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430 results for “Queens”
FIGURE 7 in Morphology of immatures of the thelytokous ant, Monomorium triviale Wheeler (Formicidae: Myrmicinae: Solenopsidini) with descriptions of the extraordinary last-instar queen larvae
FIGURE 7. Habitus of last instar Monomorium larvae in ventral view. A. M. hiten worker; B. M. intrudens worker; C. M. chinense worker; D. M. hiten reproductive; E. M. intrudens reproductive; F. M. chinense reproductive. All scale bars = 200 μm.
FIGURE 3 in Morphology of immatures of the thelytokous ant, Monomorium triviale Wheeler (Formicidae: Myrmicinae: Solenopsidini) with descriptions of the extraordinary last-instar queen larvae
FIGURE 3. Second instar larva of Monomorium triviale. A. habitus in lateral view; B. habitus in ventral view; C. lateral body surface, showing the spiracles (white arrowheads) and unbranched hairs (black arrowheads) on the thoracic (T2–T3) and abdominal (A1) segments; D. mouthparts: labrum (lr), maxilla (mx), labium (lb), maxillary palp (pm) and labial palp (pl). Scale bars: 50 μm (A, B); 14.2 μm (C, D).
FIGURE 2 in Morphology of immatures of the thelytokous ant, Monomorium triviale Wheeler (Formicidae: Myrmicinae: Solenopsidini) with descriptions of the extraordinary last-instar queen larvae
FIGURE 2. Egg and first instar larva of Monomorium triviale. A. side view of egg; B. habitus of first instar larva in lateral view; C. habitus of first instar larva in ventral view; D. lateral body surface of first instar larva, showing the spiracles (white arrowheads) and unbranched hairs (black arrowheads) on the thoracic (T2–T3) and abdominal (A1) segments; E. mouthparts of first instar larvae: labrum (lr), maxilla (mx), mandible (M), labium (lb) and labial palp (pl). Scale bars: 33.3 μm (A, B, C); 14.2 μm (D, E).
FIGURE 5 in Morphology of immatures of the thelytokous ant, Monomorium triviale Wheeler (Formicidae: Myrmicinae: Solenopsidini) with descriptions of the extraordinary last-instar queen larvae
FIGURE 5. Last instar larva of Monomorium triviale queen. A. habitus in lateral view; B. habitus in ventral view; C. habitus in dorsal view; D. head and mouthparts: antenna (an), clypeus (cl), labrum (lr), maxilla (mx), labium (lb), maxillary palp (pm) and labial palp (pl); E. body hairs; F. doorknob-like tubercle; G. mid-ventral boss. Scale bars: 142 μm (A, B, C); 20 μm (D, E, F, G).
FIGURE 1 in Morphology of immatures of the thelytokous ant, Monomorium triviale Wheeler (Formicidae: Myrmicinae: Solenopsidini) with descriptions of the extraordinary last-instar queen larvae
FIGURE 1. Relationship between the maximum head capsule width (mm) and the maximum body length (mm) of Monomorium triviale larvae. The 1st instar (orange circle, n = 84), 2nd instar (blue triangle, n = 226), 3rd instar worker (green square, n =164) and last instar queen (brown cross, n = 116) larvae were determined by morphology and chaetotaxy. Histogram bin width of head capsule width and body length is 0.005 mm and 0.1 mm respectively.
FIGURE 4 in Morphology of immatures of the thelytokous ant, Monomorium triviale Wheeler (Formicidae: Myrmicinae: Solenopsidini) with descriptions of the extraordinary last-instar queen larvae
FIGURE 4. Third instar larva of Monomorium triviale. A. habitus in lateral view; B. habitus in ventral view; C. head and mouthparts: antenna (an), clypeus (cl), labrum (lr), maxilla (mx), labium (lb), maxillary palp (pm) and labial palp (pl); D. anchor-shaped body hairs on dorsal thoracic somite; E. lateral body surface, showing the spiracles (black arrowheads) on the thoracic (T2–T3) and abdominal (A1) segments. Scale bars: 100 μm (A, B); 25 μm (C, D, E).
FIGURE. FISH karyotype pattern diagram of 8 diploid hyacinth cultivars a.'Gypsy Queen'; b.'Purple sensation' c.'Pink pearl' d.'Gypsy princess' e.'Blue pearl' f.'Odysseus' g.'Yellowstone' h.'Red pearl' Red point: 45S rDNA loci; Green point: 45S rDNA loci; Yellow point: ITR sites in Physical mapping of 45S and 5S rDNA and telomeric repeat loci in eight diploid hyacinth cultivars
FIGURE. FISH karyotype pattern diagram of 8 diploid hyacinth cultivars a.'Gypsy Queen'; b.'Purple sensation' c.'Pink pearl' d.'Gypsy princess' e.'Blue pearl' f.'Odysseus' g.'Yellowstone' h.'Red pearl' Red point: 45S rDNA loci; Green point: 45S rDNA loci; Yellow point: ITR sites
FIGURE. Results of FISH physical mapping on metaphase chromosomes of hyacinth 1. The distribution of 45S rDNA (red arrow) and 5S rDNA (green arrow) signals on the chromosomes; 2. The distribution of telomeric repeats signals on the chromosomes; 3. Chromosome karyotype with 45S rDNA and 5S rDNA; 4. Chromosome karyotype with telomeric repeats. A. 'Gypsy Queen' B.'Purple sensation' C.'Pink pearl' D.'Gypsy princess' E.'Blue pearl' F.'Odysseus' G.'Yellow stone' H.'Red pearl' in Physical mapping of 45S and 5S rDNA and telomeric repeat loci in eight diploid hyacinth cultivars
FIGURE. Results of FISH physical mapping on metaphase chromosomes of hyacinth 1. The distribution of 45S rDNA (red arrow) and 5S rDNA (green arrow) signals on the chromosomes; 2. The distribution of telomeric repeats signals on the chromosomes; 3. Chromosome karyotype with 45S rDNA and 5S rDNA; 4. Chromosome karyotype with telomeric repeats. A. 'Gypsy Queen' B.'Purple sensation' C.'Pink pearl' D.'Gypsy princess' E.'Blue pearl' F.'Odysseus' G.'Yellow stone' H.'Red pearl'
Queen of the Night
The British Museum. https://en.wikipedia.org/wiki/Burney_Relief Source: Objaverse 1.0 / Sketchfab
Queen from a vintage chess set - Photoscan
This queen figure is part of a vintage chess set Source: Objaverse 1.0 / Sketchfab
Kings and Queens chess pieces
Kings and Queen chess pieces Source: Objaverse 1.0 / Sketchfab
The Queen Louise-Marie
The Queen Louise-Marie, by Louis Gallait (1810 - 1887), Royal Museum of Fine Art of Belgium. Made of 460 pictures with CapturingReality. For more updates, please consider to follow me on Twitter at @GeoffreyMarchal. (https://twitter.com/GeoffreyMarchal) Source: Objaverse 1.0 / Sketchfab
Funerary Stela of Queen Merneith
Tomb stela of Queen Merneith of the First Dynasty from her tomb at Umm el_Qa'ab at Abydos, Egypt. Located in theEgyptian Museum, Cairo, JE 34550. Created from 78 photographs (Canon EOS Rebel T7i) using Metashape 1.5.4. Photographed on October 11, 2019. Object is scaled with units in the .obj file in mm. Source: Objaverse 1.0 / Sketchfab
Specimen data for millipedes collected in 1983 in Chile by Robert Mesibov, and held in the Queen Victoria Museum and Art Gallery, Launceston, Tasmania, Australia (Polydesmida: Dalodesmidae; Polyzoniida: Siphonotidae)
<p>The file is a Darwin Core Archive containing a meta.xml, a rights.txt file specifying the usage licence, a citations.txt file specifying the preferred citation format and an occurrence.txt file with a header of 37 Darwin Core terms and 31 records. Each of the 31 records is for a registered specimen lot at the Queen Victoria Museum and Art Gallery, Launceston, Tasmania, Australia. The archive also contains a KML file for the records.</p>
Figs 7–8 in Flight muscles degeneration, oogenesis and fat body in Lasius niger and Formica rufa queens (Hymenoptera: Formicidae)
Figs 7–8. Indirect flight muscles, gaster fat body and ovaries in four young queens of F. rufa: 7 — from left to right: dissected mesosoma; gaster without tergites; gaster without part of the fat body for two alates; 8 — the same anatomy as described in 7 for two single dealate queens; abbreviations in the text. Scales: 1 mm. Рис. 7–8. Крыловые мыШцы непрЯмого действиЯ, жировое тело и Яичники четырёх молодых самок F. rufa: 7 — слева-направо: вскрытаЯ меЗосома; брюШко беЗ тергитов; брюШком с удаленной частью жирового тела у двух крылатых самок, 8 — то же, у двух бескрылых одиночных самок; обоЗначениЯ в тексте. МасШтаб — 1 мм.
Fig. 3 in Flight muscles degeneration, oogenesis and fat body in Lasius niger and Formica rufa queens (Hymenoptera: Formicidae)
Fig. 3. Stages of indirect flight muscles degeneration in Formica rufa queens. Lateral view of a dissected mesosoma. Arrows indicate transitions from stages without external signs of necrosis (0) to stages in which hystolysis of muscle fibers occur (Hi1, Hi2) and their replacement by columns of adipocytes (Ad1, Ad2); other abbreviations — in the text. Рис. 3. Стадии дегенерации крыловых мыШц непрЯмого действиЯ у самок F. rufa. ВскрытаЯ меЗосома, сбоку. Стрелками покаЗаны переходы от стадии беЗ проЯвлений некроЗа (0) до гистолиЗа мыШечных волокон (Hi1, Hi2) и их ЗамеЩениЯ колонками адипоцитов (Ad1, Ad2); остальные обоЗначениЯ — в тексте.
Figs 4–6 in Flight muscles degeneration, oogenesis and fat body in Lasius niger and Formica rufa queens (Hymenoptera: Formicidae)
Figs 4–6. Indirect flight muscles, gaster fat body and ovaries in three young dealate queens of L. niger: 4–5 — from left to right, a dissected mesosoma from a lateral view, a dorsal view of gaster without tergites, gaster without part of fat body; 6 — from left to right, a dissected mesosoma from a lateral view, ovaries from dorsal and ventral view; abbreviation in the text. Scales: 1 mm. Рис. 4–6. Крыловые мыШцы непрЯмого действиЯ, жировое тело брюШка и Яичники трёх молодых бескрылых самок L. niger: 4– 5 — слева-направо, вскрытаЯ меЗосома, сбоку; вид на брюШко беЗ тергитов, сверху; то же — удалена часть жирового тела; 6 — слева- направо, вскрытаЯ меЗосома, сбоку; Яичники — сверху и сниЗу; обоЗначениЯ в тексте. МасШтаб — 1 мм.
Figs 1–2 in Flight muscles degeneration, oogenesis and fat body in Lasius niger and Formica rufa queens (Hymenoptera: Formicidae)
Figs 1–2. Reproductive systems in queen and workers of red wood ants: 1 — polytrophic ovariole, ovaries and oviducts in queen [partly after Schwanwitsch, 1949 and Otto, 1962]; 2 — stages of ovarian development in workers of F. rufa [after Otto,1958]; J — initial stage of ovarie, E1–E3 and V — growth stages, R1, R2 — stages of resorption, D — stage of degeneration; other — in the text. Рис. 1–2. ПоловаЯ система самки и рабочих у рыжих лесных муравьёв: 1 — политрофическаЯ ЯйцеваЯ трубочка, Яичники и половые пути самки [частично по Schwanwitsch, 1949 и Otto, 1962]; 2 — стадии раЗвитиЯ Яичников у рабочих F. rufa [по Otto,1958]; J — начальнаЯ стадиЯ Яичника, E1–E3 и V — стадии роста Яичников, R1, R2 — стадии реЗобциии, D — стадии дегенерации; прочeе — в тексте
Figs 9–12. A in Flight muscles degeneration, oogenesis and fat body in Lasius niger and Formica rufa queens (Hymenoptera: Formicidae)
Figs 9–12. A dissected mesosoma, gaster fat body and ovaries in familial dealate queens of F. rufa at different stages of indirect flight muscle degeneration are shown:9 — at the stage of progressive hystolysis, Hi1; 10 — at the stage of active hystolysis, Hi2; 11 — at the stage of progressive adipogenesis, Ad1; 12 — at the stage of completed adipogenesis, Ad2; abbreviations uin the text. Scale — 1 mm Рис. 9–12. МеЗосома, жировое тело брюШка и Яичники четырех семейных самок F. rufa на раЗных стадиЯх дегенерации крыловой мускулатуры: 9 — на стадии продвинутого гистолиЗа Hi1; 10 — на стадии активного гистолиЗа Hi2; 11 — на стадии продвинутого адипогенеЗа Ad1; 12 — ЗаверШенного адипогенеЗа Ad1. МасШтаб — 1 мм
Fig. 3 in Revision and redefinition of the crematogastrine ant genus Tetheamyrma BOLTON, 1991, with the description of a new species and the first description of the dealate queen (Hymenoptera: Formicidae)
Fig. 3: Tetheamyrma bidentata sp.n. Paratype dealate queen. (a) Full-face view; (b) lateral view; (c) dorsal view; (d) labels. Images courtesy of M. Pierce and J.T. Longino.
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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.