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Fig. 4 in More than meets no eyes: Taxonomic status of a Liotyphlops Peters, 1881 (Serpentes: Anomalepididae) blindsnake from the Atlantic Rainforest
Fig. 4. Maximum clade credibility Bayesian tree, based on the small subunit ribosomal RNA (16S rRNA) gene fragment, highlighting the divergence time of terminals. Bars represent the 95% Highest Posterior Density (HPD) interval for divergence dates. Scale indicates million years ago (Myr). Full topology and posterior probability support of nodes are provided as supplementary material. Analyses of species delimitation are: Bayesian Poisson Tree Process (bPTP); Poisson Tree Process (PTP); Assemble Species by Automatic Partitioning (ASAP); Generalized Mixed Yule Coalescent (GMYC). Inset photograph: Liotyphlops aff. wilderi from Minas Gerais, Brazil. Photograph credits: Henrique C. Costa.
FIGURE 2 in Taxonomic status and typification of the neglected name Calamagrostis vinealis (Poaceae, Agrostidinae)
FIGURE 2. Scatter plots of measured individuals against selected pairs of variables for Calamagrostis arundinacea (circles), C. epigejos (squares) and their hybrid C. ×acutiflora (asterisks). A. The awn length (mm, AL) against the callus hair length (mm, CHL). B. The ratio of lemma and lower glume length (LL/LGL) against the ratio of callus hairs and lemma length (CHL/LL). Abbreviations: 1 ‒ lectotype of Calamagrostis vinealis, P (P02142817)—left-hand specimen on sheet, 2 ‒ right-hand specimen on sheet (P02142817).
FIGURE 2 in Implications of combined taxonomic, morphometric, and molecular characteristics for the species status of Paracentrobia tapajosae and Paracentrobia subflava (Hymenoptera: Trichogrammatidae), egg parasitoids of different leafhopper hosts in the Americas
FIGURE 2. Forewings of Paracentrobia. Paracentrobia tapajosae from Tapajosa rubromarginata, Argentina, A) female and B) male. Paracentrobia tapajosae from Dalbulus maidis, Argentina, C) female and D) male. Paracentrobia subflava from Dalbulus maidis, Mexico, E) female and F) Male.
FIGURE 3 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)
FIGURE 3. Bayesian-inferenced topology of Pelophylax species, based on four partial mitochondrial DNA sequences (12s rRNA, 16s rRNA, COI, and cytb). Bayesian posterior probabilities and bootstrap supports values occur at the nodes, respectively. * topotype of "P. tenggerensis"; # topotype of P. mongolicus comb. nov.
FIGURE 6 in The taxonomic status of Nectomys saturatus Thomas, 1897 (Cricetidae: Sigmodontinae)
FIGURE 6. The skin of Nectomys saturatus. Dorsal, ventral and lateral view of the skin of N. saturatus holotype BMNH 97.11.7.40. Courtesy of the Trustees of the Natural History Museum, London. The bar represents 100 mm.
FIGURE 3 in Rediscovery, taxonomic status, and phylogenetic relationships of two rare and endemic snakes (Serpentes: Psammophiinae) from the southwestern Angolan plateau
FIGURE 3. Psammophis ansorgii NB 560, Tundavala montane grassland, Huíla province; A: whole body dorsal coloration showing the characteristic reddish brown body; B: Lateral view of head showing scalation and distinctive ivory-coloured pre- and postoculars and dark-edged, pale upper labial stripe; C: Habitat—montane grasslands, Tundavala, Huíla Province; D: Illustration from Boulenger's (1905) description of P. ansorgii showing uniform body coloration, and pale upper labial stripe and pale pre- and postoculars. All photos by N. Baptista.
FIGURE 1 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands
FIGURE 1. Map showing geographic locations of specimens of Dipturus chilensis (diamonds) and D. lamillai sp. nov. (triangles) for which NADH2 sequence data were generated.
FIGURE 8 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands
FIGURE 8. Adult specimens of Dipturus lamillai sp. nov.: (A, C) Dorsal view of head and oro-nasal area of male holotype (MNHNCL ICT 7531; FA-46), respectively. (B, D) Dorsal view of head and oro-nasal area of female paratype (MNHNCL ICT 7532; FA-47), respectively.
FIGURE 3 in Morphological and molecular characterization of Xyo pseudohystrix Travassos & Kloss, 1958 (Nematoda: Oxyuridomorpha: Hystrignathidae) from Odontotaenius disjunctus (Illiger, 1800) (Coleoptera: Passalidae) from USA and discussion on its taxonomic status
FIGURE 3. Maximum likelihood (ML) tree inferred from: A. D2-D3 LSU rDNA and B. concatenated dataset of the D2-D3 LSU rDNA and the SSU rDNA for several species of the superfamily Thelastomatoidea (Nematoda: Oxyuridomorpha). Cameronia multiovata (Thelastomatidae) and three species of Travassosinema (Travassosinematidae) were used as outgroup taxa. Values at the nodes correspond to bootstrap resampling (≥70)/posterior probability (≥0.90).
FIGURE 2 in Morphological and molecular characterization of Xyo pseudohystrix Travassos & Kloss, 1958 (Nematoda: Oxyuridomorpha: Hystrignathidae) from Odontotaenius disjunctus (Illiger, 1800) (Coleoptera: Passalidae) from USA and discussion on its taxonomic status
FIGURE 2. Xyo pseudohystrix Travassos & Kloss, 1958 incertae sedis (Nematoda: Oxyuridomorpha: Hystrignathidae). Female. SEM images. A. Habitus, lateral view. B. Cervical region, lateral view. C. Tail, ventral view. D. Cephalic end, en face view. E. Cephalic end, lateral view. F. Spines at the midpoint of the spiny region. G. Spines at the end of the spiny region. Scale bars: A. 500 µm. B. 300 µm. C. 200 µm. D. 30 µm. E, G. 50 µm. F. 20 µm.
Fig. 1 in A phylogeny of softshell turtles (Testudines: Trionychidae) with reference to the taxonomic status of the critically endangered, giant softshell turtle, Rafetus swinhoei
Fig. 1 River systems where Rafetus swinhoei has been recorded. Locations of the type specimen and Vietnam's samples used in this study are shown in yellow and red, respectively
Fig. 7 in The genus Platytyphlops (Cumacea: Crustacea): A new species from Argentina, taxonomic status of Platytyphlops orbicularis (Calman, 1905), and remarks on the genus
Fig. 7. Platytyphlops orbicularis (Calman, 1905). Adult male (MACN-In. 44073a): A. Cephalothorax in dorsal view; B. First antenna; C. last thoracic segment and fifth pereopod (fourth pereopod broken), arrow points penial papilla. D. last two pleonites, telson and uropods. Subadult female (MACN-In. 44073c): E. carapace and first two free thoracic segments, in dorsal view. Scale bars: A, E, 3 mm; C, D, 1 mm; B, 0.5 mm.
FIGURE 3 in Taxonomic status of Pseudopaludicola riopiedadensis Mercadal de Barrio and Barrio, 1994 (Anura, Leptodactylidae, Leiuperinae)
FIGURE 3. Lateral view of the head. (A) Pseudopaludicola ternetzi Lectotype (MNRJ 5462); (B) Pseudopaludicola riopiedadensis Holotype (MACN 2599). Tarsal fold (arrows) of P. ternetzi IIBP 896, (C), and Paralectotype, MNRJ 5460 (E); P. riopiedadensis, DZSJRP 1014 (D), and Holotype, MACN 2599 (E). Scale bar 5 milimeters.
FIGURE 1 in Taxonomic status of Pseudopaludicola riopiedadensis Mercadal de Barrio and Barrio, 1994 (Anura, Leptodactylidae, Leiuperinae)
FIGURE 1. Distribution map of P. ternetzi (open square) showing the type locality, Uruaçu, Goiás, Brazil (solid square), and P. riopiedadensis type locality (solid triangle).
FIGURE 1 in Taxonomic status of Anolis baccatus Bocourt 1873 (Reptilia, Squamata, Polychrotidae)
FIGURE 1. Holotype of Anolis baccatus (MNHN 1126; 39.2 mm SVL). Scale bar = 1 cm. Photos by S. Tränkner.
FIGURE 5 in Taxonomic status of Akodon oenos (Rodentia, Sigmodontinae), an obscure species from West Central Argentina
FIGURE 5. Upper molar left series comparison among Akodon species: a. CNP 1897 (A. oenos; Llancanelo Natural Reserve, Mendoza); b. CNP 2352 (A. oenos, topotype; La Pega, Mendoza); c. CNP 1491 (A. spegazzinii, Carapunco, Tucumán); d. CNP 2384 (A. molinae, Chos Malal, Neuquén); e. CNP 2346 (A. neocenus, topotype; Neuquén, Neuquén). Scale = 1 mm.
FIGURE 2 in On the taxonomic status of the Brazilian mouse Calomys anoblepas Winge, 1887 (Mammalia, Rodentia, Cricetidae)
FIGURE 2. Detailed comparisons involving Calomys anoblepas (left column), Juliomys (middle column; J. pictipes, CM 2762), and Wilfredomys (right column; W. oenax, CNP 2378): zygomatic plate (upper row) and interorbital (lower row) regions. The white arrow indicates the upper free border that characterize the zygomatic plate in Wilfredomys; the black right angle highlights the scarce development of the zygomatic notch shared by anoblepas and Juliomys. Abbreviations: fr = frontal, fs = fontanella slit, in = incisor, na = nasal, pm = premaxillary, za = zygomatic arch, zn = zygomatic notch, zp = zygomatic plate. Not scaled.
FIGURE 1 in On the taxonomic status of the Brazilian mouse Calomys anoblepas Winge, 1887 (Mammalia, Rodentia, Cricetidae)
FIGURE 1. Holotype of Calomys anoblepas Winge, 1887 (Minas Gerais, Brazil; ZMUC): An anterior part of the skull in dorsal (top left), ventral (bottom left), right lateral (top right), and left lateral (bottom right); below, original label (inset left) handwrite by H. Winge with the indication that this material was illustrated ("tegnet" in Danish) and original illustration (inset right) of C. anoblepas from Winge (1887:III, fig. 4). Scale = 5 mm.
FIG. 16. 16 in On the taxonomic status and biogeography of the Isolapotamidae Bott, 1970 (Decapoda, Brachyura)
FIG. 16. 16. (a–c) Takpotamon maesotense: habitus and gonopod 1 (RMNH 41617). (a) Habitus, dorsal; (b) left gonopod 1, ventral view; (c) left gonopod 1, dorsal view. Scale bars: (a) 1 cm; (b, c) 1 mm.
FIG. 18 in On the taxonomic status and biogeography of the Isolapotamidae Bott, 1970 (Decapoda, Brachyura)
FIG. 18. (a–c) Dromtelphusa longipes: habitus and gonopod 1 (lectotype MNHN BP 220). (a) Habitus, dorsal; (b) left gonopod 1, ventral view; (c) left gonopod 1, dorsal view. Scale bars: (a) 1 cm; (b, c) 1 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.