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1,533 results for “rearing”
FIGURES 75–83. Figures 75–77 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 75–83. Figures 75–77: Cerodontha (C.) phragmitophila Hering; 75–76: posterior segments of puparium; 75: lateral view; 76: posterior view. 77: posterior spiracles (posterior view). Figures 78–80: C. (Butomomyza) gibbifera spec. nov.; 78–79: posterior segments of puparium; 78: lateral view; 79: posterior view. 80: posterior spiracles (posterior view). Figures 81–83: Cerodontha (Poemyza) spencerae Zlobin; 81: mine in Elymus repens leaf; 82–83: posterior segments of puparium; 82: lateral view; 83: posterior view.
FIGURES 37–44. Figures 37–40 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 37–44. Figures 37–40: Ophiomyia maura (Meigen); 37: mine in Solidago virgaurea leaf; 38–39: posterior segments of puparium; 38: lateral view; 39: posterior view. 40: posterior spiracles (posterior view). Figures 41–44: O. versera Guglya; 41: mine with puparium (indicated by arrow) in Campanula rapunculoides leaf; 42: puparium viewed from the side; 43–44: posterior segments of puparium; 43: lateral view; 44: posterior view.
FIGURES 84–93. Figures 84–88 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 84–93. Figures 84–88: Cerodontha (Butomomyza) hreblensis spec. nov.; 84: mine with puparium (indicated by arrow) in Carex sp. leaf; 85: larva viewed from the side; 86–87: posterior segments of puparium; 86: lateral view; 87: posterior view. 88: posterior spiracles (posterior view). Figures 89–93: C. (Dizygomyza) iraeos (Robineau-Desvoidy); 89: mine in Iris pseudacorus leaf; 90: puparium (indicated by arrow) in I. pseudacorus; 91: empty puparium viewed from above; 92: posterior segments of puparium (posterior view). 93: posterior spiracles (posterior view).
FIGURES 67–74. Figures 67–70 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 67–74. Figures 67–70: Amauromyza (Cephalomyza) flavifrons (Meigen); 67: mine in Silene latifolia subsp. alba leaf; 68–69: posterior segments of puparium; 68: lateral view; 69: posterior view. 70: posterior spiracles (posterior view). Figures 71–74: Aulagromyza populi (Kaltenbach); 71: mines in Populus nigra leaf; 72–73: posterior segments of puparium; 72: lateral view; 73: posterior view. 74: posterior spiracles (posterior view).
FIGURES 138–149. Figures 138–142 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 138–149. Figures 138–142: Liriomyza bryoniae (Kaltenbach); 138–139: mines in Gypsophyla paniculata: 138: leaf and stem (indicated by arrow); 139: in leaf. 140–141: posterior segments of puparium; 140: lateral view; 141: posterior view. 142: posterior spiracles (posterior view). Figures 143–146: L. cicerina (Rondani); 143: mines in Cicer arietinum leaf; 144–145: posterior segments of puparium; 144: lateral view; 145: posterior view. 146: posterior spiracles (posterior view). Figures 147–149: L. congesta (Becker); 147–148: posterior segments of puparium; 147: lateral view; 148: posterior view. 149: posterior spiracles (posterior view).
FIGURES 29–36. Figures 29–32 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 29–36. Figures 29–32: Ophiomyia asparagi Spencer; 29: "pupal blister" with puparium (indicated by arrow) in Asparagus officinalis stem; 30: stem mine in A. officinalis; 31–32: posterior segments of puparium; 31: lateral view; 32: posterior view. Figures 33–36: O. foliaphila spec. nov.; 33: mine with puparium (indicated by arrow) in Stachys palustris leaf; 34: "pupal blister" with puparium in S. palustris leaf; 35: puparium viewed from the side; 36: posterior segments of puparium (posterior view).
FIGURES 9–18. Figures 9–12 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 9–18. Figures 9–12: Agromyza hendeli Griffiths; 9: mine in Glyceria maxima leaf; 10–11: posterior segments of puparium; 10: lateral view; 11: posterior view. 12: posterior spiracles (posterior view). Figures 13–15: A. igniceps Hendel; 13–14: posterior segments of puparium; 13: lateral view; 14: posterior view. 15: posterior spiracles (posterior view). Figures 16–18: A. reptans Fallén; 16–17: posterior segments of puparium; 16: lateral view; 17: posterior view. 18: posterior spiracles (posterior view).
FIGURES 1–8. Figures 1–4 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 1–8. Figures 1–4: Agromyza abiens Zetterstedt; 1: mine in Cynoglossum officinale leaf; 2–3: posterior segments of puparium; 2: lateral view; 3: posterior view. 4: posterior spiracles (posterior view). Figures 5–8: A. albipennis Meigen; 5: mine with larva (indicated by arrow) in Elymus repens leaf; 6–7: posterior segments of puparium; 6: lateral view; 7: posterior view. 8: posterior spiracles (posterior view).
Figure 5. Upogebia yokoyai Makarov, 1938 in The larval development of the mud shrimp Upogebia yokoyai Makarov, 1938 (Decapoda: Gebiidea: Upogebiidae) reared under laboratory conditions
Figure 5. Upogebia yokoyai Makarov, 1938, megalopa. (A) Complete larva, dorsal view; (A̓) rostrum, dorsal view; (B) complete larva, lateral view; (C) antennule; (D) antenna; (E) mandibles; (F) maxillule; (G) maxilla; (H) maxilliped 1; (I) maxilliped 2; (J) maxilliped 3.
Figure 6. Upogebia yokoyai Makarov, 1938 in The larval development of the mud shrimp Upogebia yokoyai Makarov, 1938 (Decapoda: Gebiidea: Upogebiidae) reared under laboratory conditions
Figure 6. Upogebia yokoyai Makarov, 1938, megalopa. (A–E) Pereiopods 1–5; (F) dactylus of pereiopod 5; (G) pleopod 3; (H) uropod; (I) telson, dorsal view.
Figure 3. Upogebia yokoyai Makarov, 1938 in The larval development of the mud shrimp Upogebia yokoyai Makarov, 1938 (Decapoda: Gebiidea: Upogebiidae) reared under laboratory conditions
Figure 3. Upogebia yokoyai Makarov, 1938, third zoea. (A) Complete larva, dorsal view; (B) same, lateral view; (C) antennule; (D) antenna; (E) mandibles; (F) maxillule; (G) maxilla; (H) first maxilliped; (I) second maxilliped; (J) third maxilliped; (K–O), pereiopods 1–5; (P) telson with uropods, ventral view; (Q) details of telson.
Figure 4. Upogebia yokoyai Makarov, 1938 in The larval development of the mud shrimp Upogebia yokoyai Makarov, 1938 (Decapoda: Gebiidea: Upogebiidae) reared under laboratory conditions
Figure 4. Upogebia yokoyai Makarov, 1938, fourth zoea. (A) Complete larva, dorsal view; (B) same, lateral view; (C) antennule; (D) antenna; (E) mandibles; (F) maxillule; (G) maxilla; (H) first maxilliped; (I) second maxilliped; (J) third maxilliped; (K–O), pereiopods 1–5; (P) telson with uropods, ventral view.
Figure 1. Upogebia yokoyai Makarov, 1938 in The larval development of the mud shrimp Upogebia yokoyai Makarov, 1938 (Decapoda: Gebiidea: Upogebiidae) reared under laboratory conditions
Figure 1. Upogebia yokoyai Makarov, 1938, first zoea. (A) Complete larva, dorsal view; (B) same, lateral view; (C) antennule; (D) antenna; (E) mandibles; (F) maxillule; (G) maxilla; (H) first maxilliped; (I) second maxilliped; (J) third maxilliped; (K) pereiopods; (L) telson, dorsal view.
Figure 2. Upogebia yokoyai Makarov, 1938 in The larval development of the mud shrimp Upogebia yokoyai Makarov, 1938 (Decapoda: Gebiidea: Upogebiidae) reared under laboratory conditions
Figure 2. Upogebia yokoyai Makarov, 1938, second zoea. (A) Complete larva, dorsal view; (B) same, lateral view; (C) antennule; (D) antenna; (E) mandibles; (F) maxillule; (G) maxilla; (H) first maxilliped; (I), second maxilliped; (J), third maxilliped; (K–O), pereiopods 1–5; (P) telson, dorsal view.
Figure 1 in Two new Encarsia species (Hymenoptera: Aphelinidae) reared from eggs of Cicadellidae (Hemiptera: Auchenorrhyncha) in Argentina: an unusual new host association
Figure 1. Encarsia dalbulae sp. nov. (A) Head; (B) dorsal mesosoma; (C) forewing; (D) male genitalia; (E) antenna. Scale bars: 0.1 mm.
Figure 3 in Two new Encarsia species (Hymenoptera: Aphelinidae) reared from eggs of Cicadellidae (Hemiptera: Auchenorrhyncha) in Argentina: an unusual new host association
Figure 3. Encarsia mollicellae sp. nov. (A) Head; (B) dorsal mesosoma; (C) male genitalia; (D) mandibles; (E) details of antenna (arrows indicate sensilla); (F) antennae.
Figure 8 in A new species of Munromyia Bezzi (Diptera: Tephritidae) reared from Chionanthus battiscombei (Oleaceae) in northern Kenya
Figure 8. Munromyia males. Cuticular processes on distiphallus. (A) M. marsabitensis; (B) M. nudiseta; (C) M. whartoni.
Figure 1 in A new species of Munromyia Bezzi (Diptera: Tephritidae) reared from Chionanthus battiscombei (Oleaceae) in northern Kenya
Figure 1. Munromyia marsabitensis. (Angle A) bend in wing vein Cu2; (Angle B) intersection of vein BM-Cu with vein Cu1.
Figure 4 in A new species of Munromyia Bezzi (Diptera: Tephritidae) reared from Chionanthus battiscombei (Oleaceae) in northern Kenya
Figure 4. Thorax and abdomen, dorsal aspect. (A) M. marsabitensis; (B) M. nudiseta; (C) M. whartoni. (The reader is directed to the online version of this article where this image can be viewed in colour.)
Figure 3 in A new species of Munromyia Bezzi (Diptera: Tephritidae) reared from Chionanthus battiscombei (Oleaceae) in northern Kenya
Figure 3. Munromyia marsabitensis, head. (The reader is directed to the online version of this article where this image can be viewed in colour.)
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.