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FIGURE 1 in The taxonomic status of Oligoryzomys brendae Massoia, 1998 (Rodentia, Cricetidae), with comments on the availability of this name
FIGURE 1. Maximum likelihood tree (ln = -6500.1432) resulting from the analysis of cytochrome b gene sequences of Oligoryzomys species. Numbers indicate bootstrap values of the adjacent node retrieved in the maximum likelihood (left to the diagonal) and maximum parsimony (right to the diagonal) analyses. A less-than sign (<) indicates that the given clade receives less than 50 % of Bootstrap either in the ML and/or MP analyses. A dash (-) indicates that in the MP analysis that clade was not recovered. GenBank accession numbers of analyzed sequences are included at terminal labels; in addition, specimen numbers are provided for O. brendae.
FIGURE 3 in The taxonomic status of Oligoryzomys brendae Massoia, 1998 (Rodentia, Cricetidae), with comments on the availability of this name
FIGURE 3. Dorsal, ventral and lateral views of the skull and labial view of the mandible of two specimens of Oligoryzomys brendae (a, holotype, CEM 482; b, JPJ 622). Scale = 10 mm.
FIGURE 2 in The taxonomic status of Oligoryzomys brendae Massoia, 1998 (Rodentia, Cricetidae), with comments on the availability of this name
FIGURE 2. Specimen scores of individuals of Oligoryzomys (age class 2) for principal components 1 and 2 extracted from a variance-covariance matrix of 12 craniodental distances (see Table 1). Symbols are: squares = O. brendae; circles: O. flavescens. Abreviations: h = holotype of O. brendae (CEM 482); p = paratype of O. brendae (CEM 482).
FIGURE 5 in The taxonomic status of Oligoryzomys brendae Massoia, 1998 (Rodentia, Cricetidae), with comments on the availability of this name
FIGURE 5. Left: partial map of northwestern Argentina where collection localities of specimens of Oligoryzomys brendae included in the phylogenetic analysis are shown (circles). Right: partial map of South America showing the distribution of Oligoryzomys destructor as understood previously to this study (see text); squares correspond to collection localities of individuals associated to O. destructor and of O. brendae used in the phylogenetic analysis; stars signal the type localities of taxa associated to destructor (i.e., spodirus, maranonicus, stolzmanni, melanostoma, and destructor) and of O. brendae. A simplified version of the most likely tree (see Fig. 1) is superimposed in the map; the only branches signalling recording localities (indicated with squares) are those leading to destructor and brendae.
FIGURE 4 in On the taxonomic status of Phlebotomus breviductus Barretto, 1950 (Diptera: Psychodidae: Phlebotominae)
FIGURE 4. Part of the head of the male holotype of Phlebotomus breviductus Barretto, 1950. The white arrow indicates the palpus V below the mouthparts.
FIGURE 3. A in On the taxonomic status of Phlebotomus breviductus Barretto, 1950 (Diptera: Psychodidae: Phlebotominae)
FIGURE 3. A. Wing of the holotype of Phlebotomus breviductus (= Trichopygomyia sp.) (Bar =200µm); B. Terminalia of the holotype of Phlebotomus breviductus (= Nyssomyia umbratilis); C. gonostylus; D. aedeagus. Scale bar = 100µm.
FIGURE 2 in On the taxonomic status of Phlebotomus breviductus Barretto, 1950 (Diptera: Psychodidae: Phlebotominae)
FIGURE 2. Palpi and flagellomeres of Phlebotomus breviductus (= Trichopygomyia sp.) A. palpus I and II; B. palpus III; C. flagellomere IX; D. flagellomere X; E. flagellomere XI; F. flagellomere XII; G. flagellomeres XIII and XIV. Scale bar = 100µm.
FIGURE 1 in On the taxonomic status of Phlebotomus breviductus Barretto, 1950 (Diptera: Psychodidae: Phlebotominae)
FIGURE 1. Head of the male holotype of Phlebotomus breviductus (= Trichopygomyia sp.) Scale bar = 100µm.
FIGURES 1–4 in Taxonomic status of Cyrtoscydmus described by C. Schaufuss from the Philippines (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 1–4. Euconnus fundaebraccatus (C. Schaufuss) (1, 2) and Euconnus manillae (C. Schaufuss) (2). Dorsal habitus of lectotype males (1, 3) and their original sets of labels (2, 4).
FIGURE 3 in Molecular evidence for taxonomic status of the gudgeon genus Huigobio Fang, 1938 (Teleostei: Cypriniformes), with a description of a new species from Guangdong Province, South China
FIGURE 3. Map showing localities of Huigobio exilicauda examined. Black square = type locality; black circles = other collections.
FIGURE 2. Huigobio exilicauda, IHB 76IV7485 in Molecular evidence for taxonomic status of the gudgeon genus Huigobio Fang, 1938 (Teleostei: Cypriniformes), with a description of a new species from Guangdong Province, South China
FIGURE 2. Huigobio exilicauda, IHB 76IV7485, holotype, 65.8 mm SL; China, Guangdong Province, Lianping County, tributary of upper Pearl River.
FIGURE 1 in Molecular evidence for taxonomic status of the gudgeon genus Huigobio Fang, 1938 (Teleostei: Cypriniformes), with a description of a new species from Guangdong Province, South China
FIGURE 1. Ventral view of oromandibular structures in: (A) Huigobio exilicauda, IHB 76IV6232, 66.7 mm SL; South China: Guangdong Province: a tributary of upper Pearl River at Lechang City; (B) Huigobio chenhsienensis, IHB 74IX4610, 79.4 mm SL; South China: Zhejiang Province: Ling-Jiang basin at Xianju County; (C) Microphysogobio nudiventris, IHB 2011040304, 64.7 mm SL; South China: Hubei Province: Du-He, a tributary flowing into the Han-Jiang basin at Zhushan County; (D) Platysmacheilus exiguus, IHB 87V057, 117.2 mm SL; South China: Guizhou Province: Qingshui-Jiang at Kaili City; (E) Pseudogobio vaillanti, IHB 81VII1308, 108.7 mm SL; South China: Henan Province: Bai-He basin at Xinye County; (F) Abbottina rivularis, IHB 77VI2736, 69.6 mm SL; West China: Gansu Province: Beida-He basin at Jiuquan City. Abbreviations: cp = central pad; lj = lower jaw; ll = lateral lobe of lower lip; rc= rostral cap; uj = upper jaw; ul = upper lip.
FIGURE 4. Bayesian inference tree derived from cyt b in Molecular evidence for taxonomic status of the gudgeon genus Huigobio Fang, 1938 (Teleostei: Cypriniformes), with a description of a new species from Guangdong Province, South China
FIGURE 4. Bayesian inference tree derived from cyt b gene for the Armatogobionina of the subfamily Gobioninae. Nodal numbers are posterior probability values. Only values above 50% are given.
FIGURE 5. Acutihumerus patagoniensis. A, male II in Acutihumerus patagoniensis (Sieg, 1986) (Tanaidacea: Kalliapseudidae): supplementary description and remarks on its taxonomic status
FIGURE 5. Acutihumerus patagoniensis. A, male II carapace and first pereonite in dorsal view (MACN-In. 39641c); B, male III pereonites 6–7 and pleonites 1–2 (MACN-In. 39641g); C, male III pleonites 1–5 in lateral view (MACN-In. 39641h); D–F, cephalothoracic hyposphenium of a female with rudimentary oostegites (MACN-In. 39641i), a male II (MACN-In. 39641j), and a male III (MACN-In. 39641k), respectively. Abbreviations: acp, anterior crest projection; ap, acute projection; ph, pleonal hook-like teeth; pcp, posterior crest projection; P, pereonite; pe, penis; Pl, pleonite. Scale bars: A–C: 0.5 mm; D–F: 0.2 mm (D–F, share the same scale).
FIGURE 4 in Acutihumerus patagoniensis (Sieg, 1986) (Tanaidacea: Kalliapseudidae): supplementary description and remarks on its taxonomic status
FIGURE 4. Acutihumerus patagoniensis. Gradual changes of the fixed finger and apophysis over a growing series. The propodus distal outlines were transferred from the preceding figure, and all adjusted to the same scale. The vertical bars indicate the propodus-dactylus inner articulation. Scale bar: 0.2 mm.
FIGURE 1 in Acutihumerus patagoniensis (Sieg, 1986) (Tanaidacea: Kalliapseudidae): supplementary description and remarks on its taxonomic status
FIGURE 1. Map showing the distribution of the genus Acutihumerus. Open triangles: material studied in this paper. Black circles: type localities of A. cavooreni, A. patagoniensis and A. petronius. Open squares: previous records of A. cavooreni from Ubatuba (Drumm & Heard, 2011) and Caraguatatuba (Miranda, 2010); RP: Río de la Plata.
FIGURE 3. Acutihumerus patagoniensis. A in Acutihumerus patagoniensis (Sieg, 1986) (Tanaidacea: Kalliapseudidae): supplementary description and remarks on its taxonomic status
FIGURE 3. Acutihumerus patagoniensis. A, juvenile female cheliped (MACN-In. 39641e); B, juvenile male cheliped (MACN-In. 39641a); C, male I chela (MACN-In. 39641b); D, male II chela (MACN-In. 39641c); E, male III cheliped (MACN-In. 39641d). In all figures the outer surface is shown. Scale bars: 0.2 mm.
FIGURE 2 in Acutihumerus patagoniensis (Sieg, 1986) (Tanaidacea: Kalliapseudidae): supplementary description and remarks on its taxonomic status
FIGURE 2. Acutihumerus patagoniensis. Measurements of the male chela. Abbreviations: a, apophysis; ff, fixed finger; rt, robust tooth; usn, U-shaped notch.
FIGURE 1. Time-calibrated phylogeny including 101 taxa built using program BEAST v1.7.5 in The phylogenetIc posItIon and taxonomIc status of the RaInbow Tree Snake Gonyophis margaritatus (Peters, 1871) (Squamata: ColubrIdae)
FIGURE 1. Time-calibrated phylogeny including 101 taxa built using program BEAST v1.7.5 (Drummond et al. 2012) with node support values representing posterior probability (left) and bootstrap support (right) from inferred Maximum Likelihood tree. Dashes for bootstrap values indicate low support or not supported by ML tree. Family Colubridae and subfamily Colubrinea are highlighted by red arrows. Taxa in genera Gonyosoma, Rhadinophis, Gonyophis, and Rhynchophis are highlighted in the red square on the tree.
FIGURE 3 in Taxonomic status of Podabrus albocaudatus Krefft, 1872 and declaration of Sminthopsis granulipes Troughton, 1932 (Marsupialia: Dasyuridae) as a protected name for the White-tailed Dunnart from Western Australia
FIGURE 3. Holotype alcoholic body of Sminthopsis granulipes, PA.669, with metal registration tag attached to right manus. Scale rule in cms. (Photo: Anja Divljan).
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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.