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Fig. 2 in First record of the Cat Ba Tiger Gecko, Goniurosaurus catbaensis, from Ha Long Bay, Quang Ninh Province, Vietnam: microhabitat selection, potential distribution, and evidence of threats
Fig. 2. Phylogram of Goniurosaurus based on the Bayesian analysis of a 16S ribosomal fragment. Numbers next to nodes are Bayesian posterior probabilities. Voucher numbers of new samples and GenBank accession numbers are placed after species names and in parentheses, respectively.
Fig. 1 in First record of the Cat Ba Tiger Gecko, Goniurosaurus catbaensis, from Ha Long Bay, Quang Ninh Province, Vietnam: microhabitat selection, potential distribution, and evidence of threats
Fig. 1. New population. (A) Habitat of Goniurosaurus catbaensis on one offshore island in Ha Long Bay, Quang Ninh Province; (B) Microhabitat of G. catbaensis in Ha Long Bay; (C) Adult male; and (D) Adult female from Ha Long Bay. Photos: H.N. Ngo.
Figs 3–11. Ants from Buxa Tiger Reserve. 3–5 in THE BUXA TIGER RESERVE AS A 'HOT SPOT' OF ANT DIVERSITY IN WEST BENGAL STATE (HYMENOPTERA: FORMICIDAE)
Figs 3–11. Ants from Buxa Tiger Reserve. 3–5 – Calyptomyrmex friederikae Kutter, 1976; 6–8 – Dolichoderus brevis Santschi, 1920; 9–11 – Tetramorium curtulum Emery, 1895. (3, 6, 9 – body, dorsal view; 4, 7, 10 – body, lateral view; 5, 8, 11 – head, frontal view).
Fig. 3 in Acute mortality in California tiger salamander (Ambystoma californiense) and Santa Cruz long-toed salamander (Ambystoma macrodactylum croceum) caused by Ribeiroia ondatrae (Class: Trematoda)
Fig. 3. Ribeiroia ondatrae cercaria from Planorbella sp. collected from Ellicott Pond in Ellicott Slough National Wildlife Refuge, Santa Cruz County, California, U.S.A.
Fig. 4 in Acute mortality in California tiger salamander (Ambystoma californiense) and Santa Cruz long-toed salamander (Ambystoma macrodactylum croceum) caused by Ribeiroia ondatrae (Class: Trematoda)
Fig. 4. Molecular phylogenetic analysis by Maximum Likelihood method based on the Hasegawa-Kishino-Yano plus G model with 500 bootstrap replications based on partial 28S rRNA gene sequences of Ribeiroia ondatrae metacercariae from California tiger salamanders (Ambystoma californiense), cercariae from Planorbella sp. and sequences of R. ondatrae publicly available in GenBank with Notocotylus attenuatus as an outgroup. Tree is drawn to scale with branch lengths measure in the number of substitutions per site. The analysis involved 13 nucleotide sequences. All positions with less than 95% site coverage were eliminated. There was a total of 1189 positions in the final dataset.
Fig. 2 in Acute mortality in California tiger salamander (Ambystoma californiense) and Santa Cruz long-toed salamander (Ambystoma macrodactylum croceum) caused by Ribeiroia ondatrae (Class: Trematoda)
Fig. 2. Photomicrograph of California tiger salamanders (Ambystoma californiense) in late-stage metamorphosis from a mortality event in the Ellicott Slough National Wildlife Refuge in Santa Cruz County, California, U.S.A. (A) Cross-section of dorsal tail showing widespread ulcerative dermatitis with superficial serocellular crust formation and intralesional metacercariae (asterisk) (H&E). (B) Metacercariae (asterisk) associated with mixed cellular to granulomatous inflammation widespread in the gills and subcutis (PAS). Inset: Encysted metacercariae are surrounded by mixed-cellular to granulomatous to infiltrate (H&E).
Fig. 1 in Acute mortality in California tiger salamander (Ambystoma californiense) and Santa Cruz long-toed salamander (Ambystoma macrodactylum croceum) caused by Ribeiroia ondatrae (Class: Trematoda)
Fig. 1. Gross photographs of ethanol-fixed salamanders in late-stage metamorphosis from a mortality event in the Ellicott Slough National Wildlife Refuge (ESNWR) in Santa Cruz County, California, U.S.A. showing integumentary lesions. (A) California tiger salamander (Ambystoma californiense) exhibiting an extensive roughening of the skin with multifocal ulceration around the eyes, gular fold, and dorsal tail (arrows). (B) Santa Cruz long-toed salamander (Ambystoma macrodactylum croceum) with ulceration and crust formation on the gular fold and base of the tail (arrow).
Fig. 5 in Cerebral cysticercosis in a wild Bengal tiger (Panthera tigris tigris) in Bhutan: A first report in non-domestic felids
Fig. 5. Cladogram showing the relation between the sequence of the nad1 gene (491bp) amplified from the sediment of the 21 μm filter of the sieving method for isolation of taeniid eggs from faeces of the tiger analysed in this study highlighted in bold (MT920328); together with the sequence of the same gene of different Taenia spp.
Fig. 4 in Cerebral cysticercosis in a wild Bengal tiger (Panthera tigris tigris) in Bhutan: A first report in non-domestic felids
Fig. 4. Cladogram showing the relation between the sequences of the cytB gene of Taenia solium from the present study highlighted in bold (MT371084- MT371085) and unique published sequences of the cytB gene available in GenBank from Ecuador (ECU), Tanzania (TANZ), Mexico (MEX), Brazil (BRA), Cameroun (CAM), Thailand (THA), Indonesia (INDO), Madagascar (MDG), INDIA, China (CHI) and Nepal (NEP). The sequences for the cytB gene from Taenia saginata (AB066581) and Taenia asiatica (AB066580) are also included. The cytB sequence from Echinococcus multilocularis (MK843307) was used as an outgroup.
Fig. 1 in Cerebral cysticercosis in a wild Bengal tiger (Panthera tigris tigris) in Bhutan: A first report in non-domestic felids
Fig. 1. Camera trap image of the tiger infected with Taenia solium reported in this article captured on the 15th of November 2014. The image was taken during a survey of the Bengal tiger population at national level in Bhutan. Copyright: Nature Conservation Division, DoFPS, MoAF, Bhutan.
Fig. 2 in Cerebral cysticercosis in a wild Bengal tiger (Panthera tigris tigris) in Bhutan: A first report in non-domestic felids
Fig. 2. Cysts identified at necropsy of the Bengal tiger in Bhutan (left) and isolated in a jar (right).
Fig. 3 in Cerebral cysticercosis in a wild Bengal tiger (Panthera tigris tigris) in Bhutan: A first report in non-domestic felids
Fig. 3. Cladogram showing the relation between the sequences of the cox1 gene of Taenia solium from the present study highlighted in bold (MT366763- MT366764) and unique published sequences of the cox1 gene available in GenBank from Tanzania (TANZ), Brazil (BRA), Mexico (MEX), Ecuador (ECU), Madagascar (MDG), Indonesia (INDO- PA, INDO-BA), China (CHI), Nepal (NEP), Thailand (THA) and India (TAE). Sequences for the cox1 gene from Taenia saginata (AB066495) and T. asiatica (AB066494) were also included. The cox1 sequence of Echinococcus multilocularis (MN251845) was used as an outgroup.
Linked collectors and determiners for: Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery.
Natural history specimen data linked to collectors and determiners held within, "Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/9d667866-47c7-4e0c-9fa9-22a0e202f36c">https://bionomia.net/dataset/9d667866-47c7-4e0c-9fa9-22a0e202f36c</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/9d667866-47c7-4e0c-9fa9-22a0e202f36c">https://gbif.org/dataset/9d667866-47c7-4e0c-9fa9-22a0e202f36c</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Revision of the Oriental tiger beetle genus Heptodonta Hope, 1838 (Coleoptera: Cicindelidae).
Natural history specimen data linked to collectors and determiners held within, "Revision of the Oriental tiger beetle genus Heptodonta Hope, 1838 (Coleoptera: Cicindelidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/a75d6e42-221a-4df9-9a7d-5f33dbff6a56">https://bionomia.net/dataset/a75d6e42-221a-4df9-9a7d-5f33dbff6a56</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/a75d6e42-221a-4df9-9a7d-5f33dbff6a56">https://gbif.org/dataset/a75d6e42-221a-4df9-9a7d-5f33dbff6a56</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: New or rare Madagascar tiger beetles- 20. Pogonostoma (Bathypogonum) horimichioi sp. nov. and supplemented characters of P. (B) levigatum levigatum (W. Horn) and P. (B.) levigatum lucens Rivalier (Coleoptera: Cicindelidae).
Natural history specimen data linked to collectors and determiners held within, "New or rare Madagascar tiger beetles- 20. Pogonostoma (Bathypogonum) horimichioi sp. nov. and supplemented characters of P. (B) levigatum levigatum (W. Horn) and P. (B.) levigatum lucens Rivalier (Coleoptera: Cicindelidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/0b136600-8384-4130-8c2e-94c6678f3dd2">https://bionomia.net/dataset/0b136600-8384-4130-8c2e-94c6678f3dd2</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/0b136600-8384-4130-8c2e-94c6678f3dd2">https://gbif.org/dataset/0b136600-8384-4130-8c2e-94c6678f3dd2</a>. Formatted as a Frictionless Data package.
Figures 1–3 in A new genus and species of tiger beetle, Pseudocollyris shooki (Coleoptera: Cicindelidae), from Yunnan, China
Figures 1–3. Habitus of Pseudocollyris shooki n. sp., holotype, female, scale = 5 mm. 1) Dorsal view. 2) Ventral view. 3) Lateral view.
Figures 4–5. Pseudocollyris shooki n in A new genus and species of tiger beetle, Pseudocollyris shooki (Coleoptera: Cicindelidae), from Yunnan, China
Figures 4–5. Pseudocollyris shooki n. sp., holotype, female, scale = 0.5 mm. 4) Head in front view. 5) Pronotum in dorsal view.
Figure 10 in Naviauxella horii, a new tiger beetle species from Myanmar (Coleoptera: Cicindelidae)
Figure 10. Habitat of the locus typicus, an extensive plantation of young teak. The forest floor is somewhat dry with sparse vegetation. Photos by Michio Hori.
Figures 1–8. Naviauxella horii n in Naviauxella horii, a new tiger beetle species from Myanmar (Coleoptera: Cicindelidae)
Figures 1–8. Naviauxella horii n. sp. 1) Habitus, holotype male. Scale = 5 mm. 2) Left lateral view of aedeagus, holotype. Scale = 1 mm. 3–5. Labrum. Scale = 1 mm. 3) Holotype male. 4) Paratype female. 5) Paratype female. 6–8. Left elytron. Scale = 2 mm. 6) Holotype male. 7) Paratype male. 8) Paratype female.
Figures 16-17 in Taxonomy, identification, and phylogeny of the African and Madagascan species of the tiger beetle genus Chaetodera Jeannel 1946 (Coleoptera: Cicindelidae)
Figures 16-17. Distribution of Chaetodera species in Africa and Madagascar. 16) Distribution of C. antatsima (dark circles), C. perrieri (dark triangles), and C. blanchardi (dark squares). 17) Distribution of C. andriana (open circles), C. maheva (open stars), and C. regalis (dark stars).
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.