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FIGURE 4 in Phorbas topsenti and Phorbas tailliezi (Demospongiae, Poecilosclerida), new names for the Mediterranean ' Phorbas paupertas ' and ' Phorbas coriaceus '
FIGURE 4. Phorbas topsenti sp. nov. A. Semi-thin section in the choanosome, showing archaeocytes (AR), choanocyte chambers (CC), spicule in cross section (Sp), a spherulous cell (Sc) and vacuolar cells (Vc). B. Choanocyte chamber (TEM). C. Vacuolar cell. D. Vacuolar cell, archaeocyte and spiral-shaped bacteria. E. Spherulous cell; N, nucleus; insert, enlargement of the crystalline inclusion in the nucleus. F. Fascicle of collagen fibrils and rod-like bacteria. G. A spiralshaped bacterium.
FIGURE 6 in Phorbas topsenti and Phorbas tailliezi (Demospongiae, Poecilosclerida), new names for the Mediterranean ' Phorbas paupertas ' and ' Phorbas coriaceus '
FIGURE 6. Hamigera hamigera (Schmidt, 1862). Spicules of a specimen from Tunisia (Djerba, 29-9-1989). A. Strongyle. B. Tip of strongyle. C Style. D. Head of style. E. Isochelae.
FIGURE 1 in Phorbas topsenti and Phorbas tailliezi (Demospongiae, Poecilosclerida), new names for the Mediterranean ' Phorbas paupertas ' and ' Phorbas coriaceus '
FIGURE 1. Phorbas topsenti sp. nov. in situ view. A.. Specimen from the type-locality, Anse des Cuivres near Station Marine d'Endoume, Marseille, 7 m, 21 July 2005. B. Specimen from Lebanon, Beirut Harbor (33°54,36 N, 35°30,98 E), 15 m, 9 July 2003.
FIGURE 3 in Phorbas topsenti and Phorbas tailliezi (Demospongiae, Poecilosclerida), new names for the Mediterranean ' Phorbas paupertas ' and ' Phorbas coriaceus '
FIGURE 3. Phorbas topsenti sp.nov. Spicules. A. Strongyles. B. Acanthostyle I. C. Head of acanthostyle I. D. Acanthostyle II. E. Isochela. F. Immature isochela.
FIGURE 1. A–D in New names for some bryozoan homonyms
FIGURE 1. A–D. Reussinella arctica (Osburn, 1950), Pacific Institute of Bio-Organic Chemistry, Vladivostock (1/ 5614), off Bering Island, Russia (ST. 49, 55°25'5"N, 165°38'9"E, 119 m, coll. 24 August 1991 by A.V. Smirnov), Recent. A, Part of a linear colony branch; SEM scalebar 588 μm. B, Group of zooids with opercula and cuticularised epithelium retained; SEM scale bar 137 μm. C, Group of zooids, with two incomplete and one intact ovicell; SEM scalebar 182 μm. D, Zooid with marginal pores (presumably opesiular) and large distal pore-chamber; SEM scalebar 100 μm. E, F. Leiosellina rostrifera (Canu & Bassler, 1917), holotype (USNM 62597), SE of Bladen Springs, Alabama, Vicksburgian (Rupelian, Oligocene). E, Part of a branch; SEM scalebar 667 μm. F, Close-up of same specimen showing distribution of avicularia; SEM scale bar 179 μm.
FIGURE 1 in Three new species and a new name in Diptilomiopinae from China (Acari: Diptilomiopidae)
FIGURE 1. Acarhynchus ferrocalamus sp. nov. AL—Antero-lateral view of female; CGF—coxigenital area of female; D—dorsal aspect of female; E—empodium; GM—male genitalia; IG—internal genitalia, female; L1—Legs І; L2—Legs І; P—pedipalp (Scale bar: AL—38; CGF—48; D —52; E—12; GM—34; L1, L2—29; P—42).
FIGURE 3 in Three new species and a new name in Diptilomiopinae from China (Acari: Diptilomiopidae)
FIGURE 3. Diptacus symplocos sp. nov. AD—Antero-dorsal view of female; CGF—coxigenital area of female; E—empodium (enlarged); IG—internal genitalia, female; L—Lateral view of female; L1—Legs І; L2—Legs І (Scale bar: AD—54; CGF—44; E—19; L—90; L1, L2—49).
FIGURE 2 in Three new species and a new name in Diptilomiopinae from China (Acari: Diptilomiopidae)
FIGURE 2. Diptacus daphniphyllus sp. nov. CGF—coxigenital area of female; D—dorsal view of female; E—empodium; L1—Legs І; L2—Legs І; LS—lateral view of annuli (enlarged) (Scale bar: CGF—57; D—74; E—18; L1, L2—29).
FIGURES 1–9 in A new species of Micropodabrus Pic from Hainan, China, and a new name to replace M. coomani (Pic) (Coleoptera, Cantharidae)
FIGURES 1–9. Micropodabrus imparicornis, sp. nov. 1. male, dorsal view; 2. female, dorsal view; 3. antenna, ventral view; 4. antenna, dorsal view; 5. antennomere III, ventral view; 6. antennomere V, ventral view; 7. aedeagus, ventral view; 8. aedeagus, dorsal view; 9. aedeagus, lateral view. Scale bar a: 1-2, b: 7–9, c: 5–6, d: 3–4.
FIGURE 3 in The " false Eucoila " finally named; Striatovertex a new genus of Eucoilinae (Hymenoptera, Cynipoidea, Figitidae)
FIGURE 3. Mesosoma of a typical representative of Eucoilini, Trybliographa rapae (Westwood), lateral view, for comparison; pvc = posteroventral corner of metapleuron, sap = subalar pit. SEM image. FIGURE 4. Pronotal plate of a Striatovertex sp, anterior view. SEM image. FIGURE 5. Scutellum of a Striatovertex sp, dorsal view. SEM image.
FIGURE 7 in A new generic name, Semigothograptus, for Gothograptus? meganassa Rickards & Palmer, 2002, from the Silurian post- lundgreni Biozone recovery phase, and comparative morphology of retiolitids from the lowermost upper Homerian (upper Wenlock)
FIGURE 7. SEM pictures of nassa type genicular hoods of Gothograptus nassa Holm, 1890 and Semigothograptus meganassa (Rickards & Palmer, 2002). A – D. Semigothograptus meganassa, ZPAL G. 54 / 1, 1649.2 m, Bartoszyce IG- 1 drill core, Poland, uppermost part of dubius / nassa Biozone, A. hood of th 2 2 with marked surface bandages (arrow). B. enlargement showing pustules on parallel bandages (arrow), C. hood of th 1 2 with marked space between bandages (arrow), D. hood of th 3 2, surface bandages (arrow). E – H. Gothograptus nassa, Bartoszyce IG- 1, 1655.8 m, dubius / nassa Biozone, E. whole hood of th 3 2, irregular bandages arrowed, specimen ZPAL G. 54 / 3. F – G. enlargement of hood, ZPAL G. 54 / 9, F. showing pustules on parallel bandages (arrows), G. presenting edges of subjacent bandages (arrows). H. fragment of hood of mature specimen with thick layer of irregular bandages with distinctive pustules and parallel bandages (arrow), ZPAL G. 54 / 6.
FIGURE 6 in A new generic name, Semigothograptus, for Gothograptus? meganassa Rickards & Palmer, 2002, from the Silurian post- lundgreni Biozone recovery phase, and comparative morphology of retiolitids from the lowermost upper Homerian (upper Wenlock)
FIGURE 6. Silurian paleogeographic map with occurrences of Semigothograptus new genus. Localities and graptolite data derived from the following literature sources; 1. Northeastern Poland (Baltica): this paper. 2. United Kingdom (Avalonia): Rickards & Palmer 2002. 3. Bohemia: KozłowskāDawidziuk et al. 2001. 4. Thuringia (Saxo-Thuringia): Jaeger 1991.
FIGURE 5 in A new generic name, Semigothograptus, for Gothograptus? meganassa Rickards & Palmer, 2002, from the Silurian post- lundgreni Biozone recovery phase, and comparative morphology of retiolitids from the lowermost upper Homerian (upper Wenlock)
FIGURE 5. Stratigraphical ranges of the Semigothograptus meganassa (Rickards & Palmer, 2002) in the Homerian at United Kingdom (Rickards & Palmers 2002), Czech Republic (Kozłowska et al. 2001), Germany (Maletz 2010), and Poland (Kozłowska this paper). Abbreviations: L. Hom.—Lower Homerian, Rep.—Republic.
FIGURE 3 in A new generic name, Semigothograptus, for Gothograptus? meganassa Rickards & Palmer, 2002, from the Silurian post- lundgreni Biozone recovery phase, and comparative morphology of retiolitids from the lowermost upper Homerian (upper Wenlock)
FIGURE 3. Light photos of Semigothograptus meganassa (Rickards & Palmer, 2002), specimen broken into two parts, ZPAL G.54/2, Bartoszyce IG-1 drill core, depth 1649.2 m; A. with sediment before cleaning in HF; B–C. two sides of lower part of the fragment after cleaning in HF. Abbreviation: lat. ap. rod—lateral apertural rod.
FIGURE 4 in A new generic name, Semigothograptus, for Gothograptus? meganassa Rickards & Palmer, 2002, from the Silurian post- lundgreni Biozone recovery phase, and comparative morphology of retiolitids from the lowermost upper Homerian (upper Wenlock)
FIGURE 4. Comparison of the main structures of tubaria used in this study. A. Papiliograptus papilio Lenz & Kozłowska- Dawidziuk, 2002, Šiupyliai-69 borehole, Lithuania; B. Semigothograptus meganassa (Rickards & Palmer, 2002), ZPAL G.54/ 1, Bartoszyce IG-1 drill core, depth 1649.2 m; C-D. Gothograptus nassa Holm, 1890, C. young colony, reverse side, ZPAL G.54/4, Bartoszyce IG-1 drill core, depth 1656.8 m, D. mature colony with broken distal end, obverse side, ZPAL G.54/5, Bartoszyce IG-1 drill core, depth, 1655.8 m. Scale 1 mm for all pictures. Abbreviations: anc.—ancora, sl.—sleeve, umbr.— umbrella.
FIGURE 2 in A new generic name, Semigothograptus, for Gothograptus? meganassa Rickards & Palmer, 2002, from the Silurian post- lundgreni Biozone recovery phase, and comparative morphology of retiolitids from the lowermost upper Homerian (upper Wenlock)
FIGURE 2. Proximal ends showing ancora umbrella looping meshes of A. Gothograptus nassa Holm, 1890 early growth stage, ZPAL G.54/7, Bartoszyce IG-1 drill core, depth 1656.8 m; B. Semigothograptus meganassa (Rickards & Palmer, 2002), ZPAL G.54/1, Bartoszyce IG-1 drill core, depth 1649.2 m.
FIGURE 1 in A new generic name, Semigothograptus, for Gothograptus? meganassa Rickards & Palmer, 2002, from the Silurian post- lundgreni Biozone recovery phase, and comparative morphology of retiolitids from the lowermost upper Homerian (upper Wenlock)
FIGURE 1. Tubaria of A–C. Gothograptus nassa Holm, 1890 and D. Semigothograptus meganassa (Rickards & Palmer, 2002) from dubius/nassa Biozone, Bartoszyce IG-1 drill core, Poland. A. Gothograptus nassa, obverse view of mature tubarium with destroyed distal end, long morphotype, ZPAL G.54/5, 1655.8 m, B. latero-ventral view of mature tubarium with appendix, short morphotype, ZPAL G.54/8, 1658.8 m, C. long appendix, ZPAL G.54/10, 1656.8 m. D. Semigothograptus meganassa, obverse view, ZPAL G.54/1, 1649.2 m, uppermost part of dubius/nassa Biozone.
FIGURE 3 in A new species of Agapophytus Guérin named after the late Donald H. Colless (Diptera: Therevidae: Agapophytinae)
FIGURE 3. Agapophytus collessi sp. nov. Male genitalia. A. epandrium, dorsal; B, gonocoxites, ventral; C, gonocoxites, lateral; D, aedeagus, dorsal; E, aedeagus, lateral. Abbreviations: d, distiphallus; da, dorsal apodeme of parameral sheath; ea, ejaculatory apodeme; ga, gonocoxal apodeme; gs, gonostylus; h, hypandrium; igp, inner gonocoxal process; lea, lateral ejaculatory apodeme; va, ventral apodeme of parameral sheath. Scale line= 0.2 mm.
FIGURES 5–10 in New replacement name for Angustella Li, 1986 (Hemiptera: Cicadellidae: Evacanthinae: Evacanthini), with description of a new species
FIGURES 5–10 Angustuma rudorsuma sp. nov.: 5, Male pygofer side, lateral view; 6, Subgenital plates, ventral view; 7, Aedeagus, caudal view; 8, Aedeagus, lateral view; 9, Connective, dorsal view; 10, Style, ventral view.
FIGURES 1–4 in New replacement name for Angustella Li, 1986 (Hemiptera: Cicadellidae: Evacanthinae: Evacanthini), with description of a new species
FIGURES 1–4 Angustuma rudorsuma sp. nov.: 1, ♂, dorsal view; 2, ♂, lateral view; 3, ♂ head and thorax, dorsal view;4, ♂ face.
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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.