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Fig. 6 in Rediscovery, taxonomic and conservation status of the threatened catfish Listrura camposi (Miranda-Ribeiro) (Siluriformes: Trichomycteridae)
Fig. 6. Geographic distribution of Listrura camposi (circles) and Listrura sp. (square) from município de Florianópolis; Southeastern Brazil, Santa Catarina to São Paulo States. Open circle indicates the type locality of L. camposi.
Fig. 5 in Rediscovery, taxonomic and conservation status of the threatened catfish Listrura camposi (Miranda-Ribeiro) (Siluriformes: Trichomycteridae)
Fig. 5. Skeleton of Listrura camposi, MNRJ 37023, 35.7 mm SL. (a) Skull and Weberian capsule in dorsal (left) and ventral (right) views. (b) Lower jaw, left side; internal view. (c) Gill arches, dorsal view. Right dorsal elements not drawn. (d) Hyoid arch, left side: ventral view. Dashed lines indicate the tip of the lateral process of parurohyal in relation to ceratohyals. (e) Pectoral girdle, left side: ventral view. Legends: AA+RA - angulo-articular and retro-articular co-ossified, AC - anterior ceratohyal, AN - antorbital, AU - autopalatine, B2-4 - basibranchials 2 to 4, BA+EX - fused basioccipital-exoccipitals, BR - branchiostegal rays, C1-5 - ceratobranchials 1 to 5, CL - cleithrum, cpr - coronoid process, DE - dentary, E1-4 - epibranchials 1 to 4, EP - epioccipital, FR - frontal, H1-4 - hypobranchials 1 to 4, IC - interceratohyal cartilage, LE - lateral ethmoid, ll1-2 - pores 1 and 2 of main lateral line, MA - maxilla, MC - Meckel cartilage, ME - mesethmoid, OB - orbitosphenoid, P3-4 - pharyngobranchials 3 and 4, PA - parasphenoid, PC - posterior ceratohyal, PF - pectoral-fin rays, PM - premaxilla, PP - "posttemporosupracleithrum", pp1 - pore 1 of preopercular canal, po1 - pore 1 of postotic canal, PT - pterotic, PR1-2 - proximal radials 1 and 2, RA - retro-articular, SC - scapulocoracoid, SO - sesamoid supraorbital, SP+PO+PS - fused sphenotic-prootic-pterosphenoid, SU - parieto-supraoccipital, TP - tooth plate, UH - parurohyal, VH - ventral hypohyal, VO - vomer, WE - Weberian capsule.
Fig. 4 in Rediscovery, taxonomic and conservation status of the threatened catfish Listrura camposi (Miranda-Ribeiro) (Siluriformes: Trichomycteridae)
Fig. 4. Caudal skeleton of Listrura camposi, MNRJ 37023, 35.7 mm SL, left side: lateral view. The arrow indicates the vestigial neural arch of preural-1 centrum. Legends: H3+H4+H5 - fused hypural 3-hypural 4-hypural 5, HS - hemal spine, NS - neural spine, P1+U1 - fused preural 1-ural 1, P2 - preural centrum 2, PH+H1+H2 - fused parhypural -hypural 1- hypural 2, UN - uroneural.
Fig. 1. Listrura camposi, MZUSP 95189, 46.4 in Rediscovery, taxonomic and conservation status of the threatened catfish Listrura camposi (Miranda-Ribeiro) (Siluriformes: Trichomycteridae)
Fig. 1. Listrura camposi, MZUSP 95189, 46.4 mm SL, live specimen; Brazil, São Paulo State, município de Pedro de Toledo. Photo by Cristiano Moreira.
Fig. 2 in Rediscovery, taxonomic and conservation status of the threatened catfish Listrura camposi (Miranda-Ribeiro) (Siluriformes: Trichomycteridae)
Fig. 2. Head detail of Listrura camposi, MZUSP 95189, 46.4 mm SL in (a) dorsal and (b) ventral views.
Fig. 7 in Rediscovery, taxonomic and conservation status of the threatened catfish Listrura camposi (Miranda-Ribeiro) (Siluriformes: Trichomycteridae)
Fig. 7. Photograph of small stream tributary to rio Itariri, itself tributary to rio Juquiá, rio Ribeira de Iguape basin, 24°15'06.4"S 47º14'53.3"W, locality of the newly-discovered population of Listrura camposi.
Figures 1-6. Piona inflata Sokolow, 1927 in On the taxonomic status of the water mites Piona inflata Sokolow, 1927 (Acari, Hydrachnidia: Pionidae)
Figures 1-6. Piona inflata Sokolow, 1927, male: 1 – dorsal platelets, 2 - seta Fch, 3 – idiosoma, ventral view; 4 – ejaculatory complex, 5 - chelicera, 6 – pedipalp. Scale bars: 1, 5 = 100 μm, 2, 4, 6 = 50 μm, 3 = 200 μm.
Figures 14-18. Piona inflata Sokolow, 1927 in On the taxonomic status of the water mites Piona inflata Sokolow, 1927 (Acari, Hydrachnidia: Pionidae)
Figures 14-18. Piona inflata Sokolow, 1927, female: 14–17 – acetabular plate; 18 – I-Leg-4-6. Scale bar: 14-18 = 100 μm.
Figures 12-13. Piona inflata Sokolow, 1927 in On the taxonomic status of the water mites Piona inflata Sokolow, 1927 (Acari, Hydrachnidia: Pionidae)
Figures 12-13. Piona inflata Sokolow, 1927, female: 12 – idiosoma, ventral view; 13 – pedipalp, lateral view. Scale bars: 12 = 200 μm, 13 = 50 μm.
Figures 7-11. Piona inflata Sokolow, 1927 in On the taxonomic status of the water mites Piona inflata Sokolow, 1927 (Acari, Hydrachnidia: Pionidae)
Figures 7-11. Piona inflata Sokolow, 1927, male: 7 – I-Leg-4-6, 8 – III-Leg-4-6, 9 – IV-Leg-4-6; 10 – claw of leg I, 11 - claws of leg III. Scale bars: 7-9 = 100 μm, 10, 11 = 50 μm.
Figure 1 in Selenogonus narinoensis Stirton, 1947 (Tayassuidae, Cetartiodactyla, Mammalia): taxonomic status and paleobiogeographic implications
Figure 1. Platygonus cf. marplatensis MGN 931 (IGM p002118). (a) Lateral view of the portion of vertical ramus of the left hemimandible; (b) m3 partially preserved. Platygonus marplatensis MMP-S Type 25. (c) Lateral view.
Figs. 10–11 in Description of the hitherto unknown female of Napaea joinvilea (Lepidoptera: Riodinidae: Mesosemiini), with a discussion on its taxonomic status
Figs. 10–11. Head of the female of Napaea joinvilea Hall & Harvey, 2005. 10. Anterior view; 11. Ventral view. Scale bar = 0.5 cm.
Figs. 1–9 in Description of the hitherto unknown female of Napaea joinvilea (Lepidoptera: Riodinidae: Mesosemiini), with a discussion on its taxonomic status
Figs. 1–9. Adults of species of Napaea Hübner, [1819]. 1–5. Napaea joinvilea Hall & Harvey, 2005. 1–2. Male from São Francisco do Sul, Santa Catarina, Brazil, 1. Dorsal. 2. Ventral. 3. Holotype from Joinville, Santa Catarina, Brazil, dorsal (right) and ventral (lef). 4–5. Male from Itacaré, Bahia, Brazil. 4. Dorsal. 5. Ventral. 6. Napaea melampia (Bates, 1867), male from "Brazil", dorsal (right) and ventral (lef). 7–8. N. joinvilea, female from Atami, Pontal do Paraná, Paraná, Brazil. 7. Dorsal. 8. Ventral. 9. N. melampia, female from "Bahia", Brazil. Figures 3, 6 and 9 reproduced from Hall (2005). Scale bar = 1 cm.
Figs. 12–13 in Description of the hitherto unknown female of Napaea joinvilea (Lepidoptera: Riodinidae: Mesosemiini), with a discussion on its taxonomic status
Figs. 12–13. Genitalia of Napaea joinvilea Hall & Harvey, 2005. 12. Male, lateral view. 13. Female, dorsal view. Scale bar = 0.25 mm.
Fig. 3 in An integrative taxonomic approach to reveal the status of the genus Pomphorhynchus Monticelli, 1905 (Acanthocephala: Pomphorhynchidae) in Austria
Fig. 3. Phylogenetic relationships between species of the genus Pomphorhynchus based on a 550 bp COI dataset. A. NJ tree showing uncorrected p-distances between species of the genus Pomphorhynchus. Bootstrap values (1000 replicates, in %) are shown next to the nodes. Clade names containing specimens examined in this study are colored in red and marked with an asterisk. The dataset includes sequences generated in this study and sequences obtained from NCBI GenBank. B. Medianjoining network of P. bosniacus. One frequent haplotype can be observed (n = 33). Most haplotypes are constituted of 1 sample (see legend), separated by one to two mutation steps from the main haplotype. Only two haplotypes including sequences from NCBI GenBank are separated by eight mutation steps from the main haplogroup. C. Median-joining network of P. laevis. Two different clades can be distinguished: a Western clade (dark green) and an Eastern clade (light green). Specimens of this study are represented in two separate haplotypes. D. Median-joining network of P. tereticollis. Four different haplogroups can be distinguished, indicated with dotted lines: 1. Specimens from France (Rhône) (NCBI GenBank), 2. Specimens from Northern Europe (NCBI GenBank), 3. Specimens from the Rhine and Carpathians (NCBI GenBank), including specimens of this study, 4. Specimens of this study. Mutation steps are indicated with vertical lines. Black dots represent haplotypes missing in the study sampling. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 1 in An integrative taxonomic approach to reveal the status of the genus Pomphorhynchus Monticelli, 1905 (Acanthocephala: Pomphorhynchidae) in Austria
Fig. 1. Map showing European rivers relevant for the present study. The study area in Austria is highlighted in grey. Localities of P. bosniacus are indicated as circle, the one of P. tereticollis as asterisk and the one of P. laevis as square. Different sizes are indicating higher or lower abundances.
Fig. 2 in An integrative taxonomic approach to reveal the status of the genus Pomphorhynchus Monticelli, 1905 (Acanthocephala: Pomphorhynchidae) in Austria
Fig. 2. Proboscis and longitudinal row of hook roots of the three determined Pomphorhynchus species. All images are volume rendering of the 3-D stacks. In volume rendering each grayscale value is assigned a color according to an arbitrary colormap. The depiction depends on which values and how transparent they are displayed. In the present images a glow color map is used, which assigns graded colors from black (background) to shades of red-orange-yellow. A. Volume rendering of a confocal laser scan image stack of the proboscis of P. tereticollis. B. Volume rendering of the sectioned proboscis of P. bosniacus including reconstructed hooks as surface rendering. C. Volume rendering of the sectioned proboscis of P. laevis including reconstructed hooks as surface rendering. D-F. Internal view of the sectioned proboscids including a single longitudinal row of hooks. D. P. tereticollis. E. P. bosniacus. F. P. laevis. Legend: Red arrow = last circle of hooks; green arrow = extensions on basal hook roots of P. tereticollis; blue arrow = basal hooks attached in the middle of hook roots of P. bosniacus; yellow arrow: lack of extensions on basal hook roots of P. laevis. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Telescopus finkeldeyi Haacke, 2013 DAMARA TIGER SNAKE Telescopus finkeldeyi Haacke 2013:281. Holotype: TM 53542 (collector J.A. van Rooyen). Type locality: "Rössing Uranium mine area, Swako- mund [sic] district (2214Db) Namibia." Global conservation status (IUCN): Not Evaluated. Global distribution: The species is known from Angola and Namibia. Ocurrences in Angola (Map 364): The species occurs in southwestern Angola. Namibe: "5 km north Namibé" [-15.20000, 12.15000] (Haacke 2013:285). Taxonomic and distributional notes: Some earlier records of T. semiannulatus polystictus in Namibia actually refer to this recently described species. MAP 364. Distribution of Telescopus finkeldeyi in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
Telescopus finkeldeyi Haacke, 2013 DAMARA TIGER SNAKE Telescopus finkeldeyi Haacke 2013:281. Holotype: TM 53542 (collector J.A. van Rooyen). Type locality: "Rössing Uranium mine area, Swako- mund [sic] district (2214Db) Namibia." Global conservation status (IUCN): Not Evaluated. Global distribution: The species is known from Angola and Namibia. Ocurrences in Angola (Map 364): The species occurs in southwestern Angola. Namibe: "5 km north Namibé" [-15.20000, 12.15000] (Haacke 2013:285). Taxonomic and distributional notes: Some earlier records of T. semiannulatus polystictus in Namibia actually refer to this recently described species. MAP 364. Distribution of Telescopus finkeldeyi in Angola.
Figure 12 in The taxonomic status of Pelidnota gounellei (Ohaus, 1908) and Pelidnota ludovici Ohaus, 1905 (Coleoptera: Scarabaeoidea: Melolonthidae)
Figure 12 Pelidnota ebenina (Blanchard, 1842): A-C, male (dorsal, lateral, ventral); D, male head (dorsal); E, male pygidium (frontal); F, male mouthparts (frontal); G, male labium (dorsal).
Figure 17 in The taxonomic status of Pelidnota gounellei (Ohaus, 1908) and Pelidnota ludovici Ohaus, 1905 (Coleoptera: Scarabaeoidea: Melolonthidae)
Figure 17 Pelidnota gounellei (Ohaus, 1908): male abdominal ventrite VI (dorsal); B, metatarsomere V and outer tarsal claw (lateral); C, spiculum gastrale (dorsal); D-G, parameres; D-E, dorsal; E, apex in detail; F, aedeagus (lateral); G, apex in detail.
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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.