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ShareScore release 0.9.0
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543 results for “larval development”
Data from: Larval diet and temperature alter mosquito immunity and development: using body size and developmental traits to track carry-over effects on longevity
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Heterocypris incongruens maintains an egg bank in stormwater habitats and influences the development of larval mosquito, Culex restuans
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Trophic level influences larval shortbelly rockfish (Sebastes jordani) development
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Influence of density and salinity on larval development of salt-adapted and salt-naïve frog populations
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Osmia lignaria larval development response to heatwave treatments
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Data from: Larval development in the Pacific oyster and the impacts of ocean acidification: differential genetic effects in wild and domesticated stocks
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Larval development and diapause induction under climate change: an experimental test with the Wall Brown butterfly
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Nutrition affects larval survival and the development of morphological traits in male and female flour beetles, but genital size and shape remain canalized
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Data from: Life-history traits of Tubastraea coccinea: reproduction, development, and larval competence
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FIGURES 7–10 in Two new species of Silba (Diptera; Lonchaeidae) from Japan with unusual larval development sites
FIGURES 7–10. Silba mitsuii sp. nov. 7. Epandrium and associated features lateral view. 8. Same, ventral view. 9. Surstylus, inner view. 10. Phallus, lateral view.
FIGURE 12. Peltogaster reticulata, nauplius V. A in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 12. Peltogaster reticulata, nauplius V. A, ventral view; B, head shield setae; C, frontolateral horn; D, hind body; E, antennula. Cf, cuticular fringes; su, suture; 1–2a, head shield setae; 5, 6, antennular setae.
FIGURE 13. Peltogaster reticulata, cypris larva. A in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 13. Peltogaster reticulata, cypris larva. A, lateral view of male larva; B, anterior lattice organ 2 (LO2); C, posterior lattice organs 3–5; D, pores of frontolateral horn gland; E, F, porefields; G, hole with porefield; H, antennules of male cyprid; I, J, attachment disc of male larva; K, the fourth antennular segment of male larva; L, M, attachment disc of female larva; N, the fourth antennular segment of female larva. As, axial sense seta; bz, breakage zone; fe, flap-like extension; fp, filamentous processes; ma, male aesthetasc; oes, open-ended seta; p, pore; pas1, postaxial sense seta 1; pas2, postaxial sense seta 2; pf, porefield; sa, subterminal aesthetasc; sk, skirt; ts, terminal setae.
FIGURE 4 in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 4. BI consensus tree of partial mt COI gene sequences of the genus Peltogaster. The HKY+G substitution model was used for the analysis. The Bayesian posterior probability and bootstrap values higher than 50% for the NJ analyses are shown near nodes (the order of their values is BI/NJ).
FIGURE 8 in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 8. Outlines of antennules (Al I–Al V), antenna (An) and mandible (Md) of the naupliar stages of Peltogaster reticulata. 1–6, antennular setae; bs, basipod seta. Scale bar 25 µm.
FIGURE 11. Peltogaster reticulata, nauplius IV. A in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 11. Peltogaster reticulata, nauplius IV. A, ventral view; B, hind body; C, furca; D, antennule. De, denticles; 5, 6, antennular setae.
FIGURE 3 in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 3. Transverse sections of the externa of Peltogaster reticulata. A, mature ovary; B, embryos; C, colleteric gland; D, colleteric gland near posterior end; E, left and right receptacles (colleteric gland does not reach the stalk); F, left receptacle near anterior end; G, receptacle duct; H, receptacle duct before outlet in the mantle cavity. Cg, colleteric gland; em, embryos; ov, ovary; m, mantle; r, receptacle; rd, receptacle duct; sh, shield; st, stalk.
FIGURE 10. Peltogaster reticulata, nauplius III. A in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 10. Peltogaster reticulata, nauplius III. A, ventral view; B, frontolateral horn; C, hind body with furca; D, antennular setae; E, antenna. Bs, basipod seta; se, subterminal seta; su, suture.
FIGURE 2 in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 2. SEM showing cuticle structure of the externa of Peltogaster reticulata. A, external cuticle (arrows show longitudinal and transverse ridges); B, internal cuticle; C, a group of two retinacula on one base; D, groups of two or four retinacula; E, a single balloon-like retinaculum; F, lamp-brush retinaculum is released out of balloon-like envelope.
FIGURE 9. Peltogaster reticulata, nauplius II. A in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 9. Peltogaster reticulata, nauplius II. A, ventral view; B, dorsal view; C, flotation collar; D, head shield setae; E, the third head shield seta with subterminal pore; F, head shield pore; G, attachment ridge; H, frontolateral horn; I, labrum; J, hind body; K, furca; L, antennules and antennae. Bs, basipod seta; cf, cuticular fringes; fc, flotation collar; po, pore on shield head (D) and on attachment disc (G); se, subterminal seta; su, suture; 1, 2, 2a, anterior head shield setae; 1–5, antennular setae.
FIGURE 6 in The parasitic barnacle Peltogaster reticulata Shiino, 1943 (Rhizocephala, Peltogastridae) fromRussian watersof the Sea of Japan:morphological description molecular identification and complete larval development
FIGURE 6. Body outlines (ventral view) of male and female larvae of Peltogaster reticulata. A, NI–NV, naupliar stages; B, cypris stages; C, head shield of nauplius III (dorsal view with setation); D, carapace of cyprid (lateral view with lattice organs). 1–5, head shield setae (C), lattice organs (D); p, pore; pf, porefield. Scale bar 100 µm.
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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.