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Plate VII, Figs C.1–C.6 – Type C (Italy, River Nure). C.1, adult ♂, sclerotized apex of aedeagus, dorso-caudal view; C.2, adult ♂, aedeagus and aedeagal tube; C.3, adult ♂, hemitergal lobes and mesal field with sensilla; C.4, adult ♂, hemitergal lobes, lateral view; C.5, head and pronotum of, adult ♂; C.6, subgenital plate of adult ♀. in Steps towards a revision of the Perla bipunctata Pictet, 1833 species complex (Plecoptera: Perlidae)
Plate VII, Figs C.1–C.6 – Type C (Italy, River Nure). C.1, adult ♂, sclerotized apex of aedeagus, dorso-caudal view; C.2, adult ♂, aedeagus and aedeagal tube; C.3, adult ♂, hemitergal lobes and mesal field with sensilla; C.4, adult ♂, hemitergal lobes, lateral view; C.5, head and pronotum of, adult ♂; C.6, subgenital plate of adult ♀.
Plate XXIV, Figs L.1–L.3 – Perla bipunctata in the works of Pictet (1833, 1842). L.1, nymph of Perla bipunctata (Pictet 1833: his plate 5, Fig. 12); L.2, nymph of Perla bipunctata (Pictet 1842: his plate 11, Fig. 1); L.3, adult ♂ of Perla bipunctata (Pictet 1842: his plate 12, Fig. 3). in Steps towards a revision of the Perla bipunctata Pictet, 1833 species complex (Plecoptera: Perlidae)
Plate XXIV, Figs L.1–L.3 – Perla bipunctata in the works of Pictet (1833, 1842). L.1, nymph of Perla bipunctata (Pictet 1833: his plate 5, Fig. 12); L.2, nymph of Perla bipunctata (Pictet 1842: his plate 11, Fig. 1); L.3, adult ♂ of Perla bipunctata (Pictet 1842: his plate 12, Fig. 3).
Plate XVI, Figs G.1–G.6 – Type G (Spain, Andalusia, River Castril). G.1, adult ♀, head and pronotum; G.2, adult ♀, head with ocelli; G.3, adult ♂, sclerotized apex of aedeagus; G.4, adult ♂, with everted aedeagus and aedeagal tube (photo by José Manuel Tierno de Figueroa); G.5, adult ♂, sclerotized apex of aedeagus; G.6, adult ♂, mesal field with sensilla and hemitergal lobes, dorsal view. in Steps towards a revision of the Perla bipunctata Pictet, 1833 species complex (Plecoptera: Perlidae)
Plate XVI, Figs G.1–G.6 – Type G (Spain, Andalusia, River Castril). G.1, adult ♀, head and pronotum; G.2, adult ♀, head with ocelli; G.3, adult ♂, sclerotized apex of aedeagus; G.4, adult ♂, with everted aedeagus and aedeagal tube (photo by José Manuel Tierno de Figueroa); G.5, adult ♂, sclerotized apex of aedeagus; G.6, adult ♂, mesal field with sensilla and hemitergal lobes, dorsal view.
Plate XIV, Figs F.1–F.2 – Type F (putative Perla bipunctata from the foothills of the French Pyrenees). F.1, illustrations of Despax (1942, his Figs 11, 12. Fig. 11 = adult ♂b with everted aedeagus, lateral view; Fig. 12 = adult ♂b, sclerotized apex of aedeagus); F.2, illustrations of Despax (1951, his Fig. 86, D, E, F. D = adult ♂b, mesal field with sensilla; E = adult ♂b, mesal field; F = adult ♂b, hemitergite). in Steps towards a revision of the Perla bipunctata Pictet, 1833 species complex (Plecoptera: Perlidae)
Plate XIV, Figs F.1–F.2 – Type F (putative Perla bipunctata from the foothills of the French Pyrenees). F.1, illustrations of Despax (1942, his Figs 11, 12. Fig. 11 = adult ♂b with everted aedeagus, lateral view; Fig. 12 = adult ♂b, sclerotized apex of aedeagus); F.2, illustrations of Despax (1951, his Fig. 86, D, E, F. D = adult ♂b, mesal field with sensilla; E = adult ♂b, mesal field; F = adult ♂b, hemitergite).
Fig. 4 in Greenhouse evaluation of neonate and adult applications of Coleomegilla maculata (Coleoptera: Coccinellidae) to control twospotted spider mite infestations
Fig. 4. Spider mite infestation levels in each treatment 20 d afer treatment application. Data represent the non-transformed mean number of mites, at specified developmental stage, per square cm of leaf surface (abaxial) ± SEM (n = 4). Different letters above bars indicate significant difference (P <0.05, Holm-Sidak multiple comparisons).
Fig. 2 in Greenhouse evaluation of neonate and adult applications of Coleomegilla maculata (Coleoptera: Coccinellidae) to control twospotted spider mite infestations
Fig. 2. Temperature fluctuations (only daily high temperatures are charted) during the course of the experiment.
Fig. 3. Representative samples from initial experiment interrupted and lef untended for 17 d in Greenhouse evaluation of neonate and adult applications of Coleomegilla maculata (Coleoptera: Coccinellidae) to control twospotted spider mite infestations
Fig. 3. Representative samples from initial experiment interrupted and lef untended for 17 d. Plants treated with lady beetles recovered from extreme stress; infested and untreated plants could not grow new leaves (no recovery).
Figs. 1–4. Adeloneivaia fallax, adult. 1 and 2 in Immature stages of Adeloneivaia fallax (Lepidoptera: Saturniidae)
Figs. 1–4. Adeloneivaia fallax, adult. 1 and 2. Male, dorsal and ventral views, respectively. 3 and 4. Female, idem.
Fig. 6 in Developmental continuity between larval and adult leg patternings in Coccinella septempunctata (Coleoptera: Coccinellidae)
Fig. 6. Determination of the end of the critical period for regeneration in the fourth instar. Adult leg regeneration frequencies (%) afer the right midleg was ablated at various times in the 4th stadium.
Fig. 2 in Developmental continuity between larval and adult leg patternings in Coccinella septempunctata (Coleoptera: Coccinellidae)
Fig. 2. The effects of half ablation on adult leg regeneration in C. septempunctata. (Lef Foreleg): Phenotypes of the forelegs of adults derived from larvae whose lef forelegs had been half ablated. No regeneration (NR) in the circle, partial regeneration (PR) and complete regeneration (CR) are shown. In the 2 columns on the right, PR' and CR' are color-level inversion images of the leg segments highlighted. Each scale bar equals 500 µm. This figure is shown in color in a supplementary document online as Suppl. Fig. 2 in Florida Entomologist 98(1) (March 2015) at http://purl.fcla.edu/fcla/entomologist/browse.
Fig. 1 in Toxicities and residual effects of toxic baits containing spinosad or malathion to control the adult Anastrepha fraterculus (Diptera: Tephritidae)
Fig. 1. The mortality of Anastrepha fraterculus adult afer 1, 3, 5 and 7 days of exposure to toxic baits. (Vertical bars indicate the standard error of the mean). Mortality was calculated by the formula of Schneider-Orelli (1947).
Fig. 4 in Movement of Diaphorina citri (Hemiptera: Liviidae) adults between huanglongbing-infected and healthy citrus
Fig. 4. Sketch of Y-tube for determining the taxis of Diaphorina citri adults to green, yellow, and white boards.
Fig. 3 in Movement of Diaphorina citri (Hemiptera: Liviidae) adults between huanglongbing-infected and healthy citrus
Fig. 3. Device and set-up for determining the selection by Diaphorina citri adults of detached citrus shoots that were either young and infected, or young and healthy; or of detached shoots either with infected mature-yellow leaves, or with physiologically mature-yellow leaves, or with healthy mature-green leaves, or with infected mature-green leaves.
Fig. 5 in Movement of Diaphorina citri (Hemiptera: Liviidae) adults between huanglongbing-infected and healthy citrus
Fig. 5. Selection by Diaphorina citri adults of detached shoots of various conditions under continuous illumination. Bars with the same letter without parentheses are not significantly different among various conditions of shoots in the same adult group; bars with the same letter within parentheses are not significantly different among the 3 adult groups (Tukey's HSD test or Friedman test, P <0.05).
Fig. 1 in Movement of Diaphorina citri (Hemiptera: Liviidae) adults between huanglongbing-infected and healthy citrus
Fig. 1. Sketch of H-shaped device for determining the choices of Diaphorina citri adults for HLB-infected versus healthy citrus plants either in darkness or in normal illumination. The device was made of an opaque plastic, and the cylinders were covered either with 2 black paperboards or with 2 transparent plastic boards.
Fig. 2 in Parasitism and emergence of Tetrastichus howardi (Hymenoptera: Eulophidae) on Diatraea saccharalis (Lepidoptera: Crambidae) larvae, pupae and adults
Fig. 2. Larvae, pupae and adults of Tetrastichus howardi (Hymenoptera: Eulophidae) in pupae of Diatraea saccharalis(Lepidoptera: Crambidae) (A, B, C); D. saccharalis adult parasitized by T. howardi (D).
Figure 4 in On the adult female of Oiclus nanus Teruel et Chazal, 2010 (Scorpiones: Scorpionidae: Diplocentrinae)
Figure 4: Mainland Guadeloupe, showing both confirmed (1–2) and putative (3–4) records for Oiclus nanus: 1) Pointe des Châteaux; 2) Anse-Bertrand; 3) Terre-de-Haut; 4) Bouillante. See details of putative records in Teruel & Chazal (2010: 8–9).
Figure 3 in On the adult female of Oiclus nanus Teruel et Chazal, 2010 (Scorpiones: Scorpionidae: Diplocentrinae)
Figure 3: Live specimens of Oiclus nanus: a) adult female topotype; b) adult female from Anse-Bertrand; c) juvenile topotype.
Fig. 6 in Adult identity crisis in Leucothrips (Thysanoptera: Thripidae) associated with the tropical ornamental plant Codiaeum variegatum (Euphorbiaceae)
Fig. 6. Divergence in the internal transcribed spacer 2 (ITS2) DNA sequence of Leucothrips specimens from Sechium edule in Costa Rica relative to those from other hosts. Sequences were aligned with MAFFT v7.293 using the G-INS-1 strategy.
Figs. 1–4 in Adult identity crisis in Leucothrips (Thysanoptera: Thripidae) associated with the tropical ornamental plant Codiaeum variegatum (Euphorbiaceae)
Figs. 1–4. Second instar larva of Leucothrips species: (1) morphotype-A abdominal tergite II spiracle at 1000× magnification; (2) morphotype-A prothorax; arrow indicates setae D6; (3) morphotype-B abdominal tergite II spiracle at 1000× magnification; (4) morphotype-B prothorax; arrow indicates setae D6; scale = 50 µm.
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.