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1,946 results for “immature stages”
FIGURES 95 – 100 in Taxonomy and immature stages of the Platystomatidae (Diptera: Tephritoidea) of Israel
FIGURES 95 – 100. Habitus of newly-described species, holotypes. 95. Platystoma dalia. 96. P. elizabethae. 97. P. geula. 98. P. torridum. 99. P. trigonum. 100. Rivellia israelica.
Figure 7. Aegiochus nohinohi Bruca, 2009 immatura staga 1 in Reconstructing the life cycle of the isopodan group Aegidae with morphological descriptions and the importance of immature stages
Figure 7. Aegiochus nohinohi Bruca, 2009 immatura staga 1 (NIWA 24018). A, Dorsal viaw. B–C, Vantral viaw. D, Lataral viaw. E, Antannula. F, Antanna. G, Mandibla. H, Maxillipad. I, Maxillula. J, Maxilla. Scalas: A–D, 1 mm; E–F, 0.25 mm (top, right); G–J, 0.25 mm (bottom, right).
Figure 8. Aegiochus nohinohi Bruca, 2009 A–D, Immatura staga 2 in Reconstructing the life cycle of the isopodan group Aegidae with morphological descriptions and the importance of immature stages
Figure 8. Aegiochus nohinohi Bruca, 2009 A–D, Immatura staga 2 (NIWA 24018). E–H, Adult mala (NIWA 24018). A, Dorsal viaw. B, Vantral viaw. C, Lataral viaw. D, Closa-up of undardavalopad panial lobas. E, Dorsal viaw. F, Vantral viaw. G, Lataral viaw. H, Closa-up of wall-davalopad panial lobas.
Figure 6. Aegiochus kanohi Bruca, 2009 immatura mala staga 3 in Reconstructing the life cycle of the isopodan group Aegidae with morphological descriptions and the importance of immature stages
Figure 6. Aegiochus kanohi Bruca, 2009 immatura mala staga 3 (NIWA 24023). A–B, Dorsal viaw. C, Lataral viaw. D, Vantral viaw. E, Antarovantral viaw. F, Antannula. G, Antanna. H, Mandibla. I, Maxillula. J, Maxilla. K, Maxillipad. L, Closa-up of undardavalopad thoracopod 7 and panial lobas. M, Plaon appandaga 2 with appandix masculina. Scalas: A–D, 2.5 mm; F–G, 500 µm; H–K, 250µm.
Figure 5 in Reconstructing the life cycle of the isopodan group Aegidae with morphological descriptions and the importance of immature stages
Figure 5. Aegiochus antarctica (Hodgson, 1910) immatura staga 1 (NIWA 23664). A, Dorsal viaw. B, Vantral viaw. C, Lataral viaw. D, Antarovantral viaw. E, Antannula. F, Antanna. G, Mandibla. H, Maxillula. I, Maxilla. J, Maxillipad. K, Plaon appandaga 2 without appandix masculina. Scalas: A–C, 1 mm; E–F, 500 µm; G–J, 200µm.
Figure 4 in Reconstructing the life cycle of the isopodan group Aegidae with morphological descriptions and the importance of immature stages
Figure 4. Aegiochus antarctica (Hodgson, 1910) immatura staga 2 (NIWA 23671). A, Dorsal viaw. B, Vantral viaw. C, Antarovantral viaw. D, Antannula. E, Antanna. F, Mandibla. G, Maxillula. H, Maxilla. I, Maxillipad. J, Closa-up of starnita 7 (without panas). K, Plaon appandaga 2 without appandix masculina. L, Exampla of panial lobas of adult mala. Scalas: A–B, 2 mm; D–E, 0.5 mm (top, right); F–I, 250 µm.
Figure 1. Aega monophthalma Johnston, 1834 immatura mala staga 3 in Reconstructing the life cycle of the isopodan group Aegidae with morphological descriptions and the importance of immature stages
Figure 1. Aega monophthalma Johnston, 1834 immatura mala staga 3 (NIWA 23759). A, Dorsal viaw. B, Vantral viaw. C, Lataral viaw. D, Antarovantral viaw. E, Antannula. F, Antanna. G, Mandibla. H, Maxillula. I, Maxilla. J, Maxillipad. K, Closa-up of undardavalopad thoracopod 7. L, Closa-up of panial opanings. M, Plaon appandaga 2 with appandix masculina. Scalas: A–C, 5 mm; E–F, 1 mm (top, right); G–J, 1 mm (bottom, right).
Fig. 33 in Nesting Biologies and Immature Stages of the Tapinotaspidine Bee Genera Monoeca and Lanthanomelissa and of Their Osirine Cleptoparasites Protosiris and Parepeolus (Hymenoptera: Apidae: Apinae)
Fig. 33. Cocoon of Lanthanomelissa betinae from which larva had been removed, lateral view. Fig. 34. Cocoon of Parepeolus minutus from which larva had bee removed, lateral view. Fig. 35. Inner surface of front end of cocoon of Lanthanomelissa betinae showing complete covering by pale feces. Fig. 36. Inner surface of front end of cocoon of Parepeolus minutus showing central area that is not coated by feces.
Fig. 1 in Nesting Biologies and Immature Stages of the Tapinotaspidine Bee Genera Monoeca and Lanthanomelissa and of Their Osirine Cleptoparasites Protosiris and Parepeolus (Hymenoptera: Apidae: Apinae)
Fig. 1. Nesting site of Monoeca haemorrhoidalis, showing dense ground cover in foreground. Fig. 2. Closeup of two nest entrances of same. Fig. 3. Main burrow of Monoeca haemorrhoidalis showing repetitive tamping impressions on shiny burrow wall. Fig. 4. Monoeca haemorrhoidalis, spiral inner surface of cell closure. Figs. 5, 6. Closure ends of cells of Monoeca haemorrhoidalis, showing plugged entrance holes made by females of Protosiris gigas; holes are filled by them as they depart.
Figs 25–28. Culicoides insignis Lutz, 1913 in Study of the immature stages of two species of the biting midge genus Culicoides (Diptera: Ceratopogonidae)
Figs 25–28. Culicoides insignis Lutz, 1913, male pupa: 25 – cephalothoracic sensilla; 26 – dorsal setae; 27 – first abdominal segment chaetotaxy; 28 – fourth abdominal segment chaetotaxy. Scale bars: 0.05 mm. Abbreviations: AL-1-T, AL-2-T, AL-3-T – anterolateral sensilla; AM-1-T – anteromedial sensillum; DL-1-H, DL-2-H, DL-3-H – dorsolateral cephalic sclerite sensilla; D-1-T, D-2-T, D-3-T, D-4-T, D-5-T – dorsal setae; SA-2-T – supraalar; D-2-I, D-3-I, D-4-I, D-7-I, D-8-I, D-9-I – dorsal sensilla of first abdominal segment; L-1-I, L-2-I, L-3-I – lateral sensilla of first abdominal segment; D-2-IV, D-3-IV, D-4-IV, D-5-IV, D-7-IV, D-8-IV, D-9-IV – dorsal sensilla of fourth abdominal segment; L-1-IV, L-2-IV, L-3-IV, L-4-IV – lateral sensilla of fourth abdominal segment; V-5-IV, V-6-IV, V-7-IV – ventral sensilla of fourth abdominal segment.
Figs 13–16. Culicoides bambusicola Lutz, 1913 in Study of the immature stages of two species of the biting midge genus Culicoides (Diptera: Ceratopogonidae)
Figs 13–16. Culicoides bambusicola Lutz, 1913, male pupa: 13 – cephalothoracic sensilla and respiratory organ; 14 – dorsal setae; 15 – first abdominal segment chaetotaxy; 16 – fourth abdominal segment chaetotaxy. Scale bars: 0.05 mm. Abbreviations: AL-1-T, AL-2-T, AL-3-T – anterolateral sensilla; AM-1-T – anteromedial sensillum; DL-1-H, DL-2-H – dorsolateral cephalic sclerite sensilla; p – pores; RO – respiratory organ; D-1-T, D-2-T, D-3-T, D-4-T, D-5-T – dorsals; SA-2-T – supraalar; D-2-I, D-3-I, D-4-I, D-7-I, D-8-I, D-9-I – dorsal sensilla of first abdominal segment; L-1-I, L-2-I, L-3-I – lateral sensilla of first abdominal segment; D-2-IV, D-3-IV, D-4-IV, D-5-IV, D-7-IV, D-8-IV, D-9-IV – dorsal sensilla of fourth abdominal segment; L-1-IV, L-2-IV, L-3-IV, L-4-IV – lateral sensilla of fourth abdominal segment; V-5-IV, V-6-IV, V-7-IV – ventral sensilla of fourth abdominal segment.
Figs 9–12. Culicoides bambusicola Lutz, 1913. 9–10 in Study of the immature stages of two species of the biting midge genus Culicoides (Diptera: Ceratopogonidae)
Figs 9–12. Culicoides bambusicola Lutz, 1913. 9–10 – male pupa; 11–12 – female pupa; 9, 11 – dorsal apotome; 10, 12 – ninth segment, ventral view. Scale bars: 0.05 mm. Abbreviations: DA-1-H, DA-2-H – dorsal apotomal sensilla; GL – genital lobe; TP – terminal process; D-5-IX, D-6-IX – campaniform sensilla of terminal process.
Figs 1–4. Culicoides bambusicola Lutz, 1913 in Study of the immature stages of two species of the biting midge genus Culicoides (Diptera: Ceratopogonidae)
Figs 1–4. Culicoides bambusicola Lutz, 1913, larva: 1 – head capsule, ventral view; 2 – head capsule, anteroventral view; 3 – mouthparts (messors and scopae); 4 – head capsule, detail of lateral view of mouthparts (mandible and maxilla) (from RONDEROS & SPINELLI 2000). Abbreviations: AN – antennae; CO – collar; HY – hypostoma; LC1 – lacinial sclerite 1; LB – labrum; MD – mandible; MX – maxilla; MP – maxillary palpus; MS – messors; SC – scopae; PL – palatum; ss – sensilla styloconica; st – sensilla trichoidea. Head capsule chaetotaxy: n – anterolateral pit; o – parahypostomal setae; s – anterior perifrontal setae; v – posterolateral setae; w – anterolateral setae; y – ventral setae.
FIGURE 12 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 12. SEM micrographs of mature larva of Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species. A. Entire larva, oblique frontal view. B. Close-up of pro- and mesothoracic segments showing paired segmental dorsolateral tubercles (arrows) and distribution of fine spicules. C. Close-up of meso- and metathoracic segments and of first abdominal segment showing dorsolateral tubercles along left side as well as distribution of fine spicules. D. Head, frontal view, demonstrating extreme width, and showing pronounced, dome-shaped antennae. E. Same, oblique lateral view. F. Close-up of labrum and mandibles, frontal view, showing cluster of multipronged spicules at lower edge of labrum as well as sharp-pointed mandibles. G. Close-up of left side of cluster of multipronged spicules along lower edge of labrum and sharply toothed upper edge of left mandible, possibly used as comb to push provisions through prongs toward esophagus.
Figure 4 in The parasitism of Persian jird by immature stages of Hyalomma asiaticum (Acari: Ixodidae) and its identification using molecular approaches in Iran
Figure 4. One percent agarose gel electrophoresis stained with Cyber Safe® showing 5.8S/ITS2 gene fragments amplified using Fanas/Ras for H. asiaticum with amplicon size 408 bp (100 bp DNA ladder). Numbers below bands representing location of collected specimens according to Fig. 4.
Figure 3 in The parasitism of Persian jird by immature stages of Hyalomma asiaticum (Acari: Ixodidae) and its identification using molecular approaches in Iran
Figure 3. Immatures of Hyalomma asiaticum collected from Meriones persicus in western Iran (nymphal stage): left: dorsal and right: ventral views.
Figure 5 in The parasitism of Persian jird by immature stages of Hyalomma asiaticum (Acari: Ixodidae) and its identification using molecular approaches in Iran
Figure 5. Phylogenetic tree of Hyalomma asiaticum ticks inferred from ITS2 sequence data constructed using Bayesian Inference (BI) method. Nodes indicated with posterior probability values. Branch lengths are proportional to evolutionary changes (substitutions/site). Tree was rooted by Rhipicephalus sanguineus.
Figure 1 in The parasitism of Persian jird by immature stages of Hyalomma asiaticum (Acari: Ixodidae) and its identification using molecular approaches in Iran
Figure 1. Three rodent collection sites located in Lorestan province western Iran inlcuding: 1. Khorramabad-Kuhdasht road, Zamzam village; 2. Khorramabad-Tehran road, LUMS Campus; 3. Dorud-Azna road, Zarnan village.
Figure 2. A in The parasitism of Persian jird by immature stages of Hyalomma asiaticum (Acari: Ixodidae) and its identification using molecular approaches in Iran
Figure 2. A rodent specimen infested by a number of immature ticks (red arrow) (animal is restrained through the ear by forceps and treated by insecticied for killing of ectoparasites).
Fig. 2. Pamphilius benesi. —— A in Immature Stages and Life History of a Hazel Leaf-rolling Sawfly, Pamphilius benesi (Hymenoptera, Pamphiliidae)
Fig. 2. Pamphilius benesi. —— A, Eggs, remains of eggshell and newly hatched larva beginning to make leafroll, Group B, June 5; B, C, early instar larva, June 7; D, E, middle instar larva, June 14; F, late instar larva, June 23; G, H, J, late instar larva, June 21; I, late instar larva, June 28. All photographed by Kato.
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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.