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646 results for “Nymphes”
Fig. 9 in Anatomy of Disguise: Camouflaging Structures in Nymphs of Some Reduviidae (Heteroptera)
Fig. 9. Sphaeridops sp. (Sphaeridopinae): Camouflaging structures on pronotum and abdominal tergites in the 5th instar nymph, SEM, all external view with exception of F (internal view). A–C. Grouped trichomes on the pronotum. D, E. Rosettelike projection trichomes on the abdominal tergites. F. Saccules of the rosettelike projection trichomes seen in the light microscope.
Fig. 5 in Anatomy of Disguise: Camouflaging Structures in Nymphs of Some Reduviidae (Heteroptera)
Fig. 5. Holotrichius tenebrosus and Leogorrus sp. (Reduviinae): Camouflaging structures on the abdominal tergites of one 5th instar nymph of H. tenebrosus (A–C) and one fourth instar nymph of Leogorrus sp. (D, E), all external views except C (internal view). A. Trichomes that may represent shortprojection trichomes. B. Close-up of one trichome associated with a seta. C. Ductule of one trichome. D. Lateral sclerotized plate with hairlike long-projection trichomes and setae. E. Posterior margin of abdominal tergite showing transverse row of long-projection trichomes and setae.
Fig. 3 in Anatomy of Disguise: Camouflaging Structures in Nymphs of Some Reduviidae (Heteroptera)
Fig. 3. Eupheno sp. (Cetherinae): Camouflaging structures on the abdominal tergites in the 4th instar nymph. A. Sclerotized plate surrounded by membrane, showing short-projection trichomes, LM. B. Sclerotized plate surrounded by membrane, showing short-projection trichomes, SEM. C. Close-up of part of B, showing margin of sclerotized plate with variously shaped short-projection trichomes. D. Tubercleshaped short-projection trichome. E. Spinelike short-projection trichomes. F. Pore of a spinelike shortprojection trichome.
Fig. 1 in Anatomy of Disguise: Camouflaging Structures in Nymphs of Some Reduviidae (Heteroptera)
Fig. 1. Habitus and dorsal view of abdominal tergites of reduviid nymphs that possess camouflaging structures. Only Holotrichius tenebrosus is shown in camouflaged condition, the other species are cleaned.
Fig. 7 in Anatomy of Disguise: Camouflaging Structures in Nymphs of Some Reduviidae (Heteroptera)
Fig. 7. Salyavata sp. (Salyavatinae): Camouflaging structures on pronotum and abdominal tergites in the 5th instar nymph, SEM, all external view with exception of F (internal view). A. Rows of grouped trichomes on the pronotum. B. Grouped trichome. C. Long-projection trichome with associated seta. D. Sort-projection trichomes. E. Apex of long-projection trichome with pore. F. Ductule of longprojection trichome.
Fig. 2 in Anatomy of Disguise: Camouflaging Structures in Nymphs of Some Reduviidae (Heteroptera)
Fig. 2. Long-projection trichomes, short-projection trichomes, and grouped trichomes in nymphs of Reduviidae in the subfamilies Cetherinae, Reduviinae, Salyavatinae, Sphaeridopinae, and Triatominae.
Fig. 6 in Anatomy of Disguise: Camouflaging Structures in Nymphs of Some Reduviidae (Heteroptera)
Fig. 6. Reduvius personatus (Reduviinae): Camouflaging structures on the abdominal tergites in the fourth instar nymph, external views with exception of D (internal view). A. Hairlike long-projection trichome associated with one seta and several short-projection trichomes, LM. B. Hairlike long-projection trichome associated with one seta and several short-projection trichomes, SEM. C. Short-projection trichome. D. Ductules of long-projection trichomes and short-projection trichomes. E. Hind-tarsal fan. F. Setae with serrated ventral surface on ventral side of third tarsomere.
Figs 9–11 in Nymphs of a new family Neazoniidae fam. n. (Hemiptera: Fulgoromorpha: Fulgoroidea) from the Lower Cretaceous Lebanese amber
Figs 9–11. Neazonia tripleta sp. n.: (9) Abdomen and end of body in dorsal view; (10) Ventral portion of abdomen; (11) Pygofer from below. Scale bars = 1 mm.
Figs 24–27 in Nymphs of a new family Neazoniidae fam. n. (Hemiptera: Fulgoromorpha: Fulgoroidea) from the Lower Cretaceous Lebanese amber
Figs 24–27. General appearance of Neazonia: (24) N. tripleta sp. n., dorsal view; (25) N. tripleta sp. n., ventral view; (26) N. immatura sp. n., dorsal view; (27) N. immatura sp. n., ventral view.
Figs 1–8 in Nymphs of a new family Neazoniidae fam. n. (Hemiptera: Fulgoromorpha: Fulgoroidea) from the Lower Cretaceous Lebanese amber
Figs 1–8. Neazonia tripleta sp. n.: (1) Anterior portion of body; (2) Face; (3) Antenna; (4) Right fore leg; (5) Right fore tarsus; (6) Right mid leg; (7) Left hind leg; (8) Set of sensory pits of abdominal segment. Scale bars: Figs 1, 2, 7 = 1 mm; Figs 4, 6 = 0.5 mm; Figs 3, 5 = 0.1 mm; Fig. 8 = 0.05 mm.
Figs 20–23 in Nymphs of a new family Neazoniidae fam. n. (Hemiptera: Fulgoromorpha: Fulgoroidea) from the Lower Cretaceous Lebanese amber
Figs 20–23. Neazonia immatura sp. n.: (20) Hind coxae, (21) Abdomen in dorsal view, (22) Abdominal pleural region, (23) Pygofer in dorsal view. Scale bars: Figs 20, 21, 23 = 1 mm; Fig. 22 = 0.5 mm.
Figs 12–19 in Nymphs of a new family Neazoniidae fam. n. (Hemiptera: Fulgoromorpha: Fulgoroidea) from the Lower Cretaceous Lebanese amber
Figs 12–19. Neazonia immatura sp. n.: (12) Face, (13) Set of sensory pits of face, (14) Right half of prothorax, (15) Right half of mesothorax, (16) Right fore leg, (17) Left hind leg, (18) Right hind leg, (19) Right hind tarsus. Scale bars: Figs 12, 14–19 = 1 mm; Fig. 13 = 0.1 mm.
Figs 28–29 in Nymphs of a new family Neazoniidae fam. n. (Hemiptera: Fulgoromorpha: Fulgoroidea) from the Lower Cretaceous Lebanese amber
Figs 28–29. General appearance of Neazonia imprinta sp. n.: (28) lateral view, light microscopy; (29) lateral view, SEM (courtesy Dany Azar).
Figs 30–31 in Nymphs of a new family Neazoniidae fam. n. (Hemiptera: Fulgoromorpha: Fulgoroidea) from the Lower Cretaceous Lebanese amber
Figs 30–31. SEM of Neazonia imprinta sp. n. (courtesy Dany Azar): (30) anterior part of body; (31) details of thorax. Scale bars = 100 µm.
Figure 3 in Thalassarachna basteri (Acari, Halacaridae), description of external characters of larva, nymphs and adults and outline of discriminating characters of larvae
Figure 3. Thalassarachna basteri (Johnston, 1836). A–D, leg II, medial aspect. A - Larva. B - Protonymph. C - Deutonymph. D - Female. E–H, leg III, medial aspect. E - Larva. F - Protonymph. G - Deutonymph. H - Female. Scale = 50 µm
Figure 2 in Thalassarachna basteri (Acari, Halacaridae), description of external characters of larva, nymphs and adults and outline of discriminating characters of larvae
Figure 2. Thalassarachna basteri (Johnston, 1836), A - Gnathosoma, ventral aspect, larva. B - Gnathosoma, ventral aspect, female. C–F, palp, lateral aspect. C - Larva. D - Protonymph. E - Deutonymph. F - Female. G - Tarsus I, lateral aspect, larva (medial setae in broken line, medial claw omitted). H–K, leg I, medial aspect. H - Larva. I - Protonymph. J - Deutonymph. K - Female. (mxs-1, basal pair of maxillary setae; so, solenidion) Scale = 50 µm.
Figure 4. A–C in Thalassarachna basteri (Acari, Halacaridae), description of external characters of larva, nymphs and adults and outline of discriminating characters of larvae
Figure 4. A–C, Thalassarachna basteri (Johnston, 1836), leg IV, medial aspect. A - Protonymph. B - Deutonymph. C - Female. D–H, leg I of larva, medial aspect. D - Agaue sp. E - Agauopsis brevipalpus (Trouessart, 1889). F - Halacarellus balticus (Lohmann, 1889). G - Halacaropsis capuzina Bartsch, 1996. H - Halacarus sp. Scale = 50 µm
Figure 1 in Thalassarachna basteri (Acari, Halacaridae), description of external characters of larva, nymphs and adults and outline of discriminating characters of larvae
Figure 1. Thalassarachna basteri (Johnston, 1836), A–D, idiosoma, dorsal aspect. A - Larva. B - Protonymph. C - Deutonymph. D - Female. E - Left part of anterior epimeral plate with internal epimeral acetabulum, larva. F–I, idiosoma, ventral aspect. F - Larva. G - Protonymph. H - Deutonymph. I - Female. J - Genital plate with internal acetabula, protonymph. K - Left part of anterior epimeral plate with epimeral pore, protonymph. I - Integument (optical section) and epimeral pore, protonymph. M - Genital plate with internal acetabula, deutonymph. N - Genital opening with internal acetabula, female. (ap, apodeme; ca, canal; co, cornea; eac, epimeral acetabulum; ep, epimeral pore; gac, genital acetabulum(a); glp, gland pore; OC ocular plate. Double-lined scale = 100 µm; single-lined scale = 50 µm.
Figure 4 in Is a diet of Planococcus citri nymphs and adults suitable for Chrysoperla externa for use in biological control?
Figure 4. Survival (x100%) of Chrysoperla externa adults from larvae fed on (A) Ephestia kuehniella eggs and/or Planococcus citri nymphs and adults, as a function of gender (B), female and male. Curves with an asterisk (*) differ by the log-rank test (Kaplan-Meier, p<0.05). EK= E. kuehniella eggs; EK + PC= E. kuehniella eggs in the first instar and P. citri in subsequent instars; PC= P. citri in all instars. F= females; M= males.
Figure 3 in Is a diet of Planococcus citri nymphs and adults suitable for Chrysoperla externa for use in biological control?
Figure 3. Weight (mg) of Chrysoperla externa males and females from larvae fed on Ephestia kuehniella eggs and/or Planococcus citri nymphs and adults. Means ± SE followed by different letters, uppercase for prey types and lowercase for females and males, differ from each other by the Tukey test (p<0.05). EK= E. kuehniella eggs; EK + PC= E. kuehniella eggs in the first instar and P. citri in subsequent instars; PC= P. citri in all instars.
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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.