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1,073 results for “taxon”
World Register of Marine Species: WoRMS->EOL taxon ID map
The aim of a World Register of Marine Species (WoRMS) is to provide an authoritative and comprehensive list of names of marine organisms, including information on synonymy. WoRMS data published to EOL include taxon names and classification, images and Notes, and attribute data including Environment and Distribution.<p></p>Column 1: WoRMS ID Column 2: EOL ID
FIGURE 3 in Should the terms 'basal taxon' and 'transitional taxon' be extinguished from cladistic studies with extinct organisms?
FIGURE 3. Hypothetical data matrix and the most parsimonious tree obtained when it is analysed using parsimony.
FIGURE 2 in Should the terms 'basal taxon' and 'transitional taxon' be extinguished from cladistic studies with extinct organisms?
FIGURE 2. Simplified version of the cladogram of Figure 1 showing the relationships of the three main lineages of dinosaurs with focus on Sauropodomorpha. 'Sauropodomorpha A' and 'Sauropodomorpha B' represent two hypothetical taxa that are more closely related to Saturnalia than to Sauropoda. Ornithischia is represented by a single terminal taxon and Theropoda is represented by the living bird Gallus gallus.
FIGURE 1 in Should the terms 'basal taxon' and 'transitional taxon' be extinguished from cladistic studies with extinct organisms?
FIGURE 1. Simplified cladogram showing the relationships of the three main lineages of dinosaurs with focus on Sauropodomorpha. Letters A - F are related to clades treated in the main text. The assumed ages for the taxa of the tree are represented by rectangles thicker than other branches. Cladogenetic events (dichotomies) are not calibrated against geological time. Ornithischia is represented by the following taxa: Pisanosaurus, Heterodontosauridae, Eocursor, Thyreophora, Neornithischia. Theropoda is represented by the following taxa: Tawa, coelophysoids, Ceratosauria, Tetanurae. All other taxa represent Sauropodomorpha (here following the definition of Galton and Upchurch, 2004). Sauropoda (here following the definition of Salgado et al., 1997) is represented by Vulcanodon, Tazoudasaurus, Spinophorosaurus, Neosauropoda.
FIGURE 4 in Ademosynidae (Insecta: Coleoptera): A new concept for a coleopteran key taxon and its phylogenetic affinities to the extant suborders
FIGURE 4. Genera of Ademosynidae family, line drawings. 1, Gnathosyne akkolkensis Ponomarenko, 1969, holotype, PIN 2496/7 counterpart. 2, Ademosyne kirgizica Ponomarenko, 1969, holotype PIN 2096/1369. 3 A. kirgizica Ponomarenko, 1969, paratype PIN 2555/1696 print and counterprint. 4, A. bacca Ponomarenko, 1969 holotype PIN 2240/310. 5, A. bacca Ponomarenko, 1969, paratype PIN 2240/294. 6, A. ellyptica Ponomarenko, 1969, holotype PIN 2240/224. 7, Cephalosyne capitata Ponomarenko, 1969, holotype PIN 2240/302. Scale bars: 1 mm. Label abbreviations: c.e – compound eye; crd – cardo; cx.r – coxal rests; cx1, 2 – pro- and mesocoxae; ep – epipleura; epm2 – mesepimeron; fm1 – profemur; gul – gular plate (gula); i.p1 – prosternal intercoxal process; l.d – pronotal longitudinal depression; l.i – lateral incixions of submentum; l.r – longitudinal ridge; md – mandibles; msc – mesoscutum; mt – mentum; ms.p – mesosternal pit; o.f – occipital foramen; par – parietal; pd – pedicellus; pl1 – propleurite; p.mt – prementum; p.t.p. – posterior tentorial pit; sc – scapus; scl – scutellum; sct – mesoscutum; s.g – gular suture; s.l2 – longitudinal suture of mesoventrite; s.l3 – longitudinal suture of metaventrite; smt – submentum; s.pc – paracoxal suture.
FIGURE 5. Petrosyne Ponomarenko, 1969 in Ademosynidae (Insecta: Coleoptera): A new concept for a coleopteran key taxon and its phylogenetic affinities to the extant suborders
FIGURE 5. Petrosyne Ponomarenko, 1969 and ademosynid beetles re-assigned to Polyphaga suborder, photos and line drawings. 1, 2 Petrosyne liassica Ponomarenko, 1969, holotype PIN 166/39. 3, 4 Ranis collevus Ponomarenko, 1969, holotype PIN 371/1755 and line drawing. 5, 6, R. ovalis Ponomarenko, 1969, holotype PIN 2066/2642. Scale bars equal 1 mm. Label abbreviations: cx.r – coxal rests; msc – mesoscutum; tb1 – protibia.
FIGURE 3 in Ademosynidae (Insecta: Coleoptera): A new concept for a coleopteran key taxon and its phylogenetic affinities to the extant suborders
FIGURE 3. Genera of Ademosynidae family, habitual photos. 1, Gnathosyne akkolkensis Ponomarenko, 1969, holotype, PIN 2496/7 counterpart. 2, Ademosyne kirgizica Ponomarenko, 1969, holotype PIN 2096/1369. 3, 4, A. kirgizica Ponomarenko, 1969 paratype PIN 2555/1696 print and counterprint. 5, A. bacca Ponomarenko, 1969, holotype PIN 2240/310. 6, A. bacca Ponomarenko, 1969, paratype PIN 2240/294. 7, A. ellyptica Ponomarenko, 1969, holotype PIN 2240/224. 8, Cephalosyne capitata Ponomarenko, 1969 holotype PIN 2240/302. Scale bars equal 1 mm.
FIGURE 2. Dolichosyne Ponomarenko, 1969 line drawings. 1, D. confragosa PIN 2785-2675. 2, 3, D. confragosa paratype PIN 2070-1551 part and counterpart. 4, D. rostrata holotype PIN 2555 in Ademosynidae (Insecta: Coleoptera): A new concept for a coleopteran key taxon and its phylogenetic affinities to the extant suborders
FIGURE 2. Dolichosyne Ponomarenko, 1969 line drawings. 1, D. confragosa PIN 2785-2675. 2, 3, D. confragosa paratype PIN 2070-1551 part and counterpart. 4, D. rostrata holotype PIN 2555/1735. 5, D. sulcata holotype PIN 2240-274 part. 6, D. sulcata paratype PIN 2240-234 part. 7, D. sulcata paratype PIN 2240-305 part. 8, D. sulcata PIN 2785-2659. Scale bars equal 1 mm. Label abbreviations: c.e – compound eye; cx1, 2 – pro- and mesocoxae; eps3 – metepisternum; gul – gular plate (gula); i.p1 – prosternal intercoxal process; l.d – pronotal longitudinal depression; l.i – lateral incisions of submentum; l.r – longitudinal ridge; msc – mesoscutum; mt – mentum; par – parietal; pl1 – propleurit; p.mt – prementum; p.t.p. – posterior tentorial pit; scl – scutellum; sct – mesoscutum; smt – submentum; s.scl – subocular suture; tr1 – protrochanter; tr3 - metatrochanter.
FIGURE 1. Dolichosyne Ponomarenko, 1969 habitus photos. 1, D. confragosa PIN 2785-2675 new material. 2, 3, D. confragosa paratype PIN 2070-1551 part and counterpart. 4, D. rostrata holotype PIN 2555 in Ademosynidae (Insecta: Coleoptera): A new concept for a coleopteran key taxon and its phylogenetic affinities to the extant suborders
FIGURE 1. Dolichosyne Ponomarenko, 1969 habitus photos. 1, D. confragosa PIN 2785-2675 new material. 2, 3, D. confragosa paratype PIN 2070-1551 part and counterpart. 4, D. rostrata holotype PIN 2555/1735. 5, D. sulcata holotype PIN 2240-274 part. 6, D. sulcata paratype PIN 2240-234 part. 7, D. sulcata paratype PIN 2240-305 part. 8, D. sulcata PIN 2785-2659. Scale bars equal 1 mm.
FIGURE 7 in Ademosynidae (Insecta: Coleoptera): A new concept for a coleopteran key taxon and its phylogenetic affinities to the extant suborders
FIGURE 7. Strict consensus tree of 71 minimum length trees (NONA, ratchet, 1000 replicates, all characters unweighted and unordered), 91 steps, consistency index 0.43. Monopyhyly of †Ademosynidae supported by two unambiguous apomorphies: anterior pronotal margin convex and overlapping posterior part of head (18.1), anterolateral pronotal angles absent (19.1). Systematic position of †Ademosynidae and Archosyne ambiguous.
FIGURE 6 in Ademosynidae (Insecta: Coleoptera): A new concept for a coleopteran key taxon and its phylogenetic affinities to the extant suborders
FIGURE 6. Comparative morphology of †Ademosynidae, polyphagan beetles and stem group Coleoptera. 1, 2, Stenocyphon sasaji Lawrence, 2001. 3, 4, Epiphanis cornutus (Eschscholtz, 1829). 5, 6, Dolichosyne sulcata Ponomarenko, 1969. 7, 8 Gnathosyne akkolkensis Ponomarenko, 1969. 9, 10, Archosyne permiana Ponomarenko et al., 2014. 11, 12, Tecticupes heckeri Rohdendorf, 1961 (†Taldycupedidae). 13, 14, Permocupes sojanensis Ponomarenko, 1963 (†Permocupedidae). Scale bars equal 1mm. Label abbreviations: mb.c – membranous connection.
Figure 1 in The bee subtribe Epanthidiina, a new taxon for the Neotropical clade of Anthidiini (Hymenoptera, Apidae, Megachilinae)
Figure 1 Species of Urbanthidium gen.nov. A-C,Urbanthidium gracile. A.Female, habitus in lateral view.B. Female head, in frontal view. C.Male head (holotype), in frontal view.D-F, Urbanthidium psaenythioides. D. Female, habitus in lateral view. E.Female head, in frontal view. F. Male head, in frontal view. A and D, and B, C, E and F, respectively at same scale.
EOL computer vision pipelines: Object Detection for Image Cropping: Multi-taxon
<p>Produced by EOL Multitaxon Object Detection Model. Automatically crops images of snakes & lizards (Squamata), beetles (Coleoptera), frogs (Anura), and carnivores (Carnivora) to square dimensions centered around animal(s). Model available in the <a href="https://www.kaggle.com/models/eolorg/multitaxa-crops-thumbnails" target="_blank" rel="noopener">EOL Model Zoo on Kaggle</a>.</p> <ul> <li>Anura = 42646 rows</li> <li>Coleoptera = 115276 rows</li> <li>Squamata = 132680 rows</li> <li>Carnivora = 31132 rows</li> </ul>
FIG. 3 in Boa latotecta Hermann, 1804, a junior subjective synonym of Bungarus caeruleus (Schneider, 1801) (Serpentes, Elapidae), with comments on the types of the latter taxon
FIG. 3. — Handwritten notes on Boa latotecta Hermann, 1804 by F. L. Hammer. Several notes were added at a later time by subsequent curators.
FIG. 1 in Boa latotecta Hermann, 1804, a junior subjective synonym of Bungarus caeruleus (Schneider, 1801) (Serpentes, Elapidae), with comments on the types of the latter taxon
FIG. 1. — Russell's (1796) illustration of the "Gedi Paragoodoo"; the specimen depicted is one of the syntypes of Pseudoboa caerulea Schneider, 1801.
Figure. 8. - Pelvicachromis kribensis. A, B in Revision of the Pelvicachromis taeniatus-group (Perciformes), with revalidation of the taxon Pelvicachromis kribensis (Boulenger, 1911) and description of a new species
Figure. 8. - Pelvicachromis kribensis. A, B: Two syntypes out of BMNH 1902.11.12.164-165 and BMNH 1912.6.29.19-28; A: Male, SL 51.2 mm, B: Female SL 40.8 mm, Cameroon, Kribi River at Kribi, South Cameroon; C: Male; D: Female from Kienke River system (Kribi), not preserved, not measured; E: Male; F: Female from Lobe River system (Lobe Masaa, SL 42.0 + 35.8 mm SL, preserved after photographing as NMW 95242); G: Male; H: female from Nyong River system (Dehane, male not measured, not preserved, female 36.2 mm SL, preserved after photographing as NMW 95240); I: Male; J: Female from Moliwe River (Moliwe village, 57.8+33.7 mm SL, preserved after photographing as NMW 95241).
Figure 6 in Revision of the Pelvicachromis taeniatus-group (Perciformes), with revalidation of the taxon Pelvicachromis kribensis (Boulenger, 1911) and description of a new species
Figure 6. - Type locality of Pelvicachromis drachenfelsi sp. nov.; Cameroon, Wouri River system, Region of Yabassi, tributary of Wouri River on Road Douala-Yabassi, 04°18.250' N, 10°02.971' E, dry season, Feb. 2009. Figure 7. - Pelvicachromis taeniatus. A: Holotype, BMNH 1901.1.28.21, male, 60.3 mm SL, Nigeria, mouth of Ethiop River, Niger Delta (Sapele Station); B: Male from Benin, Iguidi River, Niger River system, collection 2003 by A.L.; C: Male from Nigeria, Niger River system, collection of Otto Gartner; D: Female from Nigeria, Niger River system, from trade; live specimens not measured, not preserved.
Figure 2 in Revision of the Pelvicachromis taeniatus-group (Perciformes), with revalidation of the taxon Pelvicachromis kribensis (Boulenger, 1911) and description of a new species
Figure 2. - Holotype of Pelvicachromis drachenfelsi sp. nov., NMW 95237, male, 60.3 mm SL, Cameroon, Wouri River system, Region of Yabassi, tributary of Wouri River on Road Douala-Yabassi, 04°18.250' N, 10°02.971' E. Figure 3. - One of the paratypes of Pelvicachromis drachenfelsi sp. nov., out of NMW 95238, female, 43.6 mm SL, Cameroon, Wouri River system, Region of Yabassi, tributary of Wouri River on Road Douala-Yabassi, 04°18.250' N, 10°02.971' E. Figure 4. - Live specimens of P. drachenfelsi sp. nov. in aquaria, collected at type locality by A.L., not measured, not preserved. A: Two males, specimen below submissive with horizontal black band; B: Male in dominant coloration; C: Female in display; D: Female guarding fry.
Figure 5 in Revision of the Pelvicachromis taeniatus-group (Perciformes), with revalidation of the taxon Pelvicachromis kribensis (Boulenger, 1911) and description of a new species
Figure 5. - Distribution map for Pelvicachromis drachenfelsi sp. nov. (black area), P. kribensis (dotted area) and P. taeniatus (hachured area).
EOL taxon identifier map
<p>A mapping of taxon identifiers from major classification sources to EOL, of the form:</p> <p>node_id, resource_pk, resource_id, page_id, preferred_canonical_for_page</p> <ul> <li>node_id: internal to EOL; useful for some API calls</li> <li>resource_pk: identifier according to the classification provider</li> <li>resource_id: identifies the classification provider (see below)</li> <li>page_id: EOL taxon concept identifier; official, for sharing</li> <li>preferred_canonical_for_page: canonical name preferred by EOL for this taxon concept</li> </ul> <p>resource_ids, their names and descriptions, are available at: <a href="https://eol.org/resources.json" target="_blank" rel="nofollow noopener">https://eol.org/resources.json</a> </p> <div> <p>There is also a summary file with resources ids, links, and resource names here: <a href="https://github.com/KatjaSchulz/eolResources">https://github.com/KatjaSchulz/eolResources</a></p> </div> <p>To view one at a time: <a href="https://eol.org/resources/" target="_blank" rel="nofollow noopener">https://eol.org/resources/</a>[enter ID here]</p> <p>Included classification providers:</p> <p>1-> EOL Dynamic Hierarchy version 2.1, <a href="https://eol.org/resources/1">https://eol.org/resources/1</a><br>5 -> IUCN, <a href="https://eol.org/resources/5">https://eol.org/resources/5</a> <br>459 -> World Register of Marine Species (WoRMS), <a href="https://eol.org/resources/459">https://eol.org/resources/459 </a><br>676 -> National Center for Biotechnology Information (NCBI), <a href="https://eol.org/resources/676">https://eol.org/resources/676</a><br>695 -> Integrated Taxonomic Information System (ITIS), <a href="https://eol.org/resources/695">https://eol.org/resources/695</a> <br>724 -> EOL Dynamic Hierarchy version 1.1, <a href="https://eol.org/resources/724">https://eol.org/resources/724</a> <br>767 -> GBIF classification, <a href="https://eol.org/resources/767">https://eol.org/resources/767</a> <br>1072 -> Wikidata hierarchy, <a href="https://eol.org/resources/1072">https://eol.org/resources/1072</a> <br>1162 -> Catalogue of Life (COL), <a href="https://eol.org/resources/1162">https://eol.org/resources/1162</a> <br>1174 -> Dynamic Hierarchy Version 2.2.3 - Test, <a href="https://eol.org/resources/1174">https://eol.org/resources/1174</a></p> <p>commas within entries are "escaped, by, quoting", and quotes-within-quotes are ""double quoted"" </p> <p>There is also a much larger mapping file for all EOL resources: <a href="../doi/10.5281/zenodo.13253932">EOL full taxon identifier map</a></p>
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.