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Fig. 6 in Taxonomy and ontogeny of the Lituitida (Cephalopoda) from Orthoceratite Limestone erratics (Middle Ordovician)
Fig. 6. Shell injuries of lituitid specimens (shown in the centre to the right in both A and B). A. Lituites bottkei sp. nov., holotype MB.C.29651 (Bottke Coll.) from Gärdslösa (Island of Öland, Sweden). B. Rhynchorthoceras angelini (Boll, 1857), specimen MB.C.29656 (Bottke Coll.) from Skärlöv (Island of Öland). Scale bar units = 1 mm.
Fig. 9 in Taxonomy and ontogeny of the Lituitida (Cephalopoda) from Orthoceratite Limestone erratics (Middle Ordovician)
Fig. 9. Rhynchorthoceras angelini (Boll, 1857); reproductions of illustrations by Remelé (1890). A. Specimen MB.C.11724 from Heegermühle (Brandenburg), illustrated by Remelé (1890: pl. 3 fig. 5). B. Specimen MB.C. 11725.1 from Heegermühle (Brandenburg), illustrated by Remelé (1890: pl. 5 fig. 3). C. Specimen from Heegermühle (Brandenburg), illustrated by Remelé (1890: pl. 5 fig. 4). D. Specimen MB.C.11732.2 from Heegermühle (Brandenburg), illustrated by Remelé (1890: pl. 5 fig. 5). E. Specimen MB.C.11726.1 from Heegermühle (Brandenburg), illustrated by Remelé (1890: pl. 5 fig. 6). F. Specimen MB.C.11716 from Joachimsthal (Brandenburg), illustrated by Remelé (1890: pl. 5 fig. 7). G. Specimen MB.C.22577 from Heegermühle, illustrated by Remelé (1890: pl. 6 fig. 6). Scale bar units = 1 mm.
FIG. 5 in Taxonomy of Mexican and Central American Members of Solanum Series Conicibaccata (sect. Petota)
FIG. 5. Neighbor-joining tree (Jaccard's coefficient) based on 64 polymorphic RAPD fragments of the Mexican and Central American species of Solanum series Conicibaccata and comparison species. The numbers after the species correspond to those in Table 2.
Fig. 2 in Taxonomy and ontogeny of the Lituitida (Cephalopoda) from Orthoceratite Limestone erratics (Middle Ordovician)
Fig. 2. Historical illustrations of Lituites specimens of Breyn (1732) (left) and de Montfort (1808) (right).
Fig. 3. A. Map with localities from which the herein studied specimens originated. B in Taxonomy and ontogeny of the Lituitida (Cephalopoda) from Orthoceratite Limestone erratics (Middle Ordovician)
Fig. 3. A. Map with localities from which the herein studied specimens originated. B. Localities in north-eastern Germany and western Poland. C. Localities in the Island of Öland (Sweden). Map prepared using the QGIS software (using the open-source World Map, OpenStreetMap and "WISE Large rivers and large lakes F1v1 geodatabase" of the European Environment Agency). Number coding of localities: Norway: 1 – Oslo (former Christiania); Estonia: 2 – Karula (Lääne-Viru County), 3 – Tallinn (former Reval, Harju County); Germany, Berlin: 4 – Schmargendorf, 5 – Tempelhofer Feld; Germany, Brandenburg: 6 – Eberswalde, 7 – Fresdorf, 8 – Gellmersdorf (Angermünde), 9 – Gransee (Ruppin), 10 – Heegermühle, 11 – Hohensaaten, 12 – Joachimsthal, 13 – Karlsröhe (Lichterfelde, Eberswalde), 14 – Kranepuhl, 15 – Niederfinow, 16 – Niederlehme, 17 – Oderberg, 18 – Potsdam, 19 – Ringenwalde, 20 – Schmetzdorf, 21 – Schwedt, 22 – Teschendorf (Löwenberg), 23 – Vierraden (Schwedt), 24 – Werbellinsee, 25 – Werder (Potsdam); Germany, Mecklenburg-Vorpommern: 26 – Bansin (Usedom), 27 – Boltenhagen (Gross Klütz Höved), 28 – Dwasieden (Rügen), 29 – Göhren, 30 – Gross Zicker (Rügen), 31 – Hiddensee Island, 32 – Klütz Höved, 33 – Lansen (Malchin), 34 – Lebbin, 35 – Mukran (Sassnitz, Rügen), 36 – Neu-Ruthenbeck (Parchim), 37 – Rerik, 38 – Röbel, 39 – Usedom, 40 – Ventschow; Germany, Saxony-Anhalt: 41 – Schlagenthin; Poland, Kujawi-Pomerania: 42 – Bydgoszcz (former Bromberg), 43 – Osielsk (Bydgoszcz); Poland, Masovia: 44 – Czerwińsk; Poland, Pomerania: 45 – Juszkowo (former Gischkau), 46 –Skowarcz (former Schönwarling); Poland, Silesia: 47 – Żory (former Sorau); Poland, West Pomerania: 48 – Barnówko (former Berneuchen), 49 – Dewitz Castle (Dobra, former Dewitzburg bei Daber), 50 – Chrząszczewska Island (former Gristow), 51 – Ustronie Morskie (former Henkenhagen); Russia: 52 – Kaliningrad; Sweden, Dalarna: 53 – Fjecka (Boda), 54 – Skattungbyn; Sweden, Öland: 55 – Böda Hamn, 56 – Gärdslösa, 57 – Kårehamn, 58 – Skärlöv, 59 – Tjusby, 60 – Triberga; Sweden, Skåne: 61 – Södra Sandby.
FIG. 4 in Taxonomy of Mexican and Central American Members of Solanum Series Conicibaccata (sect. Petota)
FIG. 4. Variation in leaves of all four species of Mexican and Central American representatives of Solanum series Conicibaccata.
FIG. 1 in Taxonomy of Mexican and Central American Members of Solanum Series Conicibaccata (sect. Petota)
FIG. 1. Alternative classifications of the Mexican and Central American species of Solanum series Conicibaccata.
Fig. 14 in Late Devonian-early Carboniferous ostracods (Crustacea) from South China: taxonomy, diversity and implications
Fig. 14. Location of the different ostracod mega-assemblages along the platform (modified from Crasquin & Horne 2018; redrawn, with minor modifications, from Casier 2008).
Fig. 12 in Late Devonian-early Carboniferous ostracods (Crustacea) from South China: taxonomy, diversity and implications
Fig. 12. Individual rarefaction curves (A) and evolution of the Shannon-Wiener (B) and Simpson indices across the Blue Snake section. Orange: Association A. Grey: Association B. Green: Association C.
Fig. 13 in Late Devonian-early Carboniferous ostracods (Crustacea) from South China: taxonomy, diversity and implications
Fig. 13. Circular diagrams of relative abundance (upper = number of specimens per family) and faunal composition (lower = number of species per family) of the assemblages in the Blue Snake section.
Fig. 4. H in Late Devonian-early Carboniferous ostracods (Crustacea) from South China: taxonomy, diversity and implications
Fig. 4. H/L scatter plots of all specimens belonging to the four new species described in this contribution. A. Clavofabella? lanshella Guillam & Forel sp. nov. B. Sansabella gelaohensis Guillam & Forel sp. nov. C. Sulcella baisuzhena Guillam & Forel sp. nov. D. Cytherellina caerulea Guillam & Forel sp. nov.
Fig. 2. A in Late Devonian-early Carboniferous ostracods (Crustacea) from South China: taxonomy, diversity and implications
Fig. 2. A. Location map of the Guizhou Province in China. B. Geological map of the Blue Snake Section and its surroundings (modified after Song & Gong 2019 and Ma et al. 2016). The red spot indicates the location of the Blue Snake section and the black circle indicates the location of Dushan city.
Fig. 1 in Late Devonian-early Carboniferous ostracods (Crustacea) from South China: taxonomy, diversity and implications
Fig. 1. Palaeogeographic map with the rough location of the Blue Snake section (red spot) during the late Devonian (modified from Carmichael et al. 2019).
Fig. 3 in Application Of Dna Barcoding In Taxonomy And Phylogeny: An Individual Case Of Coi Partial Gene Sequencing From Seven Animal Species
Fig. 3. Phylogenetic position of Macrobiotus sp., Bayesian inference phylogenetic tree. Sequences obtained by us are written in bold.
Fig. 1 in Application Of Dna Barcoding In Taxonomy And Phylogeny: An Individual Case Of Coi Partial Gene Sequencing From Seven Animal Species
Fig. 1. Phylogenetic position of D. lindholmi and L. a. exigua, Bayesian inference phylogenetic tree. Sequences obtained by us are written in bold.
Fig. 2 in On The Taxonomy Of The Genera Sesapa And Nipponasura (Lepidoptera, Erebidae, Arctiinae)
Fig. 2. Sesapa male genitalia, ventral view: 1 — S. inscripta (holotype of S. erubescens), China, Shanghai, slide BMNH(E) Arct-4660 m Holloway (©NHM); 2 — S. sanguinea, China, Shanghai, slide AV1918m Volynkin; 3 — S. inouei, Japan, Iriomote Isl., slide BMNH(E) Arct-6559 m Volynkin (©NHM).
Fig. 1 in On The Taxonomy Of The Genera Sesapa And Nipponasura (Lepidoptera, Erebidae, Arctiinae)
Fig. 1. Sesapa spp., adults, dorsal view: 1 — S. inscripta, {, N China (©NHM); 2 — S. inscripta, holotype {of S. erubescens, China, Shanghai (©NHM); 3 — S. inscripta,}, China, Hunan prov. (ZFMK); 4 — S. sanguinea, holotype {, China (©NHM); 5 — S. sanguinea, {, China, Shanghai (ZFMK); 6 — S. sanguinea,}, China, Shanghai (ZFMK); 7 — S. inouei, paratype {, Japan, Ishigaki Isl. (©NHM); 8 — S. inouei,}, Japan, Iriomote Isl. (©NHM).
Fig. 3 in On The Taxonomy Of The Genera Sesapa And Nipponasura (Lepidoptera, Erebidae, Arctiinae)
Fig. 3. Sesapa spp., female genitalia, ventral view: 1 — S. inscripta, China, Hunan Prov., slide MWM 31462 Volynkin; 2 — S. sanguinea, China, Shanghai, slide AB1926f Volynkin; 3 — S. inouei, Japan, Ryukyu Isl., slide Inoue 6802 (©NHM).
Map 3 in On the taxonomy and zoogeography of some Oxypoda species of the West Palaearctic region (Coleoptera: Staphylinidae: Aleocharinae)
Map 3: Distribution of Oxypoda subnitida MULSANT & REY based on revised records (triangles) and records reported by TRONQUET (2004) (circles).
Figs 24-34 in On the taxonomy and zoogeography of some Oxypoda species of the West Palaearctic region (Coleoptera: Staphylinidae: Aleocharinae)
Figs 24-34: Oxypoda mutata SHARP (24-30) from Germany (24-25, 27, 30) and Italy (26, 28-29), and O. pungens nov.sp. (31-34): (24-26, 31) median lobe of aedeagus in lateral view; (27-28, 32) paramere; (29-30) apical lobe of paramere; (33-34) spermatheca. Scale bars: 0.1 mm.
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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.