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Fig. 2 in A New Monocotylid Species, Neoheterocotyle quadrispinata n. sp. (Monogenea), Infecting Gills of Rhinobatos hynnicephalus in Japan
Fig. 2. Light micrograph of ejaculatory bulb of Neoheterocotyle quadrispinata n. sp. (NSMT-Pl 6382, dorsal view). Scale bar: 30 µm. Abbreviations: ap, accessory piece; ej, ejaculatory bulb; p, penis; mag, male accessory gland; sv, seminal vesicle.
FIG. 6. — Sindhochelys ragei n. gen., n in First report of a bothremydid turtle, Sindhochelys ragei n. gen., n. sp., from the early Paleocene of Pakistan, systematic and palaeobiogeographic implications
FIG. 6. — Sindhochelys ragei n. gen., n. sp., holotype CPAG-RANKT-V-3, from the Paleocene of Ranikot, locality K18-12, Southern Pakistan: left anterior part of the shell in oblique posterolateral view showing the delimitation of marginals 2 and 3, and of plastral scutes by the indentation at the end of sulci border, and the ventral bulges of the scutes. Abbreviations: ax b, axillary buttress; 3d per, third peripheral. The arrows indicate ends of sulci at the border of the peripherals and anterior plastral lobe. Scale bar: 5 cm.
FIG. 9 in First report of a bothremydid turtle, Sindhochelys ragei n. gen., n. sp., from the early Paleocene of Pakistan, systematic and palaeobiogeographic implications
FIG. 9. — Comparison of the decoration of Sindhochelys ragei n. gen., n. sp. from the Paleocene of Ranikot, locality K18-12, Southern Pakistan, and Taphrosphys sulcatus (Leidy, 1856) from the early Paleocene of New Jersey (United States): A-D, Sindhochelys ragei n. gen., n. sp., holotype CPAG-RANKT-V-3: A, nuchal part; B, left peripherals 2, dorsal face with smaller polygons than in other parts; C, suprapygal-pygal part, dorsal views; D, imprint of an isolated plate, ventral view; E-G, Taphrosphys sulcatus: E, AMNH 1470, "Barnsboro, N.J." (Cope collections), nuchal border of three plates, dorsal view; F, G, AMNH 2522, «Tinton Falls, N.J.», syntype: F, peripheral 6 (medial plate of three in Leidy (1856: pl. 19, fig.4), and in Gaffney et al. (2006: fig. 20), dorsal view; G, xiphiplastron, ventral view. Scale bars: A-C, E-G, 5 cm; D, 2 cm.
FIG. 10 in First report of a bothremydid turtle, Sindhochelys ragei n. gen., n. sp., from the early Paleocene of Pakistan, systematic and palaeobiogeographic implications
FIG. 10. — Fragmentary part of a carapace of an undetermined Bothremydidae, from the Paleocene of Ranikot, locality K18-12, CPAG-RANKT-V4, Southern Pakistan: A, B, ventral and dorsal views; C, detail of the dorsal decoration. Abbreviations: cost3, costal 3; cost5, costal 5; pcs, suture of the peripheral border with the border of plastral processes; per 5-8, peripherals 5, 6, 7, 8; perf, pholad perforations. Scale bars: A, B, 4 cm; C, 1 cm.
FIG. 5. — Sindhochelys ragei n. gen., n in First report of a bothremydid turtle, Sindhochelys ragei n. gen., n. sp., from the early Paleocene of Pakistan, systematic and palaeobiogeographic implications
FIG. 5. — Sindhochelys ragei n. gen., n. sp., holotype CPAG-RANKT-V-3, from the Paleocene of Ranikot, locality K18-12, Southern Pakistan: A, anterolateral part of the carapace after removal of a part of the costal 1 with part of the neural l and the costal 2, to show the imprints of the thoracic ribs 1 and 2, and axillary buttress, in dorsal view; B, same removed part in ventral view. Abbreviations: ax b, axillary buttress; cost 1, costal 1; n1, neural 1; nu, nuchal; per 2, peripheral 2; rib 1, rib 2, medial part of thoracic ribs 1 and 2. Scale bar: 4 cm.
FIG. 4. — Sindhochelys ragei n. gen., n in First report of a bothremydid turtle, Sindhochelys ragei n. gen., n. sp., from the early Paleocene of Pakistan, systematic and palaeobiogeographic implications
FIG. 4. — Sindhochelys ragei n. gen., n. sp., holotype CPAG-RANKT-V-3, from the Paleocene of Ranikot, locality K18-12, Southern Pakistan: A, B, shell drawings, in dorsal (A) and ventral (B) views. Scale bars: 10 cm.
FIG. 1 in First report of a bothremydid turtle, Sindhochelys ragei n. gen., n. sp., from the early Paleocene of Pakistan, systematic and palaeobiogeographic implications
FIG. 1. — Location and stratigraphic position of fossil material: A, location of the Laki Range in eastern Sindh Province, southern Pakistan, and simplified geological map of the Ranikot Fort area (adapted from Schelling 1999); B, stratigraphic position of the fossil assemblage within the Waddi Sawri section. Note that the base of this section is close to the base of the Khadro Formation; in this area the thickness of the Khadro Formation is c. 80 m, and the fossil locality K18-12 is in the lower Khadro Formation.
FIG. 3. — Sindhochelys ragei n. gen., n in First report of a bothremydid turtle, Sindhochelys ragei n. gen., n. sp., from the early Paleocene of Pakistan, systematic and palaeobiogeographic implications
FIG. 3. — Sindhochelys ragei n. gen., n. sp., holotype CPAG-RANKT-V-3, from the Paleocene of Ranikot, locality K18-12, Southern Pakistan: A, B, shell photographs in dorsal (A) and ventral (B) views. Scale bar: 10 cm.
FIG. 2 in First report of a bothremydid turtle, Sindhochelys ragei n. gen., n. sp., from the early Paleocene of Pakistan, systematic and palaeobiogeographic implications
FIG. 2. — Turtle shell, CPAG-RANKT-V-3, holotype of Sindhochelys ragei n. gen., n. sp., in situ, during and after excavation at the locality K18-12: A, carapace in posterior view; A1, close-up of a lateral border showing the presence of a venerid bivalve in life position inside the carapace; B, carapace in dorsal view after excavation and split into three blocks. Scale bar: 30 cm.
Figure 2 in PSEUDORTHOCLADIUS IMMEZENSIS SP. N., A NEW RELICT SPECIES INHABITING THE MACUN HIGH-ALPINE STREAM, SWISS ALPS (DIPTERA: CHIRONOMIDAE)
Figure 2. Male imago of Pseudorthocladius spp. P. immezensis sp. n.: A-B) hypopygium in dorsal and ventral view; C) superior and inferior volsella; D) virga; E) tergite IX and anal point, lateral; F) gonocoxite, lateral; G) gonostylus at right angle; H) gonostylus, lateral. P. curtistylus: I) tergite IX and anal point, lateral. The arrows indicate some distinguishing characters.
Figure 3 in PSEUDORTHOCLADIUS IMMEZENSIS SP. N., A NEW RELICT SPECIES INHABITING THE MACUN HIGH-ALPINE STREAM, SWISS ALPS (DIPTERA: CHIRONOMIDAE)
Figure 3. Malaise trap set up close to the inlet of the Immez Lake (Macun cirque, Eastern Alps, Swiss National Park; photo J.L. Lods). The arrow indicates the larval habitat of P. immezensis sp. n.
Figure 1 in PSEUDORTHOCLADIUS IMMEZENSIS SP. N., A NEW RELICT SPECIES INHABITING THE MACUN HIGH-ALPINE STREAM, SWISS ALPS (DIPTERA: CHIRONOMIDAE)
Figure 1. Male imago of Pseudorthocladius spp. A) Head (left side, dorsal), frontal area, vertex and temporal setae of: A) P. immezensis sp. n.; B) P. curtistylus; C) P. sp. 1. D) P. immezensis sp. n., palpomeres 2-3. E-F) P. curtistylus: palpomere 3 and sensilla coeloconica. P. immezensis sp. n.: G) clypeus; H) lobes of antepronotum; I) humeral area; J) scutellum. P. curtistylus: K) humeral pit; L) scutellum. P. immezensis sp. n.: M) wing. The arrows indicate some distinguishing characters.
Figure 58 in Scorpions of Iran (Arachnida, Scorpiones). Part X. Alborz, Markazi and Tehran Provinces with a description of Orthochirus carinatus sp. n. (Buthidae)
Figure 58: Distribution of Scorpio kruglovi, yellow icons. Outline in map delineates three provinces in northern Iran: Alborz (upper left), Markazi (lower left) and Tehran (upper right).
Figures 56–57 in Scorpions of Iran (Arachnida, Scorpiones). Part X. Alborz, Markazi and Tehran Provinces with a description of Orthochirus carinatus sp. n. (Buthidae)
Figures 56–57: Distribution of Orthochirus carinatus sp. n. (top) and Odontobuthus doriae (bottom), yellow icons. Outlines in each map delineate three provinces in northern Iran: Alborz (upper left), Markazi (lower left) and Tehran (upper right).
Figures 54–55 in Scorpions of Iran (Arachnida, Scorpiones). Part X. Alborz, Markazi and Tehran Provinces with a description of Orthochirus carinatus sp. n. (Buthidae)
Figures 54–55: Distribution of Iranobuthus krali (top) and Mesobuthus eupeus eupeus (bottom), yellow icons. Outlines in each map delineate three provinces in northern Iran: Alborz (upper left), Markazi (lower left) and Tehran (upper right).
Figures 3–4 in Scorpions of Iran (Arachnida, Scorpiones). Part X. Alborz, Markazi and Tehran Provinces with a description of Orthochirus carinatus sp. n. (Buthidae)
Figures 3–4: Orthochirus carinatus sp. n., female paratype from locality No. Al-101, dorsal (3) and ventral (4) views. Scale bar: 10 mm.
Figures 52–53 in Scorpions of Iran (Arachnida, Scorpiones). Part X. Alborz, Markazi and Tehran Provinces with a description of Orthochirus carinatus sp. n. (Buthidae)
Figures 52–53: Distribution of Compsobuthus matthiesseni (top) and Hottentotta saulcyi (bottom), yellow icons. Outlines in each map delineate three provinces in northern Iran: Alborz (upper left), Markazi (lower left) and Tehran (upper right).
Figures 50–51 in Scorpions of Iran (Arachnida, Scorpiones). Part X. Alborz, Markazi and Tehran Provinces with a description of Orthochirus carinatus sp. n. (Buthidae)
Figures 50–51: Distribution of Androctonus crassicauda (top) and Compsobuthus kaftani (bottom), yellow icons. Outlines in each map delineate three provinces in northern Iran: Alborz (upper left), Markazi (lower left) and Tehran (upper right).
Figures 23–44 in Scorpions of Iran (Arachnida, Scorpiones). Part X. Alborz, Markazi and Tehran Provinces with a description of Orthochirus carinatus sp. n. (Buthidae)
Figures 23–44: Orthochirus carinatus sp. n., pedipalp segments. Figures 23–33. Male holotype, pedipalp chela, dorsal (23), external (24), and ventral (25) views, pedipalp patella, dorsal (26), external (27) and ventral (28) views, pedipalp femur and trochanter ventral (29), internal (30) and dorsal (31) views, pedipalp movable (32) and fixed (33) finger dentate margins. Figures 34–44. Female paratype from locality No. Al-101, pedipalp chela, dorsal (34), external (35), and ventral (36) views, pedipalp patella, dorsal (37), external (38) and ventral (39) views, pedipalp femur and trochanter ventral (40), internal (41) and dorsal (42) views, pedipalp movable (43) and fixed (44) finger dentate margins. The trichobothrial pattern is indicated in Figures 24–27 and 30–31 (white circles).
Figures 14–22 in Scorpions of Iran (Arachnida, Scorpiones). Part X. Alborz, Markazi and Tehran Provinces with a description of Orthochirus carinatus sp. n. (Buthidae)
Figures 14–22: Figures 14–16. Metasoma V ventral view of Orthochirus carinatus sp. n., female paratype from locality No. Al-115 (14), O. zagrosensis, male holotype (15) and O. fuscipes, male from Pakistan, Karachi (16), UV fluorescence. Figures 17–19. Orthochirus carinatus sp. n., female paratype from locality No. Al-101, metasoma and telson lateral (17), ventral (18), and dorsal (19) views. Figures 20–22. Orthochirus carinatus sp. n., male holotype, metasoma and telson lateral (20), ventral (21), and dorsal (22) views. Scale bars: 10 mm (17–19, 20–22).
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.