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FIGURE 3 in An integrative taxonomy of Vescelia pieli pieli species complex based on morphology, genes and songs from China (Orthoptera: Grylloidea: Phalangopsidae: Phaloriinae)
FIGURE 3. Vescelia spp., live individuals and Holotype of V. pieli pieli. A: V. pieli monotonia (from Wuyishan, Fujian); B: V. pieli pieli (from Changjian, Hainan); C: V. dulcis (from Wuzhishan, Hainan); D: V. pieli pieli (Holotype).
Figs. 8 11 in Four species within the supercolonial ants of the Tapinoma nigerrimum complex revealed by integrative taxonomy (Hymenoptera: Formicidae)
Figs. 8 11: Tapinoma darioi sp.n. (8 10) Holotype worker. (8) Head in dorsal aspect; pubescence partially abraded. (9) Mesosoma in lateral aspect. (10) Clypeus in dorsofrontal aspect; pubescence partially abraded. (11) Paratype male from the holotype's nest: genital in ventral aspect.
Fig. 5 in Four species within the supercolonial ants of the Tapinoma nigerrimum complex revealed by integrative taxonomy (Hymenoptera: Formicidae)
Fig. 5: NCWard dendrogram of male nest samples of Tapinoma nigerrimum (black branches), T. darioi sp.n. (green), T. ibericum (red) and T. magnum (blue) considering seven NUMOBAT characters.
Fig. 4 in Four species within the supercolonial ants of the Tapinoma nigerrimum complex revealed by integrative taxonomy (Hymenoptera: Formicidae)
Fig. 4: NCWard dendrogram of worker nest samples of Tapinoma darioi sp.n. (red branches) and T. ibericum (black branches) considering 15 NUMOBAT characters. The classification error relative to the controlling LDA is here 1.4% whereas it is 0% and 6.6% in NCNMDSKmeans and NCKmeans clustering, respectively.
Fig. 3 in Four species within the supercolonial ants of the Tapinoma nigerrimum complex revealed by integrative taxonomy (Hymenoptera: Formicidae)
Fig. 3: NCWard dendrogram of worker nest samples of Tapinoma magnum (red branches) and ofT.darioi sp.n. plus T. ibericum (black branches) considering 15 NUMOBAT characters unselectively. The classification error relative to the controlling LDA is here as large as 5.0% whereas it is only 0.7% both in NCNMDSKmeans and NCKmeans clustering.
Fig. 7a in Four species within the supercolonial ants of the Tapinoma nigerrimum complex revealed by integrative taxonomy (Hymenoptera: Formicidae)
Fig. 7a: Map of all collecting sites of the NUMOBAT study. White discs = Tapinoma darioi sp.n. black discs = T. magnum, white triangles = T. nigerrimum, black triangles = T. ibericum. For a closeup view of heavily sampled areas see Fig. 7b. Fig. 7b: Map of samples used in the NUMOBAT study, showing the intensively sampled areas of France and Italy, as well as the Tapinoma dario sp.n. samples clustering with T. magnum in the mtDNA phylogenetic tree. Asterisk = T. darioi sp.n. with T. magnum COI; white discs = T. darioi sp.n., black discs = T. magnum, white triangles = T. nigerrimum.
Fig. 3 in Cryptic diversity, sympatry, and other integrative taxonomy scenarios in the Mexican Ceratozamia miqueliana complex (Zamiaceae)
Fig. 3 Leaflet variation at the population level. a Ceratozamia becerrae, La Pila. b Cerro Madrigal. c C. zoquorum, Cerro Blanco. d Agustín Rubio 1. e Agustín Rubio 2. f C. santillanii. g C. subroseophylla (variation in all populations). h C. miqueliana (variation in all populations). i C. euryphyllidia (variation in all populations)
Fig. 1 in Cryptic diversity, sympatry, and other integrative taxonomy scenarios in the Mexican Ceratozamia miqueliana complex (Zamiaceae)
Fig. 1 Distribution map of the species; inset: points 1 The Los Tuxtlas mountain range, 2 Uxpanapa-Chimalapas region, 3 Northern mountain range of Chiapas. The type localities for the species are represented by large figures
Fig. 1 in A short LSU rRNA fragment as a standard marker for integrative taxonomy in calcareous sponges (Porifera: Calcarea)
Fig. 1 Overview of the alignment and consensus of ITS sequences. For each specimen, 2–3 clones were sequenced
Fig. 3 Clathrina clathrus. a in Integrative taxonomy of four Clathrina species of the Adriatic Sea, with the first formal description of Clathrina rubra Sarà, 1958
Fig. 3 Clathrina clathrus. a. Sponge in situ. Scale bar=5 mm. b. Regular triactines. The actines are cylindrical, undulated at their distal part and with rounded tips. Scale bar=50 μm
Fig. 4 in Integrative taxonomy of four Clathrina species of the Adriatic Sea, with the first formal description of Clathrina rubra Sarà, 1958
Fig. 4 Clathrina cf. hondurensis. a. Sponge in situ attached to the basal part of Cystoseira crinita thallus. Scale bar=1 cm. b. Triactine. Conical actine (arrow) with sharp tip (arrowhead). Scale bar=50 μm
Fig. 5 Clathrina rubra. a in Integrative taxonomy of four Clathrina species of the Adriatic Sea, with the first formal description of Clathrina rubra Sarà, 1958
Fig. 5 Clathrina rubra. a. Sponge in situ attached to the basal part of Cystoseira crinita thallus. Scale bar=1 cm. b. Regular triactine. Actine with cylindrical actine (arrow) and the typical wide, rounded tip (arrowhead). Scale bar=50 μm. c. Parasagittal triactine. Scale bar=50 μm
Fig. 1 in Integrative taxonomy of four Clathrina species of the Adriatic Sea, with the first formal description of Clathrina rubra Sarà, 1958
Fig. 1 Bayesian majority-rule consensus tree based on concatenated ITS1-5.8S-ITS2 and partial 28S rDNA sequences. Bayesian posterior probabilities (when>0.80) are given above the branches and bootstrap values for maximum likelihood (ML) are given below the branches (when>70). Species obtained in this study are marked with bold
Fig. 8 in Integrated evidence sheds light on the taxonomy of the widespread Tantilla melanocephala species complex (Serpentes: Colubridae) and indicates the existence of a new species from southern South America
Fig. 8 Overview of South American Tantilla species. a T. selmae; b T. boipiranga; c T. melanocephala, Surinam pattern (above), Brazilian Cerrado pattern (middle), and transAndean pattern (bellow); d T. capistrata; e T. petersi. Illustrations by Lucas Kias
Fig. 4 in Integrated evidence sheds light on the taxonomy of the widespread Tantilla melanocephala species complex (Serpentes: Colubridae) and indicates the existence of a new species from southern South America
Fig. 4 Boxplots for selected variables based on the dataset D1, demonstrating the morphological differences among OTUs of the Tantilla melanocephala complex. Number of ventral scales in (a) females and (b) males; number of subcaudal scales in (c) females and (d) males. The thin (red) horizontal line within the box indicates the mean; the thick (black) horizontal line within the box indicates the median; the open circles are data points
Fig. 5 in Integrated evidence sheds light on the taxonomy of the widespread Tantilla melanocephala species complex (Serpentes: Colubridae) and indicates the existence of a new species from southern South America
Fig. 5 Specimens of Tantilla melanocephala complex from Brazil. a T. aff. melanocephala 1 from Bagé, RS, Brazil, IBSP 91713; b T. boipiranga from Morro do Pilar, MG, Brazil, IBSP 79060; c T. cf. melanocephala from Atibaia, SP, Brazil, IBSP 19376; d T. cf. melanocephala from Palmas, TO, Brazil, IBSP 65185; e T. cf. melanocephala from Aquidauana, MS, Brazil, IBSP 26757; f T. melanocephala from Belém, PA, Brazil, IBSP 15047
Fig. 7 in Integrated evidence sheds light on the taxonomy of the widespread Tantilla melanocephala species complex (Serpentes: Colubridae) and indicates the existence of a new species from southern South America
Fig. 7 Holotype of Tantilla selmae (IBSP 92724). Head views on the (a) dorsal, (b) right lateral, (c) left lateral, and (d) ventral. Body views on the (e) dorsal and (f) ventral. Horizontal scale bar: 2 mm. Vertical scale bar: 10 mm
Fig. 8 in Back from the deaf: integrative taxonomy revalidates an earless and mute species, Hylodes grandoculis van Lidth de Jeude, 1904, and confirms a new species of Pristimantis Jiménez de la Espada, 1870 (Anura: Strabomantidae) from the Eastern Guiana Shield
Fig. 8 Volumetric renderings of µ-CT scans of the skull (in lateral view) of the holotype of Pristimantis grandoculis (a; RMNH 4467), a specimen of P. grandoculis from Suriname (b; MNHN-RA-2020.0118), the holotype of P. marmoratus (c; BMNH 1947.2.16.92), and the holotype of P. crepitaculus sp. nov. (d; MNHN- RA-2020.0102). Absence/presence of columellae (highlighted in red) is pointed by a red arrow
Fig. 7 in Back from the deaf: integrative taxonomy revalidates an earless and mute species, Hylodes grandoculis van Lidth de Jeude, 1904, and confirms a new species of Pristimantis Jiménez de la Espada, 1870 (Anura: Strabomantidae) from the Eastern Guiana Shield
Fig. 7 Sonograms and oscil- lograms on a 0.7-s window of a characteristic call of Pristimantis crepitaculus sp. nov. from Oiapoque, Amapá, Brazil (paratype, MPEG 41823)
Fig. 6 in Back from the deaf: integrative taxonomy revalidates an earless and mute species, Hylodes grandoculis van Lidth de Jeude, 1904, and confirms a new species of Pristimantis Jiménez de la Espada, 1870 (Anura: Strabomantidae) from the Eastern Guiana Shield
Fig. 6 Volumetric renderings of µ-CT scans of the skeleton of the holotype of Pristimantis crepitaculus (MNHN-RA-2020.0102). a Full skeleton in dorsal (left), ventral (middle), and lateral (right) views. b Skull in dorsal (left), ventral (middle), and lateral (right) views. Columellae are highlighted in red. Abbreviations: ang—angulosplenial,
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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.