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13,397 results for “sp. nov.”
Figure 3 in A new polypterid fish: Polypterus faraou sp. nov. (Cladistia, Polypteridae) from the Late Miocene, Toros-Menalla, Chad
Figure 3. Photograph and drawing of the skull of TM90-01-39, holotype of Polypterus faraou sp. nov., in dorsal view.
Figure 2 in Eriophyes urmiae sp. nov. (Acari: Eriophyidae) from spurge in Iran
Figure 2. Schematic drawings of Eriophyes urmiae Lotfollahi & Mohammad-Doustaresharaf sp. nov. nymph prodorsal shield. Scale bar: 10 µm.
Figure 3 in Eriophyes urmiae sp. nov. (Acari: Eriophyidae) from spurge in Iran
Figure 3. Schematic drawings of the prodorsal shields of: A. Eriophyes antiquorum Amrine & Stasny, 1994 (from Mohanasundaram 1983); B. Eriophyes septemlineatus Petanović, 1991 (from Petanović 1991); C. Eriophyes euphorbiae (Nalepa, 1890) (from Lotfollahi et al. 2020a).
Figure 1 in Eriophyes urmiae sp. nov. (Acari: Eriophyidae) from spurge in Iran
Figure 1. Schematic drawings of Eriophyes urmiae Lotfollahi & Mohammad-Doustaresharaf sp. nov. – AD. Prodorsal shield; AL. Lateral view of anterior body region; CG. Female coxigenital region; DO. Dorsal view of annuli; em. Empodium; GM. Male genital region; IG. Internal female genitalia; L1. Leg I; PD. Dorsal view of posterior opisthosoma; PV. Ventral view of posterior opisthosoma; VO. Ventral view of annuli. Scale bar: 10 µm for AD, AL, CG, DO, GM, IG, pg, PD, PV, VO; 5 µm for L1; 2.5 µm for em.
Fig. 3. Choanocystis symna spec. nov., strain CCAP 1597 in Two New Species of Centrohelid Heliozoans: Acanthocystis costata sp. nov. and Choanocystis symna sp. nov.
Fig. 3. Choanocystis symna spec. nov., strain CCAP 1597/1. (A) Scales of the air-dried specimen. Phase contrast. (B) Living cell. DIC. Contractile vacuoles (cv), kinetocysts (k), microtubule-organizing center (MTOC) and spine scales can be seen. (C) Living cell compressed with a cover-slip. Phase contrast. Nucleus (n) with a central nucleolus (nu) is visible. (D) Air-dried whole-mount of the cell. Type-slide NHMUK 2013.6.28.1. SEM. Spine scales and plate scales are visible. (E) The most common quantity of teeth on the tip of spine scale is four. SEM. (F) Spine scale with three teeth. SEM. (G) Tips of spine scales with five (left) and four (right) teeth. SEM. Scale bars: 5 μm (A–C), 10 μm (D), 1 μm (E–G).
Fig. 6. RAxML tree for 18S in Two New Species of Centrohelid Heliozoans: Acanthocystis costata sp. nov. and Choanocystis symna sp. nov.
Fig. 6. RAxML tree for 18S rRNA genes of 8 pterocystid heliozoans (1320 nucleotide positions). Only bootstrap values more than 50% are shown. New sequence is in bold.
Fig. 5. RAxML tree for 18S in Two New Species of Centrohelid Heliozoans: Acanthocystis costata sp. nov. and Choanocystis symna sp. nov.
Fig. 5. RAxML tree for 18S rRNA genes of 16 heliozoans from the genus Acanthocystis and Polyplacocystis ambigua as an outgroup (1520 nucleotide positions). Only bootstrap values more than 50% are shown. New sequence is in bold. Crossed branches were shortened fourfold.
FIG. 3 in Morphological and molecular evidence for a new species, Mannia gradsteinii sp. nov. (Aytoniaceae) from southwestern China
FIG. 3. — Mannia gradsteinii sp. nov.: A, C, D, transverse section of segments; B, epidermal pores; E, F, ventral scales with appendages. All from Y.L. Xiang & P.F. Wang 20170428-12 (holo-, HSNU). Scale bars: A, E, F, 250 μm; B-D, 200 μm.
FIG. 2 in Morphological and molecular evidence for a new species, Mannia gradsteinii sp. nov. (Aytoniaceae) from southwestern China
FIG. 2. — Mannia gradsteinii sp. nov.: A, habit in the field; B, dorsal surface of thallus; C, D, female receptacle, dorsal and ventral view respectively; E-H, SEM micrographs of spores; E, F, distal view; G, proximal view; H, side view. All from Y.L. Xiang & P.F. Wang 20170428-12 (holo-, HSNU). Scale bars: A, 1 cm; B, 2 mm; C, D, 5 mm; E-H, 20 μm.
FIG. 4 in Morphological and molecular evidence for a new species, Mannia gradsteinii sp. nov. (Aytoniaceae) from southwestern China
FIG. 4. — Mannia gradsteinii sp. nov.: A, B, light microscopy micrographs of spores; A, distal view; B, proximal view; C, elater; D, capsule wall; E, F, transverse section of archegoniophore stalks. All from Y.L. Xiang & P.F. Wang 20170428-12 (holo-, HSNU). Scale bars: A-D, 50 μm; E, F, 200 μm.
FIG. 1 in Morphological and molecular evidence for a new species, Mannia gradsteinii sp. nov. (Aytoniaceae) from southwestern China
FIG. 1. — Phylogeny of Mannia Corda illustrating the position of Mannia gradsteinii sp. nov., inferred from combined dataset (trnL-F and 26S) and topology displayed as the best-scoring ML tree in IQtree. ML bootstrap values BS ≥ 65 and Bayesian posterior probabilities values PP ≥ 0.90 are shown at left and at right, respectively.
Figure 4 in Description of Stenothoe lowryi sp. nov. (Crustacea: Amphipoda: Stenothoidae), from the Straits of Malacca, Malaysia
Figure 4. Stenothoe lowryi sp. nov., from Pangkor Island, Malaysia. Holotype male, 5.3 mm, UKMMZ-1133. Allotype female, 4.9 mm, UKMMZ-1134. Scales: P3–P7 = 0.5 mm; PL1–PL3 = 0.2 mm; remainder = 0.1 mm.
Figure 5 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 5. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A–B) pereopod 5; (C–E) pereopod 6; (F–H) pereopod 7.
Figure 3 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 3. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A–B) gnathopod 1, outer face; (C) corner of gnathopod 1 propodus, outer face [s = corner S-spine; l = lateral L-spines; r = subcorner R-spine; m = corner facial M-setae]; (D–E) gnathopod 2, outer face; (F) corner of gnathopod 2 propodus, outer face [s = corner S-spine; l = lateral L-spines; r = subcorner R-spine; m = corner facial M-setae].
Figure 4 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 4. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A) maxilla 1; (B–C) pereopod 3; (D–E) pereopod 4; (F) epimeral plates 1–3; (G) telson.
Figure 2 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 2. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A) labrum; (B) labium; (C) right mandible; (D) mandibular palp, inner face [b = facial B-setae; d = marginal D-setae; e = distal E-setae]; (E) mandibular palp distal article, outer face [a= facial A-setae]; (F) maxilla 2; (G) maxilliped; (H) maxilliped, distal part of palp; (I) pleopod 1 peduncle; (J) pleopod 2 peduncle; (K) pleopod 3 peduncle; (L) uropod 3.
Figure 1 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 1. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A) head; (B) antenna 1; (C) accessory flagellum; (D) aesthetasc on antenna 1; (E) antenna 2; (F) urosome and uropods 1–2.
Fig. 1 in Pseudocyclammina Sarvakensis Sp. Nov. And Pseudotextulariella Brevicamerata Sp. Nov.: Further Evidence For The Cenomanian Megadiversity Of Larger Benthic Foraminifera From The Sarvak Formation Of Sw Iran
Fig. 1 Number of agglutinated foraminiferal genera (small and large taxa) in each geological stage (modified from Kaminski et al., 2008, fig. 1).
Fig. 5 in Pseudocyclammina Sarvakensis Sp. Nov. And Pseudotextulariella Brevicamerata Sp. Nov.: Further Evidence For The Cenomanian Megadiversity Of Larger Benthic Foraminifera From The Sarvak Formation Of Sw Iran
Fig. 5 Lower and Upper Cretaceous (Cenomanian) species of Pseudotextulariella Barnard, 1953. a-i, k Pseudotextulariella brevicamerata sp. nov., middle Cenomanian Sarvak Formation of SW Iran, Tang-e Darbast section (a-i) and Arman well-1 (k), thin-sections RAP 188 and AMN 3173.49 m. a, h-i Tangential sections. b, d-e, g Subaxial section, holotype specimen in e. c, k Oblique sections. f Fragmentary transverse section. j, l Pseudotextulariella courtionensis Brönnimann, 1967, Valanginian of Switzerland (from Brönnimann, 1967, pl. 1, figs. 1 and 5). m-n Pseudotextulariella cretosa (Cushman, 1932), transverse and axial sections (from Brönnimann, 1967, pl. 3, figs. 2 and 5). Abbreviations: b = beam, cha = chamber, fo = foramen, ib = intercalary beam, r = rafter, s = septum.
Fig. 3 in Pseudocyclammina Sarvakensis Sp. Nov. And Pseudotextulariella Brevicamerata Sp. Nov.: Further Evidence For The Cenomanian Megadiversity Of Larger Benthic Foraminifera From The Sarvak Formation Of Sw Iran
Fig. 3 Lithostratigraphic log of the Tang-e Darbast section, the type locality of Pseudocyclammina sarvakensis sp. nov and Pseudotextulariella brevicamerata sp. nov., showing the distribution of some (larger) benthic foraminifera. a Neoiraqia insolita (Decrouez & Moullade), b Orbitolinopsis cenomaniensis Schlagintweit & Yazdi-Moghadam, c Conicorbitolina cf. conica (d'Archiac), d Mesorbitolina aperta (Erman), e Orbitolina ex gr. concava (Lamarck), f Rotorbinella mesogeensis (Tronchetti), g Nezzazata gr. gyra-conica (Smout), h Decastroia cf. serrakieli Vicedo & Piuz, i Myriastyla omanensis Piuz, Meister & Vicedo, j Chrysalidina gradata Orbigny, k Iraqia ultima Yazdi-Moghadam & Schlagintweit.
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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.