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383 results for “2 new taxa”
Fig. 2 in New and interesting Surirella taxa (Surirellaceae, Bacillariophyta) from the Congo Basin (DR Congo)
Fig. 2. Surirella ebalensis sp. nov., type material from sample CCA 2070, Lomami River, DR Congo, SEM. External view. B, C, F = detail of the raphe keel with blunt spines orientated towards the valve face and which are draped over a large part of the indented mantle side. A. Overview. B–C. Detail of the valve ornamented with silica granules and blunt spines. D. Detail of the apical pole, showing the curved raphe endings. E–F. Detail of the foot pole showing the straight raphe endings. F. Short spherical shaped silica elements near the pole (arrow). Scale bars: A = 10 µm; B = 4 µm; C, F = 2 µm; D–E = 1 µm.
Fig. 2 in First record of the genus Dinotrema Foerster, 1862 (Hymenoptera, Braconidae, Alysiinae) from the Neotropical region, with description of four new species and a key to the New World taxa
Fig. 2. Dinotrema multiareolatum Peris-Felipo sp. nov. (♀). A. Head, dorsal view. B. Mesosoma, lateral view. C. Head, sublateral view and mesonotum, dorsal view. D. Propodeum, dorsal view. E. First metasomal tergite. F. Fore and hind wings.
Fig. 2 in Giant Sticks from Vietnam and China, with three new taxa including the second longest insect known to date (Phasmatodea, Phasmatidae, Clitumninae, Pharnaciini)
Fig. 2. Baculonistria magna comb. nov. (Brunner von Wattenwyl, 1907). — A–E.Holotype ♀ (MNHN, photographs by Emmanuel Delfosse). A. Habitus, dorsal view. B. Habitus, lateral view. C. Apex of abdomen, lateral view. D. Apex of abdomen, dorsal view. E. Labels. — F–J. ♂ (MNHN, photographs by Emmanuel Delfosse). F. Habitus, dorsal view. G. Habitus, lateral view. H. Apex of abdomen, lateral view. I. Apex of abdomen, dorsal view. J. Labels. C–D, H–I = not to scale.
Fig. 2 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand
Fig. 2. Phylogenetic analysis. Maximum likelihood tree with bootstrap support> 50 / posterior probabilities from Bayesian analysis> 0.50 for nodes. New taxa in bold. Letters A-E after new taxa refer to localities in Figure 1.
Fig. 2 in Morphological diagnoses of higher taxa in Ophiuroidea (Echinodermata) in support of a new classification
Fig. 2. Examples of skeletal structures of brittlestars. A. Dorsal disc with scales and plates in Amphiura Forbes, 1843 (P). B. Oral frame with teeth (T) and apical tooth cluster (APC) in Ophiocoma L. Agassiz, 1836. C. Oral frame with infradental oral papillae (IP) in Ophioplax Lyman, 1875. D. Disc spines in Ophiacantha Müller & Troschel, 1842. E. Disc granules in Ophiocoma L. Agassiz, 1836. F. Disc tubercles in Acrocnida Gislén, 1926. G. Dental plate (DP) in Ophiura Lamarck, 1801, with teeth attached. H. Dental plate with sockets for regular teeth (TS) and for apical tooth cluster (APC) in Ophiocoma L. Agassiz, 1836. I–J. Lateral arm plate in Amphiura Forbes, 1843. I. External view with arm spine articulations (ASA). J. Internal view. Scale bars in millimetres.
Figure 2. A, B in New taxa of Japanese and New Zealand Eurystomellidae (Phylum Bryozoa) and their phylogenetic relationships
Figure 2. A, B. Integripelta novella sp. nov. Hokkaido, intertidal. A, autozooids and two maternal zooids, the kenozooid distal to the one at left lacking a foramen, ¥89. B, maternal zooid with distal foraminate kenozooid, ¥121. C, D, Integripelta japonica sp. nov. Mi-shimi, Honshu. C, autozooids and maternal zooids, ¥53. D, maternal orifice and kenozooid, ¥211. E, F, Integripelta sextaria sp. nov. NZOI Stn Z9700. E, autozooids and maternal zooids, ¥48. F, autozooidal orifice, ¥181.
Figures 1–2 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 1–2. Scorpiops hardwickii, India, Uttaranchal State, ca. 30 km N of Bageshwar, SE of Dhakuri, 2600-2800 m a. s. l., FKCP, ♀, dorsal (1) and ventral (2) views. Scale bar: 10 mm.
Fig. 2 in On the diversity of subterranean beetles of the Dinarides: new leiodid taxa (Coleoptera: Leiodidae) from Serbia
Fig. 2. Bozidaria serbooccidentalis Ćurčić & Pavićević gen. et sp. nov. from the Simina Jama Pit, village of Gornje Košlje, Debelo Brdo saddle, Mt Povlen, near the town of Ljubovija, western Serbia. A–F. Paratype male (IZFB-21/3). A. Habitus (dorsal view). B. Surface of pronotum (dorsal view). C. Mesosternal carina (lateral view). D. Surface of elytra (dorsal view). E. Aedeagus (dorsal view). F. Left paramere apex (dorsal view). G–I. Paratype female (IZFB-21/4). G. Left gonostylus (dorsal view). H. Spermatheca (lateral view). I. Abdominal segment VIII (ventral view). Scale bars: A = 500 μm; B, D, G, I = 100 μm; C, E = 200 μm; F = 25 μm; H = 50 μm.
Fig. 2 in New Taxa And Synonymy In The Family Pyrgotidae (Diptera Tephritoidea) Ii Subtribe Adapsiliina And Afrotropical Campylocera
Fig. 2. Campylocera ferruginea: holotype ♀ of Campylocera omissa (NHMW): 1 — habitus, lateral view; 2 — head, left (arrow indicates enlarged setae); 3 — head, anterior view; 4 —wing; 5 — mesonotum, dorsal view; 6 — fore leg, posterior view (arrow indicates long setae); 7 — mid leg, anterior; 8 — hind leg, anterior view; 9–10 — oviscape, dorsal and left view; 11 — labels.
Fig. 2. Atritomus vicinus Grouvelle, 1908 in West Palaearctic taxa formerly connected to the 'old' genus Atritomus Reitter, 1877 (Coleoptera, Mycetophagidae): taxonomy, distribution, and description of a new genus
Fig. 2. Atritomus vicinus Grouvelle, 1908 (= Typhaeola vicina (Grouvelle, 1908) comb. nov.), holotype (EC12477). A. Habitus, dorsal view. B. Habitus, lateral view. C. Habitus, ventral view. D. Labels. Scale bar = 1 mm.
Fig. 2. Polyps. A in Dead man's fingers point to new taxa: two new genera of New Zealand soft corals (Anthozoa, Octocorallia) and a revision of Alcyonium aurantiacum Quoy & Gaimard, 1833
Fig. 2. Polyps. A. Kotatea amicispongia gen. et sp. nov., holotype (NIWA 156312). B. K. aurantiaca gen. et comb. nov. (NIWA 75330). C. K. kapotaiora gen. et sp. nov., holotype (NIWA 3974). D. K. kurakootingotingo gen. et sp. nov., holotype (NIWA 101538). E. K. kurakootingotingo gen. et sp. nov., paratype, small polyp with coloured collaret and points (MAGNT C015221). F. K. lobata gen. et sp. nov., holotype (NIWA 101313). G. K. niwa gen. et sp. nov., holotype (MAGNT C015226). H. K. raekura gen. et sp. nov., holotype (NIWA 101537). I. Ushanaia ferruginea gen. et sp. nov., holotype (NIWA 156313). J. U. fervens gen. et sp. nov., holotype (NIWA 156311). K. U. solida gen. et sp. nov., holotype (NIWA 102133). L. K. aurantiaca gen. et comb. nov., in situ (uncollected specimen), Poor Knights Islands, photo by Ian Skipworth (ianskipworth.com). M. U. fervens gen. et sp. nov., in situ (uncollected specimen), Fiordland, photo by Shane Geange. Scale bars = ~1 mm.
Fig. 2 in The genus Synaldis Foerster, 1863 (Hymenoptera: Braconidae: Alysiinae) in the Neotropical region: first record, descriptions of new species and a key to the New World taxa
Fig. 2. Synaldis brasiliense Peris-Felipo, sp. nov., ♀. A. Habitus, lateral view. B. Head, lateral view. C. Mandible. D. Antenna. E. Face, front view. F. Head, dorsal view.
FIGURE 2 in A New Species of Gorgonian Octocoral from the Mesophotic Zone off the Central Coast of California, Eastern Pacific with a Key to Related Regional Taxa (Anthozoa, Octocorallia, Alcyonacea)
FIGURE 2. Chromoplexaura cordellbankensis sp. nov. Wet-preserved holotype, external morphology. A, D. Partial colony, scale bar = 10 mm. B. Detail of the proximal branch, scale bar = 5 mm. C. Distal apex region of the middle branch, scale bar = 5 mm. E. Apex region of the main stem, scale bar = 5 mm. F. Compound microscope view of sclerites at 100x magnification, showing yellow coloration, scale bar = 0.2 mm.
Fig. 2 Aplectana xishuangbannaensis n in Description of a new species of AplECTana (Nematoda: Ascaridomorpha: Cosmocercidae) using an integrative approach and preliminary phylogenetic study of Cosmocercidae and related taxa
Fig. 2 Aplectana xishuangbannaensis n. sp. collected from Polypedates megacephalus (Hallowell) (Anura: Rhacophoridae) in Yunnan Province, China. a Anterior part of male, lateral view. b Cephalic end of female (somatic papillae arrowed), apical view. c Tail of female, lateral view. d Vulva, lateral view. e Egg. f Posterior end of male, lateral view. g Spicules. h Tail of male, ventral view. Scale bars: a, c‒h, 100 μm; b, 20 μm
FIGURE 2 in New primates from the Eocene of Saskatchewan: Revision of the primates from the Cypress Hills Formation with description of new taxa
FIGURE 2. New upper molar of Trogolemur from the Swift Current Creek locality, with comparisons. A, E: New specimen of Trogolemur, a left M1, RSM P3450.1466. A: Photograph of RSM P3450.1466 on pin. E: Surface model of RSM P3450.1466 from µCT scan. This specimen was scanned at the Duke University Shared Materials Instrumentation Facility using a Nikon XTH 225 ST µCT scanner, with a voxel size of 0.018 mm, a voltage of 135 kV, an amperage of 107µa, and 2500 projections. A surface model was reconstructed in Avizo 8.0 (2013; FEI Visualization Sciences Group). B-D: Trogolemur leonardi from Lac Pelletier. B: RM2 (RSM P1899.1007, reversed image, originally labeled M1). C: RM3 (RSM P1899.1016, reversed image, originally labeled as M2). D: LM3 (RSM P1899.1014). F: Stereo pair of cast of Trogolemur myodes RM2-M3 (UM 31201, reversed image). Compare with USNM 417396, M1 of Trogolemur (Emry, 1990, fig. 6H). Scale bar is 1 mm long.
Fig. 2 in New taxa, records, and data for vesicomyid bivalves from Cenozoic strata of the North Pacific region
Fig. 2. The small vesicomyid bivalves Vesicomya? sp. 1 and sp. 2, from Oligocene seep deposits in the Lincoln Creek Formation, western Washington State, USA. A. Vesicomya? sp. 1 from the early Oligocene SR2 site, Satsop River. NRM Mo 204811, left side view (A1) and dorsal view on LV and dorsal side of actual specimen (A2); A3, A4, X-ray section through the hinge area, with our interpretations; A5–A7, 3D renderings of the specimen. B, C. Vesicomya? sp. 2 from the late Oligocene SR4 site, Satsop River. B. NRM Mo 204701, disarticulated specimen, view on RV with naticid drill hole on the umbo (B1) and on the LV showing the truncate posterior margin (B2). C. NRM Mo 204702, RV in anterior view, showing inflation and lunular incision (C1) and dorsal view, showing lunular incision (C2).
FIG. 2 in Mallomonas vietnamica Gusev, Kezlya & Tran, sp. nov. (Synurales, Chrysophyceae), a new species, that shares some features with fossil taxa
FIG. 2. — Mallomonas vietnamica Gusev, Kezlya & Tran sp. nov. scanning electron microscopy images (SEM: A-J): A-D, scales with recessed domes, shifted to the right part of the scales, oriented at different angles to the longitudinal axis (Fig. 2A is a representative scale from the holotype specimen); E-F, undersurface view of the scales; G, long straight bristle; H, J, tips of bristles with teeth; I, foot of the bristle. Scale bars: A, B, D, I, 1 μm; C, E, F, H, J, 2 μm; G, 10 μm.
FIGURE 2 in New Miocene fossil taxa illuminate the evolution and paleobiogeography of the Ponto-Caspian gammaroid amphipod radiation
FIGURE 2 Phylogenetic relationships among Ponto-Caspian gammaroids based on 114 morphological characters. Non-monotypic genera are highlighted in color. The fossil clade is highlighted with orange and a dagger symbol. Number at nodes represent support values for maximum likelihood (UFBS – ultrafast bootstrap, SHaLRT – Shimodaira-Hasegawa approximate likelihood ratio test), Bayesian (PP – posterior probability), and parsimony (JKBS – jackknifing bootstrap) analyses. Strongly supported nodes are highlighted with a green dot (UFBS ≥ 90; SHaLRT ≥ 80; PP ≥ 0.9; JKBS ≥ 90). Nodes that are not annotated received weak to no support (UFBS ≤ 50; SHaLRT ≤ 50; PP ≤ 0.5; JKBS ≤ 50).
Fig. 2. Cleomenes modicatus Fig. 3. Cleomenes Fig. 4. Cleomenes longipennis tristriatus Holzschuh 1995 in Two New Taxa Of Cleomenes Thomson, 1864 (Coleoptera: Cerambycidae) From China And Vietnam
Fig. 2. Cleomenes modicatus Fig. 3. Cleomenes Fig. 4. Cleomenes longipennis tristriatus Holzschuh 1995, holotype katrinae sp. nov. Gressitt, 1951, holotype (Berzak 2020). (Berzak 2020).
Fig. 2 in New taxa of Leucocelis Burmeister, 1842 from Namibia, and revision of L. (L.) adspersa s.l. (Fabricius, 1801) (Coleoptera: Scarabaeidae, Cetoniinae)
Fig. 2 – Erongoberge at Usakos with the typical habitat of L. claveaui claveaui sp. et subsp. nov. (Photo: https://www.facebook.com/AmeibNamibia/photos).
ScienceDex guides
Understand access before you commit
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.