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Figures 49–58 in Lectotype designations in Tetratomidae, Melandryidae, Boridae and Mycteridae, based on material in the Museum of Comparative Zoology, Harvard University (Coleoptera: Tenebrionoidea)
Figures 49–58. Dorsal and lateral habitus of newly designated lectotypes. 49–50. Carebara longula LeConte, lectotype. 49) Dorsal habitus. 50) Lateral habitus. Scale lines = 2.0 mm. 51–52. Hallomenus quadripustulata Melsheimer, lectotype. 51) Dorsal habitus. 52) Lateral habitus. Scale lines = 1.0 mm. 53–54. Mycterus canescens Horn, male lectotype. 53) Dorsal habitus. 54) Lateral habitus. Scale lines = 2.0 mm. 55–56. Mycterus quadricollis Horn, male lectotype. 55) Dorsal habitus. 56) Lateral habitus. Scale lines = 2.0 mm. 57–58. Crymodes discicollis LeConte, lectotype. 57) Dorsal habitus. 58) Lateral habitus. Scale lines = 2.0 mm.
Figures 1–13 in Lectotype designations in Tetratomidae, Melandryidae, Boridae and Mycteridae, based on material in the Museum of Comparative Zoology, Harvard University (Coleoptera: Tenebrionoidea)
Figures 1–13. Dorsal and lateral habitus of newly designated lectotypes. 1–2. Hallomenus scapularis Melsheimer, lectotype. 1) Dorsal habitus. 2) Lateral habitus. Scale lines = 2.0 mm. 3–4. Hallomenus serricornis LeConte, lectotype. 3) Dorsal habitus. 4) Lateral habitus. Scale lines = 2.0 mm. 5–6. Hypulus bicinctus Horn, lectotype. 5) Dorsal habitus. 6) Lateral habitus. Scale lines = 2.0 mm. 7–8. Dircaea liturata LeConte, male lectotype. 7) Dorsal habitus. 8) Lateral habitus. Scale lines = 2.0 mm. 9–10. Dircaea fusca LeConte, female lectotype. 9) Dorsal habitus. 10) Lateral habitus. Scale lines = 2.0 mm. 11–12. Dircaea prona LeConte, male lectotype. 11) Dorsal habitus. 12) Lateral habitus. Scale lines = 5.0 mm. 13). Dircaea riversi LeConte, female lectotype, dorsal habitus. Scale line = 5.0 mm.
Figs. 19–30 in Kartika Dewi, Hideo Hasegawa & Mitsuhiko Asakawa (2014) Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera. Raffles Bulletin of Zoology 62: 647-654
Figs. 19–30. Syphacia (Segienamsyphacia) yuniae, new species from Eropeplus canus in south Sulawesi, Indonesia. 19, male, holotype, lateral view; 20, cephalic end of male, apical view; 21, midbody in cross section of male; 22, midbody in cross section of male, higher magnification; 23, posterior portion of male, ventral view; 24, posterior portion of male; lateral view; 25, spicule and gubernaculum, lateral view; 26, female, lateral view; 27, cephalic end of female, apical view; 28, midbody in cross section of female; 29, egg; 30, excretory pore and vulva, showing poorly developed vagina
FIG. 3 in Proposed Rules for the incorporation of nomina of higher-ranked zoological taxa in the International Code of Zoological Nomenclature. 2. The proposed Rules and their rationale
FIG. 3. — Same relationships as in Figure 2, but expressed under the form of a hierarchical inclusion of members into sets.
FIG. 2 in Proposed Rules for the incorporation of nomina of higher-ranked zoological taxa in the International Code of Zoological Nomenclature. 2. The proposed Rules and their rationale
FIG. 2. — Diagrammatic illustration (as cladograms) of the different kinds of relationships between taxa in a given ergotaxonomy (G1 to G8 are genera; F1 to F4 are families; O1 and O2 are orders; C1 is a class) and nesonyms (N1 to N6) proposed for various protaxa composed of some of the genera G1 to G8. See text for explanation.
FIG. 1 in Proposed Rules for the incorporation of nomina of higher-ranked zoological taxa in the International Code of Zoological Nomenclature. 2. The proposed Rules and their rationale
FIG. 1. — Diagrammatic illustration (as cladograms) of the different kinds of relationships between taxa in a given ergotaxonomy (G1 to G8 are genera; F1 to F4 are families; O1 and O2 are orders; C1 is a class) and nomina (N1 to N12) proposed for various protaxa composed of some of the genera G1 to G8. See text for explanation.
Volker Mahnert on his first zoological expedition as curator at the MHNG; together with Ivan Löbl (left) on the Ionian island of Zakynthos in 1971 (photo B. Hauser). in Volker Mahnert 3 December 1943 – 23 November 2018
Volker Mahnert on his first zoological expedition as curator at the MHNG; together with Ivan Löbl (left) on the Ionian island of Zakynthos in 1971 (photo B. Hauser).
Figs 10–18 in An annotated type catalogue of the Cerambycidae (Insecta: Coleoptera) in the Zoological Museum Hamburg
Figs 10–18. Secondary type specimens deposited at the Zoological Museum Hamburg. 10. Zographus regalis poleti Le Moult, 1939, paratype (ZMH 843927), labels. 11–12. Zographus regalis favareli Le Moult, 1939, paratype (ZMH 824644). 13–14. Zographus regalis dyoti Le Moult, 1939, paratype (ZMH 843084). 15–16. Zographus regalis boni Le Moult, 1939, paratype (ZMH 843939). 17–18. Zographus regalis lualabenis Le Moult, 1939, paratype (ZMH 843029). Scale bars = 1 cm.
Figs 1–9 in An annotated type catalogue of the Cerambycidae (Insecta: Coleoptera) in the Zoological Museum Hamburg
Figs 1–9. Primary and secondary type specimens deposited at the Zoological Museum Hamburg. 1–2. Primary type: Ites colasi Lepesme, 1943, ♂, holotype (ZMH 824639). 3–9. Secondary types. 3–4. Acridoschema favareli Le Moult, 1938, paratype (ZMH 824657). 5–6. Cyclopeplus peruvianus Tippmann, 1939, ♀, paratype (ZMH 824664). 7–8. Leucographus catalai Villiers, 1939, sex, paratype (ZMH 824638). 9. Zographus regalis poleti Le Moult, 1939, dorsal view, sex, paratype (ZMH 843927) Scale bars = 1 cm.
Harvard Museum of Comparative Zoology
Data from the ten research collections of the Museum of Comparative Zoology at Harvard University.<p></p>Data from the ten research collections of the Museum of Comparative Zoology at Harvard University.
Figure 1 in Notes on specimens of the Glossy Mangrove Snake (Gerarda prevostiana) in the collection of the Zoological Survey of India, Kolkata along with past records from India
Figure 1. Gerarda prevostiana.
Supplementary files and data Files for "Discordance between mitochondrial, nuclear, and symbiont genomes in aphid phylogenetics: who is telling the truth?" Zoological journal of the Linnean society, 2024, vol 1, issue 4. https://doi.org/10.1093/zoolinnean/zlae098
<p>This repository comprises</p> <ul> <li>a file with all supplementary Tables (<strong>Supplementary_Tables</strong>). Table S1: Collection details and voucher ID for aphid samples from the CBGP-Inrae collection, data origin is given for other specimens. Table S2: Amplification success of long range DNA fragments from mitochondrial genomes . Table S3: Primers used for fluidigm aplification of nuclear genes and sequencing success. Table S4. Genomic features of newly sequenced Buchnera aphidicola with aphid taxonomic affiliation. Table S5: Summary of models used for each ML analysis and corresponding log-likelihood score of the best tree.Table S6: Output of RERConverge analyses.</li> <li>two Supplementary figures: Figure S1: Workflow of phylogenetic analyses as implemented on each dataset. Figure S2: Plot depicting the genome-wide pattern of molecular evolution (dN/dS) between disymbiotic (n = 15) and monosymbiotic aphid (n = 45) branches across the ML phylogeny (horizontal bars indicate 95% CI of the means). <em>P</em> value was calculated by using Wilcoxon Rank test.</li> <li>a word file (Text S1) with : Details of protocol for obtaining mitochondrial genomes through long-range DNA amplifications and Illumina sequencing, and two-step PCR protocole.</li> <li>an archive (archive1) with the mitochondrial AA and DNA matrices and alternative phylogenetic trees under ML and Bayesian analyses ; </li> </ul> <ul> <li>an archive (archive2) with the nuclear AA and DNA matrices and alternative phylogenetic trees under ML and Bayesian analyses</li> <li>an archive (archive 3) with the twelve new <em>Buchnera</em> genome drafts.</li> <li> an archive (archive4) with the <em>Buchnera</em> AA matrices and alternative topologies </li> </ul> <p> </p>
University of California Santa Barbara Invertebrate Zoology Collection (UCSB-IZC)
<p>Data archive (Darwin Core) from University of California Santa Barbara Invertebrate Zoology Collection, Cheadle Center for Biodiversity and Ecological Restoration.</p> <p>Collection Statistics</p> <ul> <li>40,220 specimen records</li> <li>38,705 (96%) georeferenced</li> <li>19,899 (49%) with images (31,098 total images)</li> <li>69 GenBank genetic references</li> <li>11,674 (29%) identified to species</li> <li>367 families</li> <li>903 genera</li> <li>915 species</li> <li>937 total taxa (including subsp. and var.)</li> </ul>
Fig. 1 in Cytogenetic Examination Of South American Tapirs, Tapirus Terrestris (Perissodactyla, Tapiridae), From The Wroclaw Zoological Garden
Fig. 1. Karyograme of the lowland tapir (Tapirus terrestris) from the Wroclaw Zoological Garden.
Fig. 2 in For Est Ga Ps E Ffec T On G Ro Und V Ege Tatio N And Forest Regeneration In The Vištytgiris Botanical-Zoological Reserve
Fig. 2. Dominated tree species in small, medium-size and large forest gaps.
Fig. 3 in For Est Ga Ps E Ffec T On G Ro Und V Ege Tatio N And Forest Regeneration In The Vištytgiris Botanical-Zoological Reserve
Fig. 3. Projection coverage of ground vegetation in small, medium-size and large forest gaps.
Figure 1 in Phlebotominae (Diptera: Psychodomorpha: Psychodidae) deposited in the Museum of Zoology of the University of São Paulo
Figure 1. Map of Latin America with the origins (countries) and Brazilian states of the specimens types of sand flies deposited in the Invertebrate Collection of the Museum of Zoology of the University of São Paulo (MZUSP/SP).
Figure 2 in Phlebotominae (Diptera: Psychodomorpha: Psychodidae) deposited in the Museum of Zoology of the University of São Paulo
Figure 2. Map of Latin America with the origins (countries) and states of Brazil of the specimen non-types of sand flies deposited in the Invertebrate Collection of the Museum of Zoology of the University of São Paulo (MZUSP/SP).
Fig 8 in Publishing trends and productivity in insect taxonomy from 1946 through 2012 based on an analysis of the Zoological Record for four species-rich families
Fig 8. Number of co-authored papers with authors from different continents from 1946 to 2012.
Fig. 7 in Publishing trends and productivity in insect taxonomy from 1946 through 2012 based on an analysis of the Zoological Record for four species-rich families
Fig. 7. Percentage of articles with co-authors from 1946 to 2012.
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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)
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.