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1,309 results for “Cladoceras”
Figure 3 in A revision of the extinct Mesozoic family Prochydoridae Smirnov, 1992 (Crustacea: Cladocera) with a discussion of its phylogenetic position
Figure 3. SEM micrographs of Upper Mesozoic Prochydoridae from Khotont. A, B, Prochydorus rotundus, PIN 4307/ 2013, general view and head. C, PIN 4307/2041, antenna II and mandible. D–F, specimen PIN 4307/2031, general view, anterior body portion and antenna II. G, H, Archeoxus ventrosus, holotype PIN 4307/2027, general view and antenna II. Scale bars: A, C–E, G, 1 mm; B, F, H, 0.1 mm.
Figure 2 in A revision of the extinct Mesozoic family Prochydoridae Smirnov, 1992 (Crustacea: Cladocera) with a discussion of its phylogenetic position
Figure 2. SEM micrographs of Prochydorus rotundus from Khotont, Mongolia. A–D, holotype PIN 4307/2024, general view, postabdominal claws, antenna II and apical segment of its exopod. E, holotype PIN 4307/2040 (counter-impression). F, G, paratype PIN 4307/2019, general view and mandibles. H, paratype PIN 4307/2020. Scale bars: A, F, H, 1 mm; B–E, G, 0.1 mm.
Fig. 2 in Cladoceras rovumense sp. nov. (Gentianales-Rubiaceae), a new species from southeast Tanzania and northeast Mozambique
Fig. 2. Species of Cladoceras Bremek. in the field. A–B. Cladoceras rovumense I.Darbysh., J.E.Burrows & Q.Luke sp. nov. (photos: A. Q. Luke; B. P.A. Luke, Mozambique). C–D. Cladoceras subcapitatum (K.Schum. & K.Krause) Bremek. (photos: W.R.Q. Luke, Base Titanium nursery, Kwale County, Kenya).
Fig. 1. Cladoceras rovumense I.Darbysh., J.E.Burrows & Q in Cladoceras rovumense sp. nov. (Gentianales-Rubiaceae), a new species from southeast Tanzania and northeast Mozambique
Fig. 1. Cladoceras rovumense I.Darbysh., J.E.Burrows & Q.Luke sp. nov. A. Habit, fruiting shoot. B. Habit, flowering shoot. C. Stipule, external face. D. Hairs revealed beneath fallen stipule. E. Portion of flowering stem showing indumentum. F. Leaf, adaxial indumentum. G. Leaf, abaxial indumentum. H. Dissected corolla with androecium. I. Style and stigma. J. Longitudinal section of ovary. K. Mature fruit. L. Fruit, partially dissected to reveal seeds. M. Seed in two views. A, E–G, K–M from S. Bidgood et al. 1357; B, H–I from Q. Luke 13883; C–D, J from Q. Luke et al. 10116. Drawn by Andrew Brown.
Fig. 2 in Optimisation Of Dna Extraction And Rapd-Pcr Amplification For Population Genetic Analysis Of Daphnia Cucullata Sars, 1862 (Crustacea: Cladocera)
Fig. 2. RAPD fingerprints results from different samples of Daphnia cucullata with primers OPA-03 and OPA-05 (M- marker, 1-11 runners- different samples of Daphnia cucullata; 12- control) using RAPD-PCR 10 × Taq buffer with (NH4)2SO4.
Fig.1 in Optimisation Of Dna Extraction And Rapd-Pcr Amplification For Population Genetic Analysis Of Daphnia Cucullata Sars, 1862 (Crustacea: Cladocera)
Fig.1. RAPD fingerprints results from different samples of Daphnia cucullata with primers OPA-03 and OPA-05 (M- marker, 1-16 runners- different samples of Daphnia cucullata; 17- control) using RAPD-PCR 10 × Taq buffer with KCl.
Figure 3 in Egg production and life history of Alona guttata Sars, 1862 (Cladocera, Chydoridae): implications for colonization of temporary ponds
Figure 3. Growth curve of Alona guttata in experimental conditions of controlled light conditions. (Fed with R. subcapitata, controlled temperature of 22 ± 2 °C and photoperiod of 16 h light/8 h dark.)
Figure 2. Alona guttata Sars, 1862 in Egg production and life history of Alona guttata Sars, 1862 (Cladocera, Chydoridae): implications for colonization of temporary ponds
Figure 2. Alona guttata Sars, 1862: (A) parthenogenetic female; (B) head pore; (C) post-abdomen details.
Figure 1 in Egg production and life history of Alona guttata Sars, 1862 (Cladocera, Chydoridae): implications for colonization of temporary ponds
Figure 1. Reproduction aspects and life cycle parameters of Alona guttata for 18 individuals grown under laboratory conditions. (Fed with R. subcapitata, controlled temperature of 22 ± 2 °C and photoperiod of 16 h light/8 h dark.)
Figure 1 in Spatio-temporal variability in the Cladocera assemblage of a subtropical hypersaline lagoon
Figure 1. Map of the Rio de Janeiro state coast highlighting the 12 sampling stations in Araruama lagoon.
Figure 5 in Spatio-temporal variability in the Cladocera assemblage of a subtropical hypersaline lagoon
Figure 5. Cladocera Assemblage of Araruama Lagoon from January 2010 to December 2013. Stations 11 and 12 with different scales. E. spinifera (black and white lines arranged laterally); P. tergestina (black with small white spots);P. avitostris (vertical black and white lines); P. polyphemoides (chess pattern); P. sckmackeri (black and white lines waved horizontally).
Figure 3 in Spatio-temporal variability in the Cladocera assemblage of a subtropical hypersaline lagoon
Figure 3. BoxPolt of temperature presented from means and standard deviation, spatial variation (A) and temporal variation (B).
Fig. 10 in A revision of the genus Disparalona (Cladocera, Chydorinae) in South America
Fig. 10. Disparalona (Mixopleuroxus) tenuispina sp. nov., parthenogenetic female. A–B. Habitus. C. Ventral view of carapace. D. Anterior portion of ventral margin of carapace. E. Posterior portion and posteroventral corner of carapace. F. Rostrum. G. Main head pores. H. Labrum. I. Idem, frontal view. J. Maxilla. K. Antennule. L. Antenna. Scale bars: A = 80 μm; C–L = 50 μm. Fig. B was not scaled.
Fig. 5 in A revision of the genus Disparalona (Cladocera, Chydorinae) in South America
Fig. 5. Disparalona (Mixopleuroxus) hamata (Birge, 1879), parthenogenetic female. A. First limb. B. Idem, stiff setae. C. Idem, ODL and IDL. D. Second limb. E. Third limb. F. Fourth limb. G. Idem, distal endite. H. Fifth limb. Scale bar = 50 μm.
Fig. 1 in A revision of the genus Disparalona (Cladocera, Chydorinae) in South America
Fig. 1. Disparalona (Mixopleuroxus) leptorhyncha (Daday, 1905), parthenogenetic female. A–B. Habitus. C. Ventral view of carapace. D. Anterior portion of ventral margin of carapace. E. Posterior portion and posteroventral corner of carapace. F. Ornamentation of carapace. G. Rostrum. H. Idem, frontal view. I. Head shield. J–K. Main head pores. L. Maxilla. M. Labrum. N. Idem, frontal view. O. Antennule. P. Antenna. Scale bars: C–E, G–I, L–O = 50 μm; A = 80 μm. Figs B, D, F, K were not scaled.
Fig. 9 in A revision of the genus Disparalona (Cladocera, Chydorinae) in South America
Fig. 9. Disparalona (Mixopleuroxus) lucianae sp. nov., parthenogenetic female. A–E. Postabdomen. A. Lateral view. B–D. Marginal denticles. E. Dorsal view of postabdominal claw (separation between claws not represented). Scale bar = 50 μm. Figs C–D were not scaled.
Fig. 8 in A revision of the genus Disparalona (Cladocera, Chydorinae) in South America
Fig. 8. Disparalona (Mixopleuroxus) lucianae sp. nov., parthenogenetic female. A. First limb. B. Idem, stiff setae. C. Second limb. D. Third limb. E. Idem, epipodite. F–G. Fourth limb. H. Idem, distal endite. I. Elements. J. Fifth limb. Scale bar = 50 μm.
Fig. 7 in A revision of the genus Disparalona (Cladocera, Chydorinae) in South America
Fig. 7. Disparalona (Mixopleuroxus) lucianae sp. nov., parthenogenetic female. A–B. Habitus. C. Ventral view of carapace. D–E. Ornamentation of carapace. F. Anterior portion of ventral margin of carapace. G. Middle portion of ventral margin of carapace. H. Posterior portion and posteroventral corner of carapace. I. Rostrum. J. Head shield. K. Main head pores. L. Labrum. M. Antennule. N. Antenna. Scale bars = 50 μm. Figs B, D–E were not scaled.
Fig. 3 in A revision of the genus Disparalona (Cladocera, Chydorinae) in South America
Fig. 3. Disparalona (Mixopleuroxus) leptorhyncha (Daday, 1905), parthenogenetic female. A–D. Postabdomen. A. Lateral view. B–C. Marginal denticles. D. Dorsal view of postabdominal claw (separation between claws not represented). Scale bars = 50 μm. Figs B–C, were not scaled.
Fig. 4 in A revision of the genus Disparalona (Cladocera, Chydorinae) in South America
Fig. 4. Disparalona (Mixopleuroxus) hamata (Birge, 1879), parthenogenetic female. A. Habitus. B. Ventral view of carapace. C. Anterior portion of ventral margin of carapace. D. Middle portion of ventral margin of carapace. E. Posterior portion and posteroventral corner of carapace. F. Rostrum. G. Idem, frontal view. H. Main head pores. I. Labrum. J. Idem, frontal view. K. Maxilla. L. Antennule. M. Antenna. Scale bars: C–L = 50 μm; A–B = 100 μm.
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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)
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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.