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FIGURE 8 in A re-appraisal of the widely-distributed freshwater crab genus Sinopotamon Bott, 1967, from China, with establishment of a new genus (Crustacea: Decapoda: Potamidae)
FIGURE 8. Natural position of male G1s and tubercles of abdominal lock (arrowed) of species of Longpotamon. A, L. decrescentum, CW 48.5 mm, CAS CB11314; B, L. denticulatum, CW 38.9 mm, CAS CB05855; C, L. honanense, CW 39.6 mm, CAS CB07135; D, L. jixiense, CW 34.3 mm, CAS CB07621; E, L. kenliense, holotype, CW 46.8 mm, CAS CB00334; F, L. parvum, holotype, CW 24.6 mm, CAS CB00367; G, L. shaoyangense, CW 31.2 mm, CAS CB08588; H, L. siguqiaoense, CW 33.9 mm, CAS CB09224; I, L. styxum, CW 44.4 mm, CAS CB08770.
FIGURE 3. Jaw piece dissected from Namanereis hummelincki USNM 1283368 in A new record of the freshwater polychaete Namanereis hummelincki (Polychaeta: Nereididae) from epigean waters of Montserrat
FIGURE 3. Jaw piece dissected from Namanereis hummelincki USNM 1283368, ventromedial view. (Note the protrusion slightly proximal to the jaw's terminal bifurcation.)
FIGURE 1 in A new record of the freshwater polychaete Namanereis hummelincki (Polychaeta: Nereididae) from epigean waters of Montserrat
FIGURE 1. Montserrat and its major drainages. The two collection sites mentioned in this paper are marked by small dots along the Nantes River.
FIGURE 4 in A new record of the freshwater polychaete Namanereis hummelincki (Polychaeta: Nereididae) from epigean waters of Montserrat
FIGURE 4. Neighbor-Joining phylogenetic tree of Namanereis hummelincki (USNM 1283368) from Montserrat and similar sequences. The evolutionary history was inferred using the Neighbor-Joining method (Saitou & Nei 1987) The optimal tree with the sum of branch length = 0.66065705 is shown. The percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) are shown next to the branches (Felsenstein 1985). The tree is drawn to scale, with branch lengths in the same units as those of the evolutionary distances used to infer the phylogenetic tree. The evolutionary distances were computed using the p-distance method (Nei & Kumar 2000) and are in the units of the number of base differences per site. The analysis involved 11 nucleotide sequences. Codon positions included were 1st+2nd+3rd+Noncoding. All positions containing gaps and missing data were eliminated. There were a total of 585 positions in the final dataset. Evolutionary analyses were conducted in MEGA6 (Tamura et al. 2013).
FIGURE 6. Serrapinnus kriegi, UFRGS 20135, 20.2 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 6. Serrapinnus kriegi, UFRGS 20135, 20.2 mm SL, rio Ibicuí, tributary of the rio Uruguay; new record for the state of Rio Grande do Sul.
FIGURE 14 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 14. Approximate localities of collection of expeditions made in the second half of the XIX Century and beginning of XX Century in Rio Grande do Sul State: Reinhold F. Hensel (1863-1866, pink); Emperor Dom Pedro II (1865-1866, red); Herman von Ihering (1880-1892, blue); Herbert H. Smith (1882, green); John D. Haseman (1909, yellow); Ernst Garbe (1914, black); Herman Kleerekoper (1941, white).
FIGURE 12 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 12. Cumulative number of fish species known to occur in Rio Grande do Sul State grouped by decade according to the year of description.
FIGURE 9 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 9. Total number of species and new species per hydrographic basin, Rio Grande do Sul State, Brazil.
FIGURE 2 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 2. Sampling localities of fishes in the Rio Grande do Sul State catalogued and georeferenced in the collections of the Museu de Ciências Naturais, Fundação Zoobotânica do Rio Grande do Sul (MCN), Museu de Ciências e Tecnologia, Pontifícia Universidade Católica do Rio Grande do Sul (MCP), and Departamento de Zoologia, Universidade Federal do Rio Grande do Sul (UFRGS).
FIGURE 13 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 13. Maximum, mean and minimum body size (standard length in mm) of species known to occur in Rio Grande do Sul State, grouped by decade according to the year of description.
FIGURE 5 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 5. Ctenobrycon cf. alleni, UFRGS 20147, 42.3 mm SL, rio Ibicuí, tributary of the rio Uruguay; new record for the state of Rio Grande do Sul.
FIGURE 8 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 8. Number of species by hydrographic basin, Rio Grande do Sul State. RU = rio Uruguay and rio Negro, LP = Laguna dos Patos system, TR = rio Tramandaí and rio Mampituba. Species that occur concomitantly in the rio Uruguay and Laguna dos Patos (RU+LP), Laguna dos Patos and rio Tramandaí (LP+TR) or in all three drainages are counted separately.
FIGURE 11 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 11. Density of fish lots per square kilometer for each Brazilian state catalogued in fish collections available at speciesLink database. Graph represents data for the three richest families in the Neotropics (Characidae, Loricariidae, and Cichlidae).
FIGURE 1 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 1. Rio Grande do Sul State (limited by a light gray background in detail and green in the map of South America), showing the drainages of the rio Uruguay (black), rio Negro (light brown), Laguna dos Patos (blue), arroio Chuí (light green), rio Tramandaí (green), rio Mampituba (red), and rio Araranguá (purple). These drainages are grouped in the following ecoregions according to Abell et al. (2008): upper rio Uruguay ecoregion (1—upper portion of rio Uruguay limited by the Salto do Yucumã water fall at 27 o 08'34"S 53 o 53'10"W, represented by a black vertical bar); lower rio Uruguay ecoregion (2—middle and 3—lower portions of rio Uruguay and the rio Negro); Laguna dos Patos ecoregion (4—rio Jacuí, 5—Laguna dos Patos, 6— lagoa Mirim, and arroio Chuí); and Tramandaí-Mampituba ecoregion (rio Tramandaí, rio Mampituba and rio Araranguá).
FIGURE 3 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 3. Relative number of freshwater fish species per order in the Rio Grande do Sul State, Brazil.
FIGURE 10 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 10. Relative frequency of fish species from Rio Grande do Sul State per class of body size (standard length in mm).
FIGURE 7. Hyphessobrycon aff. griemi, UFRGS 17529, 24.3 in Inventory of the freshwater fishes from a densely collected area in South America — a case study of the current knowledge of Neotropical fish diversity
FIGURE 7. Hyphessobrycon aff. griemi, UFRGS 17529, 24.3 mm SL, tributary stream of the rio das Pacas, rio Mampituba basin; new record for the state of Rio Grande do Sul.
FIGURE 2 in A new species of semi-terrestrial freshwater crab (Crustacea: Decapoda: Brachyura: Potamidae) from the Central Highlands of Vietnam
FIGURE 2. Rathbunamon chumomrayense sp. nov., holotype, male (CW 23.0 mm), IEBR-FC KCx01. A, carapace, dorsal view; B, frontal view; C, ventral view; D, sternoabdominal cavity showing G1s and G2s.
FIGURE 5 in A new species of freshwater turtle of the genus Elseya (Testudinata: Pleurodira: Chelidae) from the Northern Territory of Australia
FIGURE 5. Lateral, Dorsal and Ventral views of the skull of Elseya flaviventralis. See Thomson et al. 2015; 2006 for comparative skulls of other Elseya species.
FIGURE 2 in A new species of freshwater turtle of the genus Elseya (Testudinata: Pleurodira: Chelidae) from the Northern Territory of Australia
FIGURE 2. Dorsal and lateral views of the holotype of Elseya (Elseya) flaviventralis NTM 13512, adult female from Pine Creek Crossing, South Alligator River Drainage, Kakadu National Park, Northern Territory, Australia. 13° 30' S 132° 28' E. The plastron has been disarticulated. Note the uniform coloration of the plastron, free from darker streaks and blotches, and the indistinct angle between the bridge and the plastron. Scale 10 mm.
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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)
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.