneious version (7.1.9) (Kearse et al., 2012) was used to generate alignments to highlight the differences between the four T. bicornis haplotypes. 18S rRNA sequences of the three previously described T. bicornis haplotypes H1 to H3 (accession numbers KC771140 to KC771142 respectively) were extracted from Genbank for this analysis. The new T. bicornis haplotype H4 was submitted to Genbank and assigned accession number MF567493.
F I G U R E 5 in Another ghost of Gondwana-Progradungula barringtonensis Michalik & Smith, sp. nov., a new species of the relict spider genus Progradungula (Araneae: Gradungulidae) from a temperate rainforest in eastern Australia
F I G U R E 5 Webs of the different Progradungula species. (a–b) Webs and immature of Progradungula barringtonensis sp. nov. (c) Progradungula carraiensis (Photo: G. Campell). (d) Progradungula otwayensis (Photo: M. J. Ramirez).
F I G U R E 3 in Another ghost of Gondwana-Progradungula barringtonensis Michalik & Smith, sp. nov., a new species of the relict spider genus Progradungula (Araneae: Gradungulidae) from a temperate rainforest in eastern Australia
F I G U R E 3 Progradungula barringtonensis sp. nov. (holotype, AMS KS.129955). (a) Ventral view of spinnerets. (b) Tarsus of leg I (left) and leg II (right). (c) Left male palp in prolateral, ventral and retrolateral view (from left to right). Abbreviations: mA, median apophysis; mH, median hematodocha; PE, process of embolus; Te, tegulum. Scale bars: 1 mm.
F I G U R E 4 in Another ghost of Gondwana-Progradungula barringtonensis Michalik & Smith, sp. nov., a new species of the relict spider genus Progradungula (Araneae: Gradungulidae) from a temperate rainforest in eastern Australia
F I G U R E 4 Progradungula carraiensis (male, AMS KS.6740). This is the specimen used for the description of the male characters of this species (Gray 1983). Due to conservational issues the specimen is largely discoloured. (a) Habitus. (b) Tarsus of leg I. (c) Tarsus of leg II. (d) Right male pedipalp in retrolateral, ventral and prolateral view (from left to right). Abbreviations: mA, median apophysis. Scale bars: 1 mm.
F I G U R E 2 in Another ghost of Gondwana-Progradungula barringtonensis Michalik & Smith, sp. nov., a new species of the relict spider genus Progradungula (Araneae: Gradungulidae) from a temperate rainforest in eastern Australia
F I G U R E 2 Progradungula barringtonensis sp. nov. (holotype, AMS KS.129955). (a) Lateral view. (b) Dorsal view of body. (c) Ventral view. Scale bars: 1 mm.
F I G U R E 1 in Another ghost of Gondwana-Progradungula barringtonensis Michalik & Smith, sp. nov., a new species of the relict spider genus Progradungula (Araneae: Gradungulidae) from a temperate rainforest in eastern Australia
F I G U R E 1 (a) Distribution map of the known Progradungula species. (b) Habitat of Progradungula barringtonensis sp. nov. in Barrington Tops National Park, New South Wales. (c) Male of P. barringtonensis sp. nov. (holotype, AMS KS.129955).
F I G U R E 5 in Untangling the web: dynamics of Australia s online terrestrial invertebrate trade
F I G U R E 5 (a) Total number of invertebrate listings per State on the classifieds website, (b) classes of invertebrate for sale per State. Note: the Y axes are transformed to display less abundant classes.
F I G U R E 8 in Untangling the web: dynamics of Australia s online terrestrial invertebrate trade
F I G U R E 8 Reconstructed examples of classifieds listings with vague descriptions and poor-quality images.
F I G U R E 6 in Untangling the web: dynamics of Australia s online terrestrial invertebrate trade
F I G U R E 6 (a) Total number of invertebrate listings per State on online pet stores. (b) The classes of invertebrate each listing features. Y axis are log10 transformed to display less abundant classes.
F I G U R E 1 in Untangling the web: dynamics of Australia s online terrestrial invertebrate trade
F I G U R E 1 Species accumulation curve for invertebrate listings collected from the public classifieds website, representing the total cumulative number of species identified over time as listings were collected from the website.
F I G U R E 3 in Phylogenetic placement and description of Ngaliadessus humphreysi gen. et sp. nov., Watts & Villastrigo (Coleoptera: Dytiscidae), a subterranean diving beetle from the Ngalia Basin in central Australia
F I G U R E 3 Adult Ngaliadessus humphreysi sp. nov., Watts & Villastrigo. (a) Dorsal view of adult; (b) line drawing; (c) line drawing of ventral surface of mesotrochanter and mesofemur; (d) line drawing of ventral surface of metatrochanter and metafemur; (e) portion of spermatheca with internal spine.
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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)
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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.