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762 results for “victoria”
Figure 1 from: Saarela JM, Sokoloff PC, Gillespie LJ, Bull RD, Bennett BA, Ponomarenko S (2020) Vascular plants of Victoria Island (Northwest Territories and Nunavut, Canada): a specimen-based study of an Arctic flora. PhytoKeys 141: 1-330. https://doi.org/10.3897/phytokeys.141.48810
Figure 1 Map of Victoria Island showing locations of named places referred to in the current study. Inset: map of Canada showing the location of Victoria Island in the western Canadian Arctic Archipelago.
Distribution. NE & SE Queensland, E New South Wales, and E Victoria. in Vespertilionidae
Distribution. NE & SE Queensland, E New South Wales, and E Victoria.
Distribution. SE Queensland, New South Wales, NW Victoria, and SE South Australia. in Vespertilionidae
Distribution. SE Queensland, New South Wales, NW Victoria, and SE South Australia.
Distribution. SE Australia (NW Victoria to SE South Australia, including Kangaroo I) and Tasmania. in Burramyidae
Distribution. SE Australia (NW Victoria to SE South Australia, including Kangaroo I) and Tasmania.
Distribution. SE Australia, in S & SE New South Wales and SE Victoria. in Dasyuridae
Distribution. SE Australia, in S & SE New South Wales and SE Victoria.
Distribution. SE South Australia and W Victoria, in SE Australia. in Muridae
Distribution. SE South Australia and W Victoria, in SE Australia.
Queen Victoria Lion, Gore Park
Scan created on MAy 25, 2021 https://w3w.co/meaning.being.resists Source: Objaverse 1.0 / Sketchfab
Figure 9 in A late Oligocene waipatiid dolphin (Odontoceti: Waipatiidae) from Victoria, Australia
Figure 9. Humeri of NMV P48861, Waipatiidae gen. et sp. indet. Left humerus in: A, medial; B, anterior; C, posterior; and D, proximal views. Right humerus in: E, lateral; and F, medial views. Specimens whitened with ammonium chloride.
Lakes Victoria, Simbi, Naivasha Coassembly (Metagenomic)
<p>A coassembly containing 26 concatenated and assembled (coassembled) metagenomic libraries that has been made publically available in conjunction with a Harmful Algae manuscript (to be published). </p>
Figure 2 from: Zhou S-S, Tan Y-H, Jin X-H, Maung KW, Zyaw M, Li R, Quan R-C, Liu Q (2018) Coelogyne victoria-reginae (Orchidaceae, Epidendroideae, Arethuseae), a new species from Chin State, Myanmar. PhytoKeys 98: 125-133. https://doi.org/10.3897/phytokeys.98.23298
Figure 2 Coelogyne victoria-reginae. A Habitat B Plant C Inflorescence D Flower E Lateral view of labellum F Front view of labellum G Front and lateral view of column H Abaxial and adaxial anther cap. I. Pollinarium (Photographed by Q. Liu)
Figure 1 from: Zhou S-S, Tan Y-H, Jin X-H, Maung KW, Zyaw M, Li R, Quan R-C, Liu Q (2018) Coelogyne victoria-reginae (Orchidaceae, Epidendroideae, Arethuseae), a new species from Chin State, Myanmar. PhytoKeys 98: 125-133. https://doi.org/10.3897/phytokeys.98.23298
Figure 1 Coelogyne victoria-reginae. A Plant B Inflorescence C Lateral view of labellum D Pollinarium E Abaxial and adaxial anther cap F Sepals and petals G Front view of flower H Front and lateral view of column. All from the type collection (Qiang Liu, M17-18) and drawn by Lan Yan.
Figure 3 from: Zhou S-S, Tan Y-H, Jin X-H, Maung KW, Zyaw M, Li R, Quan R-C, Liu Q (2018) Coelogyne victoria-reginae (Orchidaceae, Epidendroideae, Arethuseae), a new species from Chin State, Myanmar. PhytoKeys 98: 125-133. https://doi.org/10.3897/phytokeys.98.23298
Figure 3 A Coelogyne schultesii (A-1 Plant A-2 Inflorescence A-3 Flower) B Coelogyne ecarinata (B-1 Plant B-2 Inflorescence B-3 Flower) C Coelogyne victoria-reginae (C-1 Plant C-2 Inflorescence C-3 Flower) (Photographed by Q. Liu).
Data from: Koalas (Phascolarctos cinereus) from Queensland are genetically distinct from 2 populations in Victoria
The koala (Phascolarctos cinereus) suffered population declines and local extirpation due to hunting in the early 20th century, especially in southern Australia. Koalas were subsequently reintroduced to the Brisbane Ranges (BR) and Stony Rises (SR) by translocating individuals from a population on French Island descended from a small number of founders. To examine genetic diversity and north–south differentiation, we genotyped 13 microsatellite markers in 46 wild koalas from the BR and SR, and 27 Queensland koalas kept at the US zoos. The Queensland koalas displayed much higher heterozygosity (H O = 0.73) than the 2 southern Australian koala populations examined: H O = 0.49 in the BR, whereas H O = 0.41 in the SR. This is consistent with the historical accounts of bottlenecks and founder events affecting the southern populations and contrasts with reports of high genetic diversity in some southern populations. The 2 southern Australian koala populations were genetically similar (F ST = 0.018, P = 0.052). By contrast, northern and southern Australian koalas were highly differentiated (F ST = 0.27, P < 0.001), thereby suggesting that geographic structuring should be considered in the conservation management of koalas. Sequencing of 648bp of the mtDNA control region in Queensland koalas found 8 distinct haplotypes, one of which had not been previously detected among koalas. Queensland koalas displayed high mitochondrial haplotype diversity (H = 0.753) and nucleotide diversity (π = 0.0072), indicating along with the microsatellite data that North American zoos have maintained high levels of genetic diversity among their Queensland koalas.
Figure 3 from: Tamayo MN, Bustamante RAA, Fritsch PW (2021) Vaccinium exiguum (Ericaceae, Vaccinieae), a new species from the ultramafic summit of Mt. Victoria, Palawan Island, Philippines. PhytoKeys 179: 145-154. https://doi.org/10.3897/phytokeys.179.68323
Figure 3 Translucent glands of Vaccinium exiguumA leaf margin B calyx lobe C bract. Photos by Maverick N. Tamayo.
Figure 2 from: Tamayo MN, Bustamante RAA, Fritsch PW (2021) Vaccinium exiguum (Ericaceae, Vaccinieae), a new species from the ultramafic summit of Mt. Victoria, Palawan Island, Philippines. PhytoKeys 179: 145-154. https://doi.org/10.3897/phytokeys.179.68323
Figure 2 Vaccinium exiguumA flowering branchlet B leaf, abaxial view C lateral view of flower showing ribbed corolla D distal portion of pedicel, as well as hypanthium, calyx lobes and style E stamen in oblique-lateral view showing spurs F stamen in ventral view G cross section of ovary showing seven locules. Illustrated by Maverick N. Tamayo.
Figure 1 from: Tamayo MN, Bustamante RAA, Fritsch PW (2021) Vaccinium exiguum (Ericaceae, Vaccinieae), a new species from the ultramafic summit of Mt. Victoria, Palawan Island, Philippines. PhytoKeys 179: 145-154. https://doi.org/10.3897/phytokeys.179.68323
Figure 1 Vaccinium exiguumA ultramafic summit of Mt. Victoria B flowering branchlets in situ. Photo A by Alastair Robinson. Photo B by Rene Alfred Anton Bustamante.
Figure 4 from: de Zeeuw M, Westbroek I, van Oijen M, Witte F (2013) Two new species of zooplanktivorous haplochromine cichlids from Lake Victoria, Tanzania. ZooKeys 256: 1-34. https://doi.org/10.3897/zookeys.256.3871
Figure 4 - Live colours of Haplochromis argens sp. n. A sexually active ♂, 59.3 mm SL (paratype, RMNH.PISC.83622), Emin Pasha Gulf B sexually active ♂, 72.1 mm SL (paratype, RMNH.PISC.84067), Mwanza Gulf.
Figure 7 from: de Zeeuw M, Westbroek I, van Oijen M, Witte F (2013) Two new species of zooplanktivorous haplochromine cichlids from Lake Victoria, Tanzania. ZooKeys 256: 1-34. https://doi.org/10.3897/zookeys.256.3871
Figure 7 - Skeletal elements of Haplochromis goldschmidti sp. n. A Right premaxilla, lateral view (RMNH.PISC.83695) B Right lower jaw, lateral view (RMNH.PISC.83695) C Lower pharyngeal element, dorsal view (RMNH.PISC.83701) D Lower pharyngeal element, lateral view (RMNH.PISC.83701). Scale bars equal 1 mm. Drawn by I. Westbroek.
Figure 1 from: de Zeeuw M, Westbroek I, van Oijen M, Witte F (2013) Two new species of zooplanktivorous haplochromine cichlids from Lake Victoria, Tanzania. ZooKeys 256: 1-34. https://doi.org/10.3897/zookeys.256.3871
Figure 1 - Tanzanian part of Lake Victoria. A, distribution of Haplochromis argens sp. n.(hatched area) B Mwanza Gulf with catch localities of type specimens of Haplochromis argens sp. n.(hatched area); E to J represent stations along the research transect where data on abundance of Haplochromis argens sp. n. were collected C Emin Pasha Gulf with catch localities of type specimens of Haplochromis argens sp. n. (filled circles) and type specimens of Haplochromis goldschmidti sp. n. (filledtriangles); open triangles indicate other catch localities of Haplochromis goldschmidti sp. n.
Figure 10 from: de Zeeuw M, Westbroek I, van Oijen M, Witte F (2013) Two new species of zooplanktivorous haplochromine cichlids from Lake Victoria, Tanzania. ZooKeys 256: 1-34. https://doi.org/10.3897/zookeys.256.3871
Figure 10 - Plots of taxonomic measurements as a function of standard length. Body depth (BD), preorbital width (POW), lower jaw width (LJW) and lachrymal width (LaW). Open circles - Haplochromis argens from the Mwanza Gulf (Mw); closed circles - Haplochromis argens from the Emin Pasha Gulf (EP); triangles - Haplochromis goldschmidti. Power curves determined from GLM parameter estimates, solid line - Haplochromis argens from the Mwanza Gulf; dotted line - Haplochromis argens from the Emin Pasha Gulf; dashed line - Haplochromis goldschmidti, long dashed line (POW) - Haplochromis argens from both locations (MW + EP).
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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.