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Fig. 2 in Maastrichtian Larger Benthic Foraminifera From The Arabian Plate Sensu Lato: New Data From Somalia, Turkey, And Iran
Fig. 2 Above: Subdivison of the Maastrichtian stage: comparison of different used substages and biostratigraphic use of selected larger benthic foraminifera. Examples: Loftusia minor (acc. to Meriç and Görmüş, 2001), Siderolitidae (acc. to Robles-Salcedo et al., 2018, 2019), and relationship to biozonation of Wynd (1965) (modified herein). Below: Example of the Palaeoelphidium multiscissuratum subzone (new name) of the Omphalocyclus-Loftusia assemblage zone sensu Wynd (1965), upper Maastrichtian Tarbur Formation, SW Iran. Loftusia sp. in the middle with agglutinated test of Palaeoelphidium multiscissuratum (Smout) (detail from Luger, 2018, pl. 26, fig. 10, illustrated as Laffiteina aff. jaskii Rahaghi), and Omphalocyclus (O).
Fig. 1 in Maastrichtian Larger Benthic Foraminifera From The Arabian Plate Sensu Lato: New Data From Somalia, Turkey, And Iran
Fig. 1 Distribution of Maastrichtian shallow-water carbonates along the margins of the northern Arabic and northeastern African plates (modified from Scotese, 2001). For lithostratigraphy and distribution see Barrier and Vrielynck, 2008).
Fig. 5 in Maastrichtian Larger Benthic Foraminifera From The Arabian Plate Sensu Lato: New Data From Somalia, Turkey, And Iran
Fig. 5 Cyclopsinella steinmanni (Munier-Chalmas) from the upper Maastrichtian of Somalia (Auradu Formation: a), Iran (Tarbur Formation: b-c, e-f), and C. steinmanni from the upper Santonian of France (d). a from Luger (2018, pl. 4, fig. 10 as Saudia sp.). b-c, e-f Naghan section. Note the aligned pillars (partly fusing laterally) in b and f, and sporadic rudimentary short rafter (r) in e. d from Gendrot (1964, pl. 1, fig. 10). Abbreviations: pi = pillar, r = rafter, s = septum.
Fig. 2 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 2. Schematic illustrations of Ceratomyxa kareus sp. n. A–L – from Kareius bicoloratus; M–N – from Zebrias zebra; A–D – lateral view of mature spore; E–F, N – plasmodia with two spores; G–J – earlier stage plasmodia; K – plasmodium with one spore; L–M – plasmodia with mature spores. Scale bars: 10 µm.
Fig. 3 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 3. Schematic illustrations of Ceratomyxa spp. A–E – Ceratomyxa lomi sp. n.; A – mature spore viewed from the perspective of the capsule; B–D – lateral view of mature spore; E – plasmodium with two mature spores; F–J – Ceratomyxa lateolabrax sp. n.; F – plasmodium with two spores; G–J – lateral view of mature spore; K–N – Ceratomyxa qingdaoensis sp. n.; K–L, N – showing a lateral view of a mature spore; M – lateral view of an immature spore. Scale bars: 10 µm.
Fig. 1 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 1. Schematic illustrations of three myxosporean species. A–E – Sphaerospora sebasta sp. n.; A – mature spore from a frontal view; B–C – spore viewed from the perspective of the capsule; D – spore from a sutural view; E – spore from an oblique sutural view; F–H – Ceratomyxa sebastisca sp. n., showing mature spores with coarse sporoplasm; I–O – Ceratomyxa hemitriptera sp. n.; I–J – mature spore from a lateral view; K–L – plasmodium with one mature spore; M–N – early stage plasmodium with one developing spore; O – plasmodium with one developing spore from a capsule view. Scale bars: 10 µm.
Fig. 5 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 5. Microphotographs of myxosporean species. A–B – Sphaerospora sebasta sp. n.; C – Ceratomyxa sebastisca sp. n.; D–E – Ceratomyxa hemitriptera sp. n.; F–H – Ceratomyxa kareus sp. n.; I–J – Ceratomyxa lomi sp. n. Scale bars: 10 µm.
Fig. 4 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 4. Schematic illustrations of Ceratomyxa spp. A–G – Ceratomyxa saurida sp. n.; A–D, G – lateral view of mature spore; E – lateral view of abnormal spore; F – lateral view of immature spore; H–L – Ceratomyxa simplex sp. n.; H, J – lateral view of mature spore; I – immature spore viewed from the perspective of the capsule; K–L – plasmodia with one spore; M–T – Ceratomyxa triacantha sp. n.; M–N, P – plasmodia with two spores; O, Q – early stage plasmodia with many nuclei; R–T – sutural view of mature spores. Scale bars: 10 µm.
Fig. 1 in DNA barcode of Parodontidae species from the La Plata river basin - applying new data to clarify taxonomic problems
Fig. 1. Map of the La Plata River basin showing the localities of Parodontidae samples used in this study. Empty pentagon: P. nasus; full pentagon: A. affinis; empty star: P. moreirai; full star: A. affinis; empty square: A. vittatus; full square: A. piracicabae; empty lozenge: Apareiodon sp.; full lozenge: A. vladii; empty triangle: A. affinis; full triangle: A. ibitiensis. The Iguaçu Falls and the Itaipu hydroelectric Power Plant are located in the city of Foz do Iguaçu, PR and the old Seven Falls in the city of Guaíra, PR - shown on the map.
Fig. 2. K2P in DNA barcode of Parodontidae species from the La Plata river basin - applying new data to clarify taxonomic problems
Fig. 2. K2P distance NJ dendrogram showing the nine analyzed species/populations of Parodontidae from the La Plata River basin.
Figure 7 in New data of poorly known species Gammarus orientalis (S. Karaman, 1934) (family Gammaridae) from Asia Minor (Contribution to the Knowledge of the Amphipoda 292)
Figure 7. Gammarus orientalis (S. Karaman 1934), Derbend, Erdschias-dag =(Erciyas-dagi), 2100 m a. s. l., Asia Minor: A= pereopod 5; B= pereopod 6; C= pereopod 7; D= uropod 3 (slide); E= telson (slide) [A, B, C= female 7.8 mm ovig., paratype; D, E= female, unknown size, paratype, slide).
Figure 8 in New data of poorly known species Gammarus orientalis (S. Karaman, 1934) (family Gammaridae) from Asia Minor (Contribution to the Knowledge of the Amphipoda 292)
Figure 8. Gammarus orientalis (S. Karaman 1934), Derbend, Erdschias-dag (=Erciyas-dagi), 2100 m a. s. l., Asia Minor, female 7.8 mm ovig., paratype: A-B= gnathopod 1; C-D= gnathopod 2.
Figure 1 in New data of poorly known species Gammarus orientalis (S. Karaman, 1934) (family Gammaridae) from Asia Minor (Contribution to the Knowledge of the Amphipoda 292)
Figure 1. Gammarus orientalis (S. Karaman 1934), Derbend, Erdschias-dag (=Erciyas-dagi), 2100 m a. s. l., Asia Minor: A= head; B-C= left antenna 1; D= accessory flagellum of right antenna 1; E= antenna 2; F= uropod 3 (numerous setae are broken); G= telson; H= telson [A, B, C, D, E, F, G= male 8.0 mm, paratype; H= male, holotype].
Figure 5 in New data of poorly known species Gammarus orientalis (S. Karaman, 1934) (family Gammaridae) from Asia Minor (Contribution to the Knowledge of the Amphipoda 292)
Figure 5. Gammarus orientalis (S. Karaman 1934), Derbend, Erdschias-dag (=Erciyas-dagi), 2100 m a. s. l., Asia Minor: A= peduncle of antenna 1 (slide); B= antenna 2 (slide); C= uropod 3, slide; D= urosome; E= epimeral plates 1 - 3; F= telson [A, B, C= male, holotype; D, E, F= female ovig. 7.8 mm, paratype].
Figure 4 in New data of poorly known species Gammarus orientalis (S. Karaman, 1934) (family Gammaridae) from Asia Minor (Contribution to the Knowledge of the Amphipoda 292)
Figure 4. Gammarus orientalis (S. Karaman 1934), Derbend, Erdschias-dag (=Erciyas-dagi), 2100 m a. s. l., Asia Minor: A-B= pereopod 5; C= pereopod 6; D= pereopod 7; E= urosome; F= basipodit of pereopod 7 [A, B, C, D, E= male 8.0 mm, paratype; F= male, holotype].
Figure 6 in New data of poorly known species Gammarus orientalis (S. Karaman, 1934) (family Gammaridae) from Asia Minor (Contribution to the Knowledge of the Amphipoda 292)
Figure 6. Gammarus orientalis (S. Karaman 1934), Derbend, Erdschias-dag (=Erciyas-dagi), 2100 m a. s. l., Asia Minor, female ovig. 7.8 mm, paratype: A= antenna 2; B= pereopod 3; C= pereopod 4; D= uropod 3.
Figure 3 in New data of poorly known species Gammarus orientalis (S. Karaman, 1934) (family Gammaridae) from Asia Minor (Contribution to the Knowledge of the Amphipoda 292)
Figure 3. Gammarus orientalis (S. Karaman 1934), Derbend, Erdschias-dag (=Erciyas-dagi), 2100 m a. s. l., Asia Minor, male 8.0 mm, paratype: A= right mandible and lacinia mobilis; B= left mandible and lacinia mobilis; C= mandibular palpus [A, B, D and E setae]; D= epimeral plates 1-3; E= pereopod 3; F= pereopod 4.
Figure 2 in New data of poorly known species Gammarus orientalis (S. Karaman, 1934) (family Gammaridae) from Asia Minor (Contribution to the Knowledge of the Amphipoda 292)
Figure 2. Gammarus orientalis (S. Karaman 1934), Derbend, Erdschias-dag (=Erciyas-dagi), 2100 m a. s. l., Asia Minor: A-B= gnathopod 1; C-D= gnathopod 2; E= distal part of gnathopod 1; F= distal part of gnathopod 2 [A, B, C, D= male 8.0 mm, paratype; E, F= male, holotype].
Figure 1 in New faunistic data on the cave-dwelling spiders in the Balkan Peninsula (Araneae)
Figure 1. Distribution of the studied sites in the territory of the Balkan Peninsula. Legend: AL – Albania, B&H – Bosnia & Herzegovina, BG – Bulgaria, CR – Croatia, GR – Greece, MC – FYR Macedonia, MN – Montenegro, SE – Serbia, TR – Turkey (European part).
Figure 2 in New Data On Distribution Of Two Palaearctic Leptaleus Laferté-Sénectère, 1849 (Coleoptera: Anthicidae) Species With New Records And A Correction
Figure 2. Leptaleus chaudoiri (Kolenati, 1846), male aedeagus. A – specimen from Cyprus, 'CYP RUS TROODOS Mts. Dhiarizos Riv., on light eastAgios Georgios leg. PREISS', 18 VII 99; B – specimen from 'Greece, Rodos, Koljmbia, 18– 25.06.2001 Leg. L. Fancello'; C – specimen from Iran, 'IRAN, Gilan Province S Astara, 5 km W Lavandvil: Koteh Komeh, 180 m 38°18'26" N, 048°47'14" E 10.10.2011, leg. Frisch'; D – specimen from Nepal, 'NEPAL, Prov. Bheri 28°38'23" N, 81°17'14" E Chisapani, KarnaliUfer 17.VI.2005; 180 m leg.: J. Weipert'; E – specimen from Pakistan, Islamabad sect. 7 (see studied material).
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.