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1,346 results for “rare species”
Figure 16 in Two species representing a rare genus Sinaxonopsis (Acari, Hydrachnidiae, Aturidae) from China, with discussion of some taxonomic features
Figure 16 Sinaxonopsis hainanensis sp. nov., ♂ (HN-AT-202304230301): A – Dorsal view; B – Ventral view; C – Lateral view; D – Chelicerae; E – III-Leg-4–6; F – IV-Leg-4–6. Scale bars = 100 μm.
Figure 11 in Two species representing a rare genus Sinaxonopsis (Acari, Hydrachnidiae, Aturidae) from China, with discussion of some taxonomic features
Figure 11 Sinaxonopsis unicucrus Yi & Jin, 2012, ♀ (HN-AT-202106110512), SEM photographs: A – Outer side of Palp; B – Detail of outer side of Palp-5; C – Inner side of Palp; D – Detail of inner side of Palp-5.
Figure 12 in Two species representing a rare genus Sinaxonopsis (Acari, Hydrachnidiae, Aturidae) from China, with discussion of some taxonomic features
Figure 12 Sinaxonopsis unicucrus Yi & Jin, 2012, ♀ (HN-AT-202106110512), SEM photographs: A –Outer side of III-Leg-1–6; B – Inner side of III-Leg-1–6; C – Outer side of IV-Leg-1–6; D – Inner side of IV-Leg-1–6.
Fig. 15 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 15: Specimens of Katsuwonus pelamis, captured off Cape Kurtoğlu, Fethiye, southern Aegean Sea (horizontal bar: 100 mm). Photo credit: E. Öçal.
Fig. 13 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 13: Distolambrus maltzami (Miers, 1881), male, North Aegean Sea, units shown in mm. a) dorsal side of the carapace; b) ventral side of the carapace.
Fig. 8 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 8: Specimens of Sphyraena viridensis caught in Tarska Cove in Northern Adriatic on 25th January 2020. Photo credit: Antonio Baras.
Fig. 12 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 12: The Ranzania laevis specimen found stranded on the Kokkini Hani beach in Crete (TL = 63 cm).
Fig. 10 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 10: Bursa scrobilator scrobilator from South Rethymno, Crete (shell height ~5-7 cm). A) Crabbed shell. B) Living specimen. Photo credit: Stelios Mantadakis.
Fig. 5 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 5: A) Antipathella subpinnata on rocks encrusted by coralline algae; B) Antipathes dichotoma (left) and Parantipathes larix (right) on small rocks interspersed with sandy mud; C) Leiopathes glaberrima on a vertical rocky wall; D) Detail of the polyps of L. glaberrima. Scale bars: 10 cm.
Fig. 6 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 6: A) The specimen of Ocypode cursor observed at Palmi, southern Tyrrhenian Sea. A specimen (B) and holes (C) of O. cursor observed at Pizzo Greco, northern Ionian Sea.
Fig. 3 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 3: A) Individual photographed in 2013 in Cadaqués, representing the first record of Gobius couchi for Spain; B) Specimen PMR VP4929 collected in 2020.
Fig. 2 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 2: A and B) Individuals of Chalinula nigra growing onto rocky coralligenous substrates in el 'Tajo del Pirata', partially covered by an algal turf. Scale bars are approximate. C) Detail of the oxeas as seen on an optical microscope; scale 5 μm. D) Spongin fibers in a ladder-like reticulation, with primary and secondary fibers undistinguishable; scale 50 μm. E) Detail of the spongin fibers, where several oxea can be seen forming the tracts of the skeleton; scale 50 μm.
Fig. 4 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 4: Ciona edwardsi A) Specimen of C. edwardsi photographed in 2003 within the MPA of Tavolara (Sardinia, Italy) at depth of about 30 m, simple oral tentacles and yellow colouration and accumulation of pigments lying between each lobe are visible. B and C) Two specimens of C. edwardsi photographed in a cave within the MPA of Tavolara (both encircled in red) in November 2020. D) Magnification of a specimen of C. edwardsi showing the oral siphon with 7 lobes and the atrial one with 5 lobes. Photo credit: Egidio Trainito.
Fig. 1 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 1: Approximate locations of records of new species in the Mediterranean Sea presented in "New Mediterranean Biodiversity Records (March, 2021)". Location numbers correspond with those on Table 1. Stars represent multiple records for several species in the same area. The digital Terrain Model data products have been obtained and modified from the EMODnet Bathymetry portal http://www.emodnet-bathymetry.eu).
Fig. 6 in Notes on endemic Alpine chrysidids, with key to Alpine Philoctetes Abeille de Perrin, 1879, and remarks on two rarely collected species (Hymenoptera, Chrysididae)
Fig. 6 - Philoctetes delvarei Tussac & Tussac, male, holotype: A) habitus, dorsal view; B) habitus, lateral view; C) head, frontal view; D) T3, dorso-lateral view.
Fig. 4 in Notes on endemic Alpine chrysidids, with key to Alpine Philoctetes Abeille de Perrin, 1879, and remarks on two rarely collected species (Hymenoptera, Chrysididae)
Fig. 4 - Philoctetes putoni (du Buysson), female: A) habitus, dorsal view; B) habitus, lateral view; C) head, frontal view; D) T3, dorso-lateral view.
Fig. 7 - A,C,E in Notes on endemic Alpine chrysidids, with key to Alpine Philoctetes Abeille de Perrin, 1879, and remarks on two rarely collected species (Hymenoptera, Chrysididae)
Fig. 7 - A,C,E) Philoctetes helveticus (Linsenmaier), female: A) mesosoma, dorsal view; C) mesoscutum, propodeum and T1, lateral view; E) T1, dorsal view. B,D,F) Philoctetes putoni (du Buysson), female: B) mesosoma, dorsal view; D) mesoscutum, propodeum and T1, lateral view; F) T1, dorsal view.
Fig. 3 - A in Notes on endemic Alpine chrysidids, with key to Alpine Philoctetes Abeille de Perrin, 1879, and remarks on two rarely collected species (Hymenoptera, Chrysididae)
Fig. 3 - A) Philoctetes helveticus, female (Photo by M. Jacobs); B) Aosta Valley, Chamolé lake, 2350 m (Photo by C. Monte); C) O. Niehuis looking for P. putoni at Milefonts, 2030 m, Mercantour National Park (Photo by P. Rosa).
Fig. 2 in Notes on endemic Alpine chrysidids, with key to Alpine Philoctetes Abeille de Perrin, 1879, and remarks on two rarely collected species (Hymenoptera, Chrysididae)
Fig. 2 - Philoctetes helveticus (Linsenmaier), male: A) habitus, dorsal view; B) habitus, lateral view; C) scutellum and metascutellum, lateral view; D) T3, dorso-lateral view.
Fig. 1 in Notes on endemic Alpine chrysidids, with key to Alpine Philoctetes Abeille de Perrin, 1879, and remarks on two rarely collected species (Hymenoptera, Chrysididae)
Fig. 1 - Philoctetes helveticus (Linsenmaier), female: A) habitus, dorsal view; B) habitus, lateral view; C) head, frontal view; D) T3, dorso-lateral view.
ScienceDex guides
Understand access before you commit
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.