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21,132 results for “new species records”
Fig. 9 in Three New And Four Newly Recorded Species Of Linyphiinae And Micronetinae Spiders (Araneae: Linyphiidae) From Northern Vietnam
Fig. 9. Prosoponoides sinensis (Chen, 1991): A, left chelicera, frontal view; B, left male palp, retrolateral view; C, ditto, ventral view; D, ditto, prolateral view; E, embolic division, ventral view; F, epigynum, ventral view; G, vulva, dorsal view; H, ditto, ventral view. Scale bars = 0.1 mm.
Figure 6 in First record of the genus Acridurus Perez, Dominici, Hierro and Otte, 1995 from Cuba, with description of a new species (Orthoptera: Acrididae: Ommatolampidinae)
Figure 6. Hispaniolan specimens of the genus examined for comparison, male (left) and female (right), full-body dorsal views: a) Acridurus neibanus, paratypes; b) Acridurus robustus, paratypes; c) Acridurus yayitas, not types (see wrong paratype labels and origin distinct from type-locality). Plate composed from original photos courtesy Solanlly Carrero.
Figures 4-5. 4 a in First record of the genus Acridurus Perez, Dominici, Hierro and Otte, 1995 from Cuba, with description of a new species (Orthoptera: Acrididae: Ommatolampidinae)
Figures 4-5. 4 a) The Greater Antilles, showing current geographical distribution of the genus Acridurus. b) Easternmost Cuba, showing precise locality records of Acridurus baracoae n. sp.: type locality Ojito de Agua (1), Piedra La Vela (2), Cayo Fortuna (3). 5 Two views of the habitat of Acridurus baracoae n. sp.: a) sclerophyll scrub at Piedra La Vela; b) rainforest at Cayo Fortuna. Photos courtesy Rolando Teruel.
Figure 3. Acridurus baracoae n in First record of the genus Acridurus Perez, Dominici, Hierro and Otte, 1995 from Cuba, with description of a new species (Orthoptera: Acrididae: Ommatolampidinae)
Figure 3. Acridurus baracoae n. sp. Adult female holotype, close-up views: a) mesothorax, tegminae, metathorax and abdominal tergite I, dorsal; b) mesothorax, tegminae, metathorax and abdominal tergite I, lateral; c) apex of abdomen, dorsal; d) apex of abdomen, lateral; e) apex of abdomen, ventral.
Figure 1. Acridurus baracoae n in First record of the genus Acridurus Perez, Dominici, Hierro and Otte, 1995 from Cuba, with description of a new species (Orthoptera: Acrididae: Ommatolampidinae)
Figure 1. Acridurus baracoae n. sp. Adult female holotype, full-body views: a) dorsal; b) lateral; c) ventral. Scale bar in centimeters, with millimeter subdivisions.
Figure 2. Acridurus baracoae n in First record of the genus Acridurus Perez, Dominici, Hierro and Otte, 1995 from Cuba, with description of a new species (Orthoptera: Acrididae: Ommatolampidinae)
Figure 2. Acridurus baracoae n. sp. Adult female holotype, close-up views: a) head, dorsal; b) head, lateral; c) head, ventral; d) pronotum, dorsal; e) pronotum, lateral.
Fig. 3 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records
Fig. 3. Spatial distribution of Lithobates catesbeianus invasive populations and predation reports of native anurans in Brazil. White circles: American Bullfrog populations in Brazil (Both et al. 2011; Instituto Horus 2016); yellow stars: predation reports of adult Boana raniceps and adult Phyllomedusa distincta in southern and southeastern Brazil; light green circles: locations of 41 published predation records.
Fig. 2 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records
Fig. 2. (A) Predation of an adult Phyllomedusa distincta by Lithobates catesbeianus, (B) Adult P. distincta partially digested, removed from the oral cavity of L. catesbeianus.
Fig. 1 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records
Fig. 1. Adult Lithobates catesbeianus swallowing an adult Boana raniceps in an artificial permanent pond within pasture area in southern Brazil.
Fig. 22 in First record of the tarantula genus Bumba (Araneae: Theraphosidae) from Bolivia, with the description of a new species
Fig. 22. Distribution map of the known species of Bumba. The green Question mark indicates the unknown precise locality of B. mineiros in Paraguay.
Figs 1-6 in First record of the tarantula genus Bumba (Araneae: Theraphosidae) from Bolivia, with the description of a new species
Figs 1-6. Bumba paunaka sp. nov., holotype male: 1, carapace, dorsal view; 2, abdomen, dorsal view; 3, labium, sternum and maxillae; 4, abdomen, lateral view; 5, eyes, dorsal view; 6, tibial apophysis, proventral view; PB, prolateral branch; RB, retrolateral branch. Green arrows indicate the subapical spines on the retrolateral branch of tibial apophysis. Scale bars =1mm.
Figs 16-21 in First record of the tarantula genus Bumba (Araneae: Theraphosidae) from Bolivia, with the description of a new species
Figs 16-21. Bumba paunaka sp. nov., paratype female: 16, carapace, dorsal view; 17, eyes, dorsal view; 18, labium and maxillae. Abdomen: 19, dorsal view; 20, lateral view; 21, spermathecae, dorsal view. Green arrow indicates an oval small scar and a lateral abnormal expansion of the abdomen. Scale bars = 1 mm.
Figs 7-15 in First record of the tarantula genus Bumba (Araneae: Theraphosidae) from Bolivia, with the description of a new species
Figs 7-15. Bumba paunaka sp. nov., holotype male, bulb: 7, retrolateral view; 8, ventral view; 9, dorsal view; 10, prolateral view; 11, detail of palpal bulb embolus at prolateral view; 12, detail of palpal bulb embolus at dorsal view. Palpal tibia and cymbium: 13, ventral view (green arrow indicates the retrolateral process); 14, prolateral view; 15, retrolateral view (Cy, cymbium; PI, prolateral inferior keel; PS, prolateral superior keel; Rp, retrolateral process; Ti, tibia). Scale bars = 1 mm.
Fig. 50 in New records and a new species of Scaphopoda (Mollusca) from the southwestern Atlantic Ocean
Fig. 50. Confirmed records of the species studied at the Atlantic Ocean: Bathoxiphus ensiculus (yellow symbols), Cadulus platensis (black symbols) and Cadulus victori sp. nov. (red symbols). Stars represents the new records of the present study.
Figs 42–49. Cadulus species. 42–44 in New records and a new species of Scaphopoda (Mollusca) from the southwestern Atlantic Ocean
Figs 42–49. Cadulus species. 42–44, Cadulus exiguus Watson, 1879: syntypes, NHMUK 1887.2.9.94, both glued to a cardboard. 45–48, Cadulus gibbus Jeffreys, 1883: 45, 46, syntype (USNM 172858); 47, 48, syntype (NHMUK 1885.11.5.1287); 49, Cadulus obesus Watson, 1879: syntypes (NHMUK 1887.2.9.84–87, 4 shells), all inside a gelatin capsule.
Figs 28–35. Cadulus tumidosus Jeffreys, 1877 in New records and a new species of Scaphopoda (Mollusca) from the southwestern Atlantic Ocean
Figs 28–35. Cadulus tumidosus Jeffreys, 1877: syntypes (USNM 169502): 28, 29, same shell; 30, 31, same shell; 32, 33, same shell; 34, 35, same shell. 28, 30, 32, 34, entire shell, lateral view. 29, 31, 33, 35, entire shell, anterior view. Scale bar: 2 mm (all images at same scale).
Figs 13–18 in New records and a new species of Scaphopoda (Mollusca) from the southwestern Atlantic Ocean
Figs 13–18. Bathoxiphus ensiculus (Jeffreys, 1877). 13–17, MNRJ 60821, same shell; 18, MNRJ 60823. 13, 18, entire shell, lateral view; 14, entire shell, anterior view. 15, detail of the apex; 16, detail of ventral aperture; 17, detail of dorsal aperture. Scale bars: 13, 14, 18= 5 mm; 15, 16= 0.5 mm; 17= 0.2 mm.
Figs 1–12 in New records and a new species of Scaphopoda (Mollusca) from the southwestern Atlantic Ocean
Figs 1–12. Bathoxiphus ensiculus (Jeffreys, 1877). 1–6, syntypes (NHMUK 1877.11.28.56): 1, 2: same shell; 3, 4: same shell; 5, 6: same shell; 7–12, syntypes (NHMUK 1885.11.5.1344–46): 7, 8: same shell; 9, 10: same shell; 11, 12: same shell. 1, 3, 5, 7, 9, 11, entire shell, lateral view; 2, 4, 6, 8, 10, 12, detail of ventral aperture. Scale bars: 1, 3, 5, 7, 9, 11= 5 mm; 2, 4, 8, 10, 12= 1 mm; 6= 0.5 mm. Credits: K. Webb (NHMUK photographic unit).
Figs 36–41 in New records and a new species of Scaphopoda (Mollusca) from the southwestern Atlantic Ocean
Figs 36–41. Cadulus victori sp. nov. 36, 37, holotype (CZUFS SCA-00005); 38–41, paratype (MNRJ 34466). 36, 38, 40, entire shell, lateral view; 37, 39, entire shell, anterior view; 41, detail of dorsal aperture; the arrow indicates the anterior region of the shell. Scale bars: 36–40= 1mm; 41= 0.1 mm.
Figs 19–27. Cadulus platensis Henderson, 1920. 19–22 in New records and a new species of Scaphopoda (Mollusca) from the southwestern Atlantic Ocean
Figs 19–27. Cadulus platensis Henderson, 1920. 19–22, holotype (USNM 887476); 23–26, MNRJ 27204: 23, 24, same shell; 25, 26, same shell; 27, MZSP 119362.19, 23, 25, 27, entire shell, lateral view; 20, 24, 26, entire shell, anterior view; 21, detail of dorsal aperture; 24, detail of ventral aperture. Scale bars: 19, 20,23–27= 1 mm; 21, 22= 0.4 mm.
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.