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850 results for “Aphididae,”
Fig. 1 a–c in Phylogenetic relationships of Dysaphis pyri (Boyer de Fonscolombe) and Dysaphis reaumuri (Mordvilko) (Hemiptera, Sternorrhyncha: Aphididae): COI and EF-1α evidence
Fig. 1 a–c Apterous viviparous females of Dysaphis (Pomaphis) pyri (top, specimen from sample 11–32) and Dysaphis (Pomaphis) reaumuri (bottom, specimen from sample J11–12) showing the characters used to discriminate between species: a Lateral tubercle, b cauda, c siphunculus. Sample information is given in Table 1
Fig. 2 in Pauesia species (Hymenoptera: Braconidae: Aphidiinae) attacking Eulachnini aphids (Hemiptera: Aphididae: Lachninae) on coniferous plants in Lithuania: ecological and mitochondrial COI diversity
Fig. 2 Haplotype networks of Pauesia species attacking Eulachnini aphids in Lithuania based on partial COI fragment
FIGURES 2–9 in First record of Greenidea psidii van der Goot and comparison with Greenidea ficicola Takahashi (Hemiptera: Aphididae) in Brazil
FIGURES 2–9. Viviparous females of Greenidea psidii: 3. third antennal segment of alate; 6 siphunculus of aptera with reticulation at the base; 7. spinulae on the siphunculus of aptera; 8. cauda of alate showing the median process; 9. siphunculi of alate. Viviparous females of Greenidea ficicola: 2. third antennal segment of alate; 4. siphunculus of aptera; 5. reticulation of the siphunculus of aptera.
Figure 3 in A new parasitoid (Hymenoptera: Braconidae: Aphidiinae) of the invasive bamboo aphids Takecallis spp. (Hemiptera: Aphididae) from Western Europe
Figure 3. Mummified aphids of the species Takecallis arundinariae (Essig) parasitized by Trioxys remaudierei Starý & Rakhshani sp. nov. (a) Dorsal view; (b) posterior view indicating emergence hole.
Figure 4 in A new parasitoid (Hymenoptera: Braconidae: Aphidiinae) of the invasive bamboo aphids Takecallis spp. (Hemiptera: Aphididae) from Western Europe
Figure 4. Trioxys betulae (Marshall). (a) Fore wing; (b) scape, pedicel and first two flagellar segments; (c) female genitalia; (d) petiole.
Figure 2 in A new parasitoid (Hymenoptera: Braconidae: Aphidiinae) of the invasive bamboo aphids Takecallis spp. (Hemiptera: Aphididae) from Western Europe
Figure 2. Trioxys remaudierei Starý & Rakhshani sp. nov. (a) Head, frontal view; (b) maxillary and labial palps; (c) antenna; (d) posterior part of mesonotum and scutellum in dorsal view; (e) fore wing; (f) propodeum; (g) metasomal terga I–IV; (h) genitalia, lateral aspect; (i) tip of prongs.
Figure 2 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 2. Fore wing (females). (A) Aphidius absinthii; (B) Aphidius artemisicola; (C) Aphidius asteris; (D) Aphidius phalangomyzi; (E) Binodoxys centaureae; (F) Ephedrus niger; (G) Lysiphlebus confusus; (H) Lysiphlebus fabarum; (I) Praon absinthii; (J) Praon unitum; (K) Praon volucre; (L) Trioxys pannonicus. Scale bars = 200µ.
Figure 5 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 5. Lateral aspect of genitalia (females).(A) Aphidius absinthii; (B) Aphidius artemisicola; (C) Aphidius phalangomyzi; (D) Binodoxys centaureae; (E) Ephedrus niger; (F) Lysiphlebus fabarum; (G) Praon absinthii; (H) Praon unitum; (I) Praon volucre; (J) Trioxys pannonicus. Scale bars = 100µ.
Figure 7 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 7. Macrosiphoniella tanacetaria Kaltenbach mummies, by Aphidius stigmaticus Rakhshani and Tomanović sp. nov., on Tanacetum polycephalum.
Figure 6 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 6. Aphidius stigmaticus Rakhshani and Tomanović sp. nov. (female). (A) Frontal aspect of head and mouthparts; (B) antenna; (C) first, second, pre-apical and apical flagellomeres; (D) dorsal aspect of mesoscutum; (E) fore wing; (F) dorsal aspect of propodeum; (G) dorsal aspect of petiole; (H) lateral aspect of petiole; (I) lateral aspect of genitalia.
Figure 1 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 1. Head and lateral mesonotal lobe (females). (A) Head of Aphidius absinthii; (B) head of Lysiphlebus fabarum; (C) lateral mesonotal lobe of Praon absinthii; (D) lateral mesonotal lobe of Praon volucre. Scale bars = 150 µ.
Figure 4 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 4. Dorsal aspect of petiole (females). (A) Aphidius absinthii; (B) Aphidius artemisicola; (C) Aphidius asteris; (D) Aphidius phalangomyzi; (E) Binodoxys centaureae; (F) Lysiphlebus fabarum; (G) Praon absinthii; (H) Praon volucre; (I) Trioxys pannonicus. Scale bars = 100µ.
Figure 3 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 3. Dorsal aspect of propodeum (females). (A) Aphidius absinthii; (B) Aphidius artemisicola; (C) Aphidius phalangomyzi; (D) Lysiphlebus fabarum; (E) Praon absinthii; (F) Praon volucre. Scale bars = 100µ.
FIGURE 1 in The histo structure of galls induced by aphids as a useful taxonomic character: the case of Rectinasus (Hemiptera, Aphididae, Eriosomatinae)
FIGURE 1. Galls induced by Rectinasus buxtoni. Microscopic structure. a Transverse section of the wall of the gall. Two vascular bundles are observed, one closer to the outside (Uvb) and the other closer to the inside of the gall (Lvb). Specifically, going from the outside (A) to the lumen (L) of the gall, the following is observed: epidermis-air (ea), storage parenchyma (pa), upper vascular bundle (Uvb), storage parenchyma, lower vascular bundle (Lvb), and epidermis-lumen (el). b–e Epidermis-air. b Uniseriate epidermis-air with thickened cuticle (c). Below storage parenchyma (pa) is observed, many cells of which have tannin inclusions. c View of the outer surface the gall. Between the epidermal cells a few stomata (s) are observed. d Detail of the foregoing. A stoma (s) and the presence of epicuticular waxes are observed in the epidermal cells. e Detail of the epicuticular waxes. f–i Vascular bundles. The vascular bundles are seen to be facing each other: the xylem of the upper bundle f–g is facing the xylem of the lower bundle h–i. f–g Upper vascular bundle. Xylem cells in f are the only ones that polarize light in g. h–i Lower vascular bundle. Xylem cells in h are the only ones that polarize light in i. The phloem is oriented towards the lumen (L) of the gall. j Detail of a vascular bundle: Closed collateral vascular bundle. Very characteristic of the vascular bundles of Pistacia sp. (and of the galls) is the presence of intraphloematic schizogenous ducts (sd). k–l Interior surface of the gall. k The interior surface of the gall has conspicuous dimples. l Detail of the foregoing. a b f h Safranin-Fast Green. Brightfield microscope. c d e k l SEM. g i Polarized light microscope. j Epifluorescence microscope. Abbreviations: A outside of the gall, c cuticle, ea epidermis-air, el epidermis-lumen, L lumen of the gall, Lvb lower vascular bundle, pa storage parenchyma, ph phloem, s stoma, sd intraphloematic schizogenous duct, Uvb upper vascular bundle, x xylem. Scale bars a 500 µm; b 50 µm; c f–k 100 µm; d l 20 µm; e 5 µm.
FIGURE 3 in Sexual morphs and colour variants of Aphis (formerly Toxoptera) odinae (Hemiptera, Aphididae) in Japan
FIGURE 3. Plot of the mean scores on the first two canonical variates (CVs) of 23 samples of A. odinae: a, labelled according to the host plants on which they were collected; b, labelled according to their countries of origin and colour.
FIGURE 2 in Sexual morphs and colour variants of Aphis (formerly Toxoptera) odinae (Hemiptera, Aphididae) in Japan
FIGURE 2. Colour photographs of living A. odinae: a, fundatrix with bluish black progeny; b, fundatrix with brown progeny; c, oviparae and male; d, apterous viviparae of brown form (photograph by courtesy of Dr Poorani Janakiraman); e, apterous vivipara of green form; f, colony with mixture of the two colour forms.
FIGURE 1 in First field records of the sexuales (males and oviparae) of Toxoptera aurantii (Hemiptera: Aphididae)
FIGURE 1. Toxoptera aurantii oviparous female: (A) body; (B) antennal segments III–V; (C) lateroventral ridges on abdomen; (D) genital plate; (E) detail of hind tibia with pseudosensoriae.
FIGURES 1–6 in On the biology of Ceratopemphigus zehntneri Schouteden (Hemiptera: Aphididae), a gall-forming aphid on Ligustrum robustum subsp. walkeri (Oleaceae), in Sri Lanka
FIGURES 1–6. The biology of Ceratopemphigus zehntneri. 1, nymph; 2, alate; 3, young gall of about 1cm; 4, medium gall of about 3cm; 5, mature gall of about 9cm; 6, senescing gall of about 10cm diameter.
FIGURE 7 in On the biology of Ceratopemphigus zehntneri Schouteden (Hemiptera: Aphididae), a gall-forming aphid on Ligustrum robustum subsp. walkeri (Oleaceae), in Sri Lanka
FIGURE 7. Photomicrographs of slide-mounted Ceratopemphigus zehntneri. a, apterous vivipara (scale bar 1mm); b, alate vivipara (scale bar 1mm); c, front of head of fourth instar nymph; d, front of head of apterous vivipara; e, front of head of alate vivipara; f, antenna of alate vivipara; g, last segment of rostrum of apterous vivipara; h, antenna of apterous vivipara; i, wax gland on abdominal segment 3 of apterous vivipara; j, hind tarsus of apterous vivipara; k, end of abdomen of apterous vivipara (dorsal view); l, end of abdomen of apterous vivipara (ventral view).
Fig. 1 in Identification of Twelve Species of Coccinellidae (Coleoptera) Predatory on Melanaphis sacchari (Zehntner) (Hemiptera: Aphididae) in Mexico, and Submission of Reference Coi Sequences
Fig. 1. Coccinellid predators of Melanaphis sacchari in cultivated sorghum in Mexico. A) Brachiacantha decora, B) Coccinella septempunctata, C) Coleomegilla maculata lengi, D) Cycloneda sanguinea sanguinea, E) Diomus roseicollis, F) Diomus terminatus, G) Exochomus childreni guexi, H) Harmonia axyridis, I) Hippodamia convergens, J) Olla v-nigrum, K) Scymnus (Pullus) dozieri, and L) Scymnus (Pullus) loewii.
ScienceDex guides
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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.