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1,287 results for “species identity”
Figure 15 from: Murphy R, Berry K, Edwards T, Leviton A, Lathrop A, Riedle J (2011) The dazed and confused identity of Agassiz's land tortoise, Gopherus agassizii (Testudines: Testudinidae) with the description of a new species and its consequences for conservation. ZooKeys 113: 39-71. https://doi.org/10.3897/zookeys.113.1353
Figure 15 - Detailed view of the anal scutes of the holotype of Gopherus morafkai, CAS 33867.
Figure 12 from: Murphy R, Berry K, Edwards T, Leviton A, Lathrop A, Riedle J (2011) The dazed and confused identity of Agassiz's land tortoise, Gopherus agassizii (Testudines: Testudinidae) with the description of a new species and its consequences for conservation. ZooKeys 113: 39-71. https://doi.org/10.3897/zookeys.113.1353
Figure 12 - Posterior view of the holotype of Gopherus morafkai, CAS 33867.
Single-cell RNA sequencing reveals the mesangial identity and species diversity of glomerular cell transcriptomes
GEO Series GSE160048. Homo sapiens; Mus musculus. 3222 samples. Type: Expression profiling by high throughput sequencing.
microRNA-196 regulates vertebral number and identity across species
GEO Series GSE53018. Mus musculus. 44 samples. Type: Expression profiling by high throughput sequencing.
FIGURE 8 in The identities of three species of Parahelice Sakai, Türkay & Yang, 2006 (Crustacea: Brachyura: Varunidae) from the western Pacific, based on morphological and molecular evidence
FIGURE 8 Bayesian inference (BI) tree for species of Parahelice and Pseudohelice subquadrata (Dana, 1851) from the West Pacific, based on the cytochrome c oxidase subunit I (COI) gene. Probability values at the nodes represent support values for BI and maximum likelihood (ML) analyses. For haplotype names, see Table 1.
FIGURE 2 in The identities of three species of Parahelice Sakai, Türkay & Yang, 2006 (Crustacea: Brachyura: Varunidae) from the western Pacific, based on morphological and molecular evidence
FIGURE 2. Parahelice daviei Sakai, Türkay & Yang, 2006. A–C, E–H, ♂ (12.0 × 9.7 mm, NCHUZOOL 15670); D, I, ♀ (13.2 × 10.6 mm, NMMBCD 4049). A, carapace; B, outer view of male right cheliped; C, left male infraorbital ridge; D, left female infraorbital ridge; E, F, dorsal view of right G1; G, H, ventral view of right G1; I, right vulva. Scale bars: A–D, 1.0 mm; E–I, 0.5 mm.
FIGURE 4 in The identities of three species of Parahelice Sakai, Türkay & Yang, 2006 (Crustacea: Brachyura: Varunidae) from the western Pacific, based on morphological and molecular evidence
FIGURE 4. Parahelice pilimana (A. Milne-Edwards, 1873). A–C, E–H, ♂ (10.4 × 8.6 mm, NCHUZOOL 15666); D, I, ♀ (10.7 × 8.9 mm, NCHUZOOL 15668). A, carapace; B, outer view of male left cheliped; C, male left infraorbital ridge; D, female left infraorbital ridge; E, F, dorsal view of right G1; G, H, ventral view of right G1; I, right vulva. Scale bars: A–D, 1.0 mm; E–I, 0.5 mm.
FIGURE 3 in The identities of three species of Parahelice Sakai, Türkay & Yang, 2006 (Crustacea: Brachyura: Varunidae) from the western Pacific, based on morphological and molecular evidence
FIGURE 3. Parahelice pilimana (A. Milne-Edwards, 1873). A, dorsal view of male; B, ventral view of male; C, chela of male; D, chela of female. A–C, ♂ (CW 10.4 mm), D, ♀ (CW 10.7 mm) (NCHUZOOL 15666; Baoli R. estuary, Pingtung, Taiwan). Scale bars: 2.0 mm.
FIGURES 8, 9 in Three new species of the millipede genus Catharosoma Silvestri, 1897 from southern Brazil, with new records and a clarified identity of Catharosoma intermedium (Carl, 1902) (Diplopoda: Polydesmida: Paradoxosomatidae)
FIGURES 8, 9. Catharosoma intermedium, male (MCN-575), left gonopod. 8, Medial view. 9, Ventromedial view. Abbreviations: pf = prefemoral, fe = femorite and psf = postfemoral; p = parabasal lobe; sph = solenophore. Scale bar: 0.5 mm.
FIGURES 4–7. Catharosoma intermedium. 4 in Three new species of the millipede genus Catharosoma Silvestri, 1897 from southern Brazil, with new records and a clarified identity of Catharosoma intermedium (Carl, 1902) (Diplopoda: Polydesmida: Paradoxosomatidae)
FIGURES 4–7. Catharosoma intermedium. 4, Male (MCN-575), gonopod, ventral view. 5–7, Variations in parabasal lobe of solenophore. 5, Male (MCN-575). 6, Male (MCN-227). 7, Male (MCN-669). Scale bars: 0.1 mm (4), 0.01 mm (5–7).
Subspecies and Distribution. . b. borneensis Meters, 1861 — Borneo, as well as nearby Banggi, Labuan, and Karimata Is. R. b. importunus Chasen, 1939 — C & SWJava, including Nusakambanagan I off S Java. . b. spadix G. S. Miller, 1901 — South Natuna Is. Taxonomic identity of specimens collected in NW Peninsular Malaysia is uncertain. Also, either this species or the Sulawesi Horseshoe Bat (. celebensis) was recently captured in Lampung Province, Sumatra, but in that study the two species were not differentiated. in Rhinolophidae
Subspecies and Distribution. . b. borneensis Meters, 1861 — Borneo, as well as nearby Banggi, Labuan, and Karimata Is. R. b. importunus Chasen, 1939 — C & SWJava, including Nusakambanagan I off S Java. . b. spadix G. S. Miller, 1901 — South Natuna Is. Taxonomic identity of specimens collected in NW Peninsular Malaysia is uncertain. Also, either this species or the Sulawesi Horseshoe Bat (. celebensis) was recently captured in Lampung Province, Sumatra, but in that study the two species were not differentiated.
FIGURE 1. Helicotylenchus minzi Sher, 1966 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 1. Helicotylenchus minzi Sher, 1966. Female: A: Neck. B: Female reproductive system. C–E: Anterior end of female (stoma and DGO). F: Habitus of the female. G–H: Female posterior end. I: Male posterior end.
FIGURE 6 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 6. MrBayes tree generated using Helicotylenchus sequences from GenBank and newly sequenced populations from Iran based on the 28S rDNA gene.
FIGURE 6 in Rectifying the identities of the males of two Micrathena species (Araneae Araneidae), with report of the first case of intersexuality in the genus
FIGURE 6. Micrathena lata, male from Argentina, Misiones (MACN-Ar 3866). A, habitus dorsal. B, habitus lateral. C–G, left palp. C, prolateral. D, embolus, apical. E, retrolateral. F, prolateral, clove oil cleared. G, details of embolus. Scale bars, 1 mm (A, B); 0.1 mm (C–F); 0.05 mm (G). Abbreviations: c = conductor, cl = conductor lobe, e = embolus, em = embolic membrane, ta = terminal apophysis.
FIGURE 2 in Rectifying the identities of the males of two Micrathena species (Araneae Araneidae), with report of the first case of intersexuality in the genus
FIGURE 2. Micrathena ruschii from Brazil, Rio de Janeiro, Macaé, habitus. A–C, male. A, dorsal. B, lateral. C, ventral. D, female, dorsal. Scale bars, 1 mm.
FIGURE 4. Male left palps. A in Rectifying the identities of the males of two Micrathena species (Araneae Araneidae), with report of the first case of intersexuality in the genus
FIGURE 4. Male left palps. A, Micrathena ruschii from Brazil, Rio de Janeiro, Macaé (UFRJ 1519), prolateral. B, Micrathena lata, male from Argentina, Misiones (MACN-Ar 3866), prolateral. C, same, retrolateral, detail of paracymbium. Scale bars = 0.1 mm. Abbreviations: bp = basal projection of the median apophysis, c = conductor, cl = conductor lobe, cy = cymbium, e = embolus, em = embolic membrane, l = median apophysis lobe, m = median apophysis rim, pm = paramedian apophysis, r = radix, ta = terminal apophysis, tap = terminal apophysis projection, ti = tibial projection, tp = tegular projection.
FIGURE 3 in Rectifying the identities of the males of two Micrathena species (Araneae Araneidae), with report of the first case of intersexuality in the genus
FIGURE 3. Micrathena ruschii from Brazil, Rio de Janeiro, Macaé, male left palps. A, prolateral. B, Subretrolateral. C–D, male (UFRJ 1519). C, retrolateral. D, prolateral, clove oil cleared. Scale bars, 0.1 mm.
FIGURE 1 in Rectifying the identities of the males of two Micrathena species (Araneae Araneidae), with report of the first case of intersexuality in the genus
FIGURE 1. Sequence similarity among selected Micrathena COI sequences inferred using the neighbor-joining method. Nodal support estimated with bootstrap (1000 replicates) shown next to the branches.
FIGURE 2. A in Male flowers reveal the true identity of a new species of Hechtia (Bromeliaceae) from the Mexican state of Jalisco
FIGURE 2. A. Habitat of Hechtia carrilloi in Municipality of Tolimán, Arroyo La Ciénega. B. Rosettes of H. carrilloi (left) and H. santanae (right). C. Production of new rosettes by stolons in H. carrilloi. D. Adaxial (two upper ones) and abaxial (two lower ones) foliar surfaces; largest leaf H. santanae, shorter H. carrilloi. E. Leaf cross section of H. santanae (above) and H. carrilloi (below). (Credits: A. Katya Romero-Soler. B. Ivón Ramírez-Morillo. C. Pablo Carrillo-Reyes. D, E. Claudia Ramírez-Díaz).
FIGURE 3 in Hippeastrum euryphyllum (Amaryllidaceae), a microendemic species from northeastern Argentina: new combination, description, taxonomic identity and distribution
FIGURE 3. Distribution map of Hippeastrum euryphyllum. A. Location of the Paraje Tres Cerros, Corrientes province, Argentina; B–D. Details of the hills Nazareno (B), Capará (C), and Chico (D).
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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.