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Fig. 6. Camponotus diplopunctatus Emery, 1915 in Faunal composition, diversity, and distribution of ants (Hymenoptera: Formicidae) of Dhofar Governorate, Oman, with updated list of the Omani species and remarks on zoogeography
Fig. 6. Camponotus diplopunctatus Emery, 1915, major worker (CASENT0922847, AntWeb.org (Michele Esposito)). A. Body in profile. B. Head in full-face view. C. Distribution map.
Fig. 4. Camponotus aegyptiacus Emery, 1915 in Faunal composition, diversity, and distribution of ants (Hymenoptera: Formicidae) of Dhofar Governorate, Oman, with updated list of the Omani species and remarks on zoogeography
Fig. 4. Camponotus aegyptiacus Emery, 1915, ♂ (CASENT0922850, AntWeb.org (Michele Esposito)). A. Body in profile. B. Head in full-face view. C. Wing. D. Genitalia.
Fig. 3. Camponotus aegyptiacus Emery, 1915 in Faunal composition, diversity, and distribution of ants (Hymenoptera: Formicidae) of Dhofar Governorate, Oman, with updated list of the Omani species and remarks on zoogeography
Fig. 3. Camponotus aegyptiacus Emery, 1915, major worker (CASENT0922849, AntWeb.org (Michele Esposito)). A. Body in profile. B. Head in full-face view. C. Distribution map.
Fig. 7. Camponotus flavomarginatus Mayr, 1862 in Faunal composition, diversity, and distribution of ants (Hymenoptera: Formicidae) of Dhofar Governorate, Oman, with updated list of the Omani species and remarks on zoogeography
Fig. 7. Camponotus flavomarginatus Mayr, 1862, major worker (CASENT0922854, AntWeb.org (Michele Esposito). A. Body in profile. B. Head in full-face view. C. Distribution map.
Fig. 5. Camponotus arabicus Collingwood, 1985 in Faunal composition, diversity, and distribution of ants (Hymenoptera: Formicidae) of Dhofar Governorate, Oman, with updated list of the Omani species and remarks on zoogeography
Fig. 5. Camponotus arabicus Collingwood, 1985, paratype, major worker (CASENT0911902, AntWeb.org (Will Ericson)). A. Body in profile. B. Head in full-face view. C. Distribution map.
Fig. 2 in Faunal composition, diversity, and distribution of ants (Hymenoptera: Formicidae) of Dhofar Governorate, Oman, with updated list of the Omani species and remarks on zoogeography
Fig. 2. Tapinoma melanocephalum (Fabricius, 1793), worker (CASENT0922866, AntWeb.org (Michele Esposito)). A. Body in profile. B. Head in full-face view. C. Distribution map.
Text-fig. 11. Acer Post Hammer species 1, UF 279-34456. a, b: Diffuse-porous wood with distinct growth rings, marked by marginal parenchyma, vessels solitary and in short radial multiples, TS. c: Crowded alternate intervessel pits, TLS. d: Simple perforation plates, helical thickenings in vessel elements, TLS. e: Rays 2–3-seriate, gum deposit in vessel element, TLS. Acer Post Hammer species 2. UF 279-34466. f: Diffuse-porous wood with distinct growth rings, marked by marginal parenchyma, vessels solitary and in short radial multiples, TS. g: Alternate intervessel pits, helical thickenings in vessel elements, TLS. h: Rays 1–4(–5)-seriate, TLS. i: Crystalliferous strand, multiseriate ray, TLS. Trochodendron beckii, UF 279-24558. j, k: Distinct growth rings, abrupt transition from earlywood to latewood, vesselless, wide rays noded at growth ring boundaries, TS. l: Rays of two distinct sizes, uniseriate and multiseriates>10-seriate, TLS. m. Scalariform intertracheary pits. RLS. Scale bars: 500 µm in j; 200 µm in a, f, k, l; 100 µm in b, h; 50 µm in c, d, e, g, i, m. in A Diverse Assemblage Of Late Eocene Woods From Oregon, Western Usa
Text-fig. 11. Acer Post Hammer species 1, UF 279-34456. a, b: Diffuse-porous wood with distinct growth rings, marked by marginal parenchyma, vessels solitary and in short radial multiples, TS. c: Crowded alternate intervessel pits, TLS. d: Simple perforation plates, helical thickenings in vessel elements, TLS. e: Rays 2–3-seriate, gum deposit in vessel element, TLS. Acer Post Hammer species 2. UF 279-34466. f: Diffuse-porous wood with distinct growth rings, marked by marginal parenchyma, vessels solitary and in short radial multiples, TS. g: Alternate intervessel pits, helical thickenings in vessel elements, TLS. h: Rays 1–4(–5)-seriate, TLS. i: Crystalliferous strand, multiseriate ray, TLS. Trochodendron beckii, UF 279-24558. j, k: Distinct growth rings, abrupt transition from earlywood to latewood, vesselless, wide rays noded at growth ring boundaries, TS. l: Rays of two distinct sizes, uniseriate and multiseriates>10-seriate, TLS. m. Scalariform intertracheary pits. RLS. Scale bars: 500 µm in j; 200 µm in a, f, k, l; 100 µm in b, h; 50 µm in c, d, e, g, i, m.
Fig. 3. – Capurodendron namorokense L. Gaut. & Boluda. A in Two further new species in the highly-diverse Malagasy endemic genus Capurodendron (Sapotaceae)
Fig. 3. – Capurodendron namorokense L. Gaut. & Boluda. A. Apex of branch; B. Branch; C. Old flower lacking corolla, dissected laterally; D. Old flower lacking corolla; E. Leaf, abaxial side; F. Leaf, adaxial side.
Fig. 1. – Capurodendron mikearum L. Gaut. & Boluda. A in Two further new species in the highly-diverse Malagasy endemic genus Capurodendron (Sapotaceae)
Fig. 1. – Capurodendron mikearum L. Gaut. & Boluda. A. Corolla, seen from inside; B. Corolla, seen from outside; C. Flower; D. Leaf, abaxial side; E. Leaf, adaxial side; F. Flower, dissected laterally; G. Flowering branch; H. Fruit; I. Seed.
Fig. 2. – Capurodendron mikearum L in Two further new species in the highly-diverse Malagasy endemic genus Capurodendron (Sapotaceae)
Fig. 2. – Capurodendron mikearum L. Gaut. & Boluda: A. Habit; B. Twig; C. Slashed bark; D. Fascicles of flowers; E. Flowers. Capurodendron namorokense L. Gaut. & Boluda: F. Slashed bark; G. Twig with two old flowers in an early fruit development stage. [A: Gautier 6329; B–E: Gautier 6339; F–G: Gautier et al. 6276] [Photos: L. Gautier]
Fig. 6 in Documenting tenebrionid diversity: progress on Blaps Fabricius (Coleoptera, Tenebrionidae, Tenebrioninae, Blaptini) systematics, with the description of Fve new species
Fig. 6. Bayesian maximum consensus tree resulting from the analysis of the combined molecular and morphological dataset carried out with MrBayes. Support of nodes is indicated using empty circles (for PP> 0.50) and flled circles for PP> 0.95). Species groups for Blaps belonging to section I are highlighted using transparent coloured frames. Paraphyletic species groups are highlighted using bracketed names; orange arrows are also used to highlight the placement of the fve new species. For illustrative purposes, the habitus of some adults are fgured on the right side of the fgure; on the left upper side, the habitus of the fve new species are also presented (all photographs were taken by L. Soldati).
Fig. 3 in Documenting tenebrionid diversity: progress on Blaps Fabricius (Coleoptera, Tenebrionidae, Tenebrioninae, Blaptini) systematics, with the description of Fve new species
Fig. 3. Blaps maldesi Soldati sp. nov. A. ♂, habitus (dorsal view). B. ♂, habitus (lateral view). C. ♂, habitus (ventral view). D. ♂, left antenna (dorsal view). E. ♂, mucro (dorsal view). F. ♂, mucro (lateral view). G. ♀, mucro (dorsal view). H. ♂, aedeagus (ventral view). I. ♂, aedeagus (lateral view). Scale bars: A–C = 10 mm; D = 5 mm; E–G = 2 mm; H–I = 1 mm.
Fig. 1 in Documenting tenebrionid diversity: progress on Blaps Fabricius (Coleoptera, Tenebrionidae, Tenebrioninae, Blaptini) systematics, with the description of Fve new species
Fig. 1. Blaps effeminata Soldati sp. nov. A. ♂, habitus (dorsal view). B. ♂, habitus (lateral view). C. ♂, habitus (ventral view). D. ♂, left antenna (dorsal view). E. ♂, mucro (dorsal view). F. ♂, mucro (lateral view). G. ♀, mucro (dorsal view). H. ♂, aedeagus (ventral view). I. ♂, aedeagus (lateral view). Scale bars: A–C = 10 mm; D = 5 mm; E–G = 2 mm; H–I = 3 mm.
Fig. 5 in Documenting tenebrionid diversity: progress on Blaps Fabricius (Coleoptera, Tenebrionidae, Tenebrioninae, Blaptini) systematics, with the description of Fve new species
Fig. 5. Blaps teocchii Soldati sp. nov. A. ♂, habitus (dorsal view). B. ♂, habitus (lateral view). C. ♂, habitus (ventral view). D. ♂, left antenna (dorsal view). E. ♂, mucro (dorsal view). F. ♂, mucro (lateral view). G. ♀, mucro (dorsal view). H. ♂, aedeagus (ventral view). I. ♂, aedeagus (lateral view). Scale bars: A–C = 10 mm; D = 5 mm; E–G = 2 mm; H–I = 1.5 mm.
Fig. 2 in Documenting tenebrionid diversity: progress on Blaps Fabricius (Coleoptera, Tenebrionidae, Tenebrioninae, Blaptini) systematics, with the description of Fve new species
Fig. 2. Blaps intermedia Soldati sp. nov. A. ♂, habitus (dorsal view). B. ♂, habitus (lateral view). C. ♂, habitus (ventral view). D. ♂, left antenna (dorsal view). E. ♂, mucro (dorsal view). F. ♂, mucro (lateral view). G. ♀, mucro (dorsal view). H. ♂, aedeagus (ventral view). I. ♂. aedeagus (lateral view). Scale bars: A–C = 10 mm; D = 5 mm; E–I = 2 mm.
Fig. 4 in Documenting tenebrionid diversity: progress on Blaps Fabricius (Coleoptera, Tenebrionidae, Tenebrioninae, Blaptini) systematics, with the description of Fve new species
Fig. 4. Blaps nitiduloides Soldati sp. nov. A. ♂, habitus (dorsal view). B. ♂, habitus (lateral view). C. ♂, habitus (ventral view). D. ♂, left antenna (dorsal view). E. ♂, mucro (dorsal view). F. ♂, mucro (lateral view). G. ♀, mucro (dorsal view). H. ♂, aedeagus (ventral view). I. ♂, aedeagus (lateral view). Scale bars: A–C = 10 mm; D = 5 mm; E–I = 2 mm.
FIGURE 1 in Genetic diversity in two threatened species of guitarfish (Elasmobranchii: Rhinobatidae) from the Brazilian and Argentinian coasts: an alert for conservation
FIGURE 1 | Median-joining network of mtCR haplotypes for A. Pseudobatos horkelii and B. Pseudobatos percellens. Haplotypes are represented by circles with size proportional to frequency in the total sample. All hatch marks correspond to one mutation. Samples from northern Argentina (AR), Torrinha/RS (RS), Florianópolis/SC (SC), Pontal do Paraná/PR (PR), Cananéia/ SP (SP1), Mongaguá/SP (SP2), Santos/SP (SP3), Rio de Janeiro/RJ(RJ).
FIGURE 2 in Genetic diversity in two threatened species of guitarfish (Elasmobranchii: Rhinobatidae) from the Brazilian and Argentinian coasts: an alert for conservation
FIGURE 2 | Graph of the Bayesian analysis of population structure of mtCR for A. Pseudobatos horkelii and B. Pseudobatos percellens. Samples from northern Argentina (AR), Torrinha/RS (RS), Florianópolis/SC (SC), Pontal do Paraná/PR (PR), Cananéia/ SP (SP1), Mongaguá/SP (SP2), Santos/SP (SP3), Rio de Janeiro/RJ(RJ).
Fig. 3 Neopolystoma scorpioides n in Tracking platyhelminth parasite diversity from freshwater turtles in French Guiana: First report of Neopolystoma Price, 1939 (Monogenea: Polystomatidae) with the description of three new species
Fig. 3 Neopolystoma scorpioides n. sp. Hohotupe. a Ventnah vies. b testis of hohotupe. c cenitah spines. d haptonah sucken shosinc a ninc of skehetah ehements. e mancinah hookhets. Abbreviations: ec, ecc; cb, cenitah buhb; hp, hapton; ic, intestinah caecum; mo, mouth; ov, ovanu; ph, phanunx; su, sucken; te, testis; va, vacina; vd, vas defenens; vi, vitehhania. Scale-bars: a, 500 μm; b, 100 μm; c, 10 μm; d, 100 μm; e, 10 μm
Fig. 1 Neopolystoma cayensis n in Tracking platyhelminth parasite diversity from freshwater turtles in French Guiana: First report of Neopolystoma Price, 1939 (Monogenea: Polystomatidae) with the description of three new species
Fig. 1 Neopolystoma cayensis n. sp. Hohotupe. a Ventnah vies. b Testis. c Genitah spines. d Haptonah sucken shosinc a ninc of skehetah ehements. e Mancinah hookhets. Abbreviations: ec, ecc; cb, cenitah buhb; hp, hapton; ic, intestinah caecum; mo, mouth; ov, ovanu; ph, phanunx; su, sucken; te, testis; va, vacina; vd, vas defenens; vi, vitehhania. Scale-bars: a, 500 μm; b, 500 μm; c, 10 μm; d, 100 μm; e, 10 μm
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.