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646 results for “Nymphes”
FIGURE 26. Cloeodes tracheatus, nymph. a. Fore leg, anterior surface. b. Fore femur, apex projection. c in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 26. Cloeodes tracheatus, nymph. a. Fore leg, anterior surface. b. Fore femur, apex projection. c. Apex of fore tibia. d. Posterior margin of segment IV. e. Gill IV. f. Paraproct (v.v.).
FIGURE 3. Habitus, nymphs. a in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 3. Habitus, nymphs. a. Cloeodes melanotarsus (d.v.). b. Cloeodes melanotarsus (v.v.). c. Cloeodes tracheatus. d. Cloeodes xyrognathos.
FIGURE 15. Cloeodes guara, nymph. a in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 15. Cloeodes guara, nymph. a. Labrum (d.v.). b. Right mandible (d.v.). c. Left mandible (d.v.). d. Maxilla (v.v.). e. Labium (v.v.)
FIGURE 25. Cloeodes tracheatus, nymph. a in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 25. Cloeodes tracheatus, nymph. a. Labrum (d.v.). b. Right mandible (d.v.). c. Left mandible (d.v.). d. Maxilla (v.v.). e. Labium (v.v.).
FIGURE 22. Cloeodes magnus, nymph. a. Fore leg, anterior surface. b. Fore femur, apex projection. c in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 22. Cloeodes magnus, nymph. a. Fore leg, anterior surface. b. Fore femur, apex projection. c. Apex of fore tibia. d. Posterior margin of segment IV. e. Gill IV. f. Paraproct (v.v.).
FIGURE 8. Cloeodes amantykyra, nymph. a in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 8. Cloeodes amantykyra, nymph. a. Labrum (left d.v., right v.v.). b. Details of submarginal row of ventral setae. c. Hypopharynx (d.v.). d. Right mandible (d.v.). e. Left mandible (d.v.). f. Maxilla (v.v.). g. Labium (left d.v., right v.v.). h. Detail of segment III of labial palp (v.v.).
FIGURE 23. Cloeodes melanotarsus, nymph. a in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 23. Cloeodes melanotarsus, nymph. a. Labrum (d.v.). b. Right mandible (d.v.). c. Left mandible (d.v.). d. Maxilla (v.v.). e. Labium (v.v.).
FIGURE 14. Cloeodes boldrinii, nymph. a. Fore leg, anterior surface. b. Fore femur, apex projection. c in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 14. Cloeodes boldrinii, nymph. a. Fore leg, anterior surface. b. Fore femur, apex projection. c. Apex of fore tibia. d. Posterior margin of segment IV. e. Gill IV. f. Paraproct (d.v.).
FIGURE 21. Cloeodes magnus, nymph. a in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 21. Cloeodes magnus, nymph. a. Labrum (d.v.). b. Right mandible (d.v.). c. Left mandible (d.v.). d. Maxilla (v.v.). e. Labium (v.v.).
FIGURE 18. Cloeodes ioachimi, nymph. a. Fore leg, anterior surface. b. Fore femur, apex projection. c in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 18. Cloeodes ioachimi, nymph. a. Fore leg, anterior surface. b. Fore femur, apex projection. c. Apex of fore tibia. d. Posterior margin of segment IV. e. Gill IV. f. Paraproct (v.v.).
FIGURE 19. Cloeodes lucifer, nymph. a in Revealing the diversity of Cloeodes Traver, 1938 (Ephemeroptera: Baetidae) in the Neotropics: description of eleven new species from Brazilian mountain ranges
FIGURE 19. Cloeodes lucifer, nymph. a. Labrum (left v.v., right d.v.). b. Right mandible (d.v.). c. Left mandible (d.v.). d. Maxilla (v.v.). e. Labium (v.v.).
FIGURE 9. A in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 9. A stridulating male at the mouth of its burrow. The wide mouth of the burrow serves as an 'acoustic chamber' for amplification (Photo: J.J. Borg).
FIGURE 8 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 8. Correlation between atmospheric pressure and the count interval (difference in the count between successive, weekly observation periods) with trendlines for all points (grey) and when not considering the only outlier (blue).
FIGURE 1 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 1. Aerial image of the area of study and its surrounding terrain (Source: Google Earth—imagery 23/5/2021).
FIGURE 6 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 6. Sustained wind speed (main chart) and accompanying wind gusts (inset) are practically aligned, which indicates a quasi-constant wind during observation periods.
FIGURE 7. Humidity chart across observation periods with a range varying from 75 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 7. Humidity chart across observation periods with a range varying from 75% to 94%. Notwithstanding the high level of humidity registered on some days, no precipitation was recorded during or immediately prior to field sessions.
FIGURE 3 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 3. Abundance across the eleven weeks of field observations on the area of study and its immediate surroundings.
FIGURE 2 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 2. The high concentration of individuals on the sand dune biotope patch devoid of trees demonstrates a preference for such habitat conditions (each orange dot represents a single sighting record).
Fig. 1 in Virulence of two entomopathogenic nematode species, Steinernema sp. (strain PQ16) and Heterorhabditis indica (strain KT3987), to nymphs of the coffee cicada Dundubia nagarasingna
Fig. 1. Mortality of coffee cicada nymphs, Dundubia nagarasingna, treated with entomopathogenic nematodes, Steinernema sp. (strain PQ16) and Heterorhabditis indica (strain KT3987), at inoculation doses of 100, 200, 300, 400, 500 and 600 infective juveniles (IJ) nymph−1 at A: 24 h, B: 48 h, C: 72 h after inoculation. Values are means ± SE; different letters in each figure represent means that are statistically different between nematode concentrations (Tukey's HSDtest, P <0.05). Thecorrectedcumulative mortality axis indicates nymphal mortality increasing with IJ inoculation doses and exposure time. Mortality data were corrected by Abbott's formula (Abbott, 1925).
Fig. 4 in Virulence of two entomopathogenic nematode species, Steinernema sp. (strain PQ16) and Heterorhabditis indica (strain KT3987), to nymphs of the coffee cicada Dundubia nagarasingna
Fig. 4. Number of infective juveniles (IJ) (250 ml soil)−1 at the treatment dose of 40 × 103 and 60 × 103 IJ pot−1 10, 20 and 30 days after treatment. A: S-PQ16 strain, B: H-KT3987 strain. Letters indicate significant differences among interval times in each (lower case andupper case) IJdose (one-way ANOVA, P <0.05). Pair-treatmentcomparisonbetweeninitialinoculationsisrepresentedwithlines above thecolumns (Student's t -test, *P <0.05, **P <0.01, ***P <0.001, ns: not significant). Valuesaremeans ± SE.
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.