Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
13,397
datasets available to search
ShareScore release 0.9.0
Dataset results
13,397 results for “sp. nov.”
FIGURE 1. A–D in A new species, Hemicrepidius (Miwacrepidius) rubriventris sp. nov. (Coleoptera, Elateridae, Denticollinae) from Republic of Korea
FIGURE 1. A–D: Holotype of Hemicrepidius (Miwacrepidius) rubriventris sp. nov. from Korea. E–H: H. (M.) subcyaneus (Motschulsky, 1866) from Honshu, Japan. A, E, G: Dorsal views; B, G: Lateral views; C, H: Ventral views; D: Antenna. A–D, F–H: female; E: male.
FIGURES 16–19 in Discovery of the genus Paraleuctra (Plecoptera: Leuctridae) from Palearctic China, with description of P. qilianshana sp. nov.
FIGURES 16–19. Paraleuctra qilianshana sp. nov. (male). 16. Cercus, lateral view. 17. Cercal projection, lateral view. 18. Subanal probe apex, lateral view. 19. Vesicle, ventral view.
FIGURES 10–15 in Discovery of the genus Paraleuctra (Plecoptera: Leuctridae) from Palearctic China, with description of P. qilianshana sp. nov.
FIGURES 10–15. Paraleuctra qilianshana sp. nov. (male). 10. Cerci and subanal probe, caudal view. 11. Subanal probe apex, dorsal view. 12. Detail of subapical part of subanal probe, dorsal view. 13. Terminalia, ventral view. 14. Base of subanal probe, ventral view. 15. Terminalia, lateral view.
FIGURES 1–5 in Discovery of the genus Paraleuctra (Plecoptera: Leuctridae) from Palearctic China, with description of P. qilianshana sp. nov.
FIGURES 1–5. Paraleuctra qilianshana sp. nov. 1. Male habitus, lateral view. 2. Male terminalia, dorsal view. 3. Male terminalia, lateral view. 4. Male terminalia, ventral view. 5. Female terminalia, ventral view.
FIGURES 6–9 in Discovery of the genus Paraleuctra (Plecoptera: Leuctridae) from Palearctic China, with description of P. qilianshana sp. nov.
FIGURES 6–9. Paraleuctra qilianshana sp. nov. (male). 6. Terminalia, dorsal view. 7. Terminalia, lateral view. 8. Subanal probe, ventral view. 9. Subgenital plate, ventral view.
FIGURE 8 in Copelatus cessaima sp. nov. (Coleoptera: Dytiscidae: Copelatinae): first record of a troglomorphic diving beetle from Brazil
FIGURE 8. Copelatus cessaima, sp. nov.: female genitalia in ventral view, terminology and abbreviations following Miller (2001): alc—anterior lobe of gonocoxosternite (only left gonocoxosternite represented), bc—bursa copulatrix, co—common oviduct, fc—fertilization duct, gc—gonocoxa, gs—gonocoxosternite, lt—laterotergite, ra—ramus, sd—spermathecal duct, sp—spermatheca, va—vagina.
FIGURES 5–7 in Copelatus cessaima sp. nov. (Coleoptera: Dytiscidae: Copelatinae): first record of a troglomorphic diving beetle from Brazil
FIGURES 5–7. Copelatus cessaima, sp. nov.: (5) median lobe of aedeagus in ventral view; (6) in lateral view; (7) paramere in lateral view.
FIGURES 3–4 in Copelatus cessaima sp. nov. (Coleoptera: Dytiscidae: Copelatinae): first record of a troglomorphic diving beetle from Brazil
FIGURES 3–4. Copelatus cessaima, sp. nov. photos of habitus: (3) in dorsal view; (4) in ventral view.
FIGURE 4 in A giant foraminifer that converges to the feeding strategy of carnivorous sponges: Spiculosiphon oceana sp. nov. (Foraminifera, Astrorhizida)
FIGURE 4. Results of EDS microanalysis at (A) the external side of the spicule wall of a stalk of Spiculosiphon oceana, (B) the wall of the stalk at areas bearing debris, and (C) the calcareous test of an unidentified, non-agglutinated, calcareous foraminifer attached to the stalk of S. oceana (see also figs. 1D; 3C).
FIGURE 6 in A giant foraminifer that converges to the feeding strategy of carnivorous sponges: Spiculosiphon oceana sp. nov. (Foraminifera, Astrorhizida)
FIGURE 6. (A) View of the carnivorous sponge Asbestopluma hypogea soon after trapping a small copepod. The sponge is displaying the spiny-headed morphology, which is typical after a period of starvation in order to maximize the chances of new prey capture (Vacelet & Duport 2004). (B) View of the capitate region of the holotype and the paratype of Spiculosiphon oceana sp. nov. for a comparison with the body shape of the carnivorous sponge.
FIGURE 5 in A giant foraminifer that converges to the feeding strategy of carnivorous sponges: Spiculosiphon oceana sp. nov. (Foraminifera, Astrorhizida)
FIGURE 5. Views of Spiculosiphon sp. specimens collected from 3PP cave some 18 years ago. (A) View of whole preserved specimen, with spicule tracts projecting from the spheroid being broken and artificially coalescing. (B) Schematic drawing of a live specimen. (C) Detail of the spheroid portion of the test showing damaged and coalescing, radiating spicule tracts (D–E). Details of the test of the stalk with densely packed spicules and some attached sand grains.
FIGURE 3 in A giant foraminifer that converges to the feeding strategy of carnivorous sponges: Spiculosiphon oceana sp. nov. (Foraminifera, Astrorhizida)
FIGURE 3. SEM micrograph of stalks. (A) Tightly packed needle-like spicule fragments, with no obvious cement between them. Some debris (d) has flocculated on the spicules. Note that the silica of some of the oldest spicules started dissolving, as indicated by the occurrence of tiny cavities and pits (p) at their surface. Dissolution cavities are to be distinguished from accidental breakages (b) caused to the stalk during collection or laboratory manipulation. (B) View of the distal end of the stalk, showing that it is a closed, bulb-like structure. (C) Detail of a calcareous foraminifer (f) externally attached to the wall of one of the collected stalks (see fig. 1D). Note that a triaene (t) has been incorporated into the test and that some debris (d) has flocculated on the stalk.
FIGURE 2 in A giant foraminifer that converges to the feeding strategy of carnivorous sponges: Spiculosiphon oceana sp. nov. (Foraminifera, Astrorhizida)
FIGURE 2. (A–C) Compound microscope micrographs showing the irregular arrangement of the spicules at the surface of the central globelike region of the test. Note the presence of needle-like spicule fragments along with three-rayed and four-rayed spicules (triaenes= t). (D–G) Views of the radiating tracts built by overlapping 2 to 3 spicules, which are held together by a translucent cement (c).
FIGURE 1 in A giant foraminifer that converges to the feeding strategy of carnivorous sponges: Spiculosiphon oceana sp. nov. (Foraminifera, Astrorhizida)
FIGURE 1. (A) General view of the holotype and the paratype (from left to right, respectively) of Spiculosiphon oceana sp. nov. (B) Detail of capitate region of the holotype, showing the globelike, central structure and the radiating tracts of spicules. (C) Globelike region of the holotype, showing the irregular, loose arrangement of spicules. (D–F) Views of stalks. One of the collected stalks (D) had a calcareous foraminifer (f) attached and also some flocculated debris (d). The stalk in E shows the tightly packed spicules to be slightly twisting with respect to the stalk axis. The stalk in F shows a region in which the translucent spicule wall gets a brownish to purplish coloration. (G) Detail of the proximal end of a stalk, showing that it is a closed structure, slightly expanded into a bulb-like form.
FIGURES 1–4. 1–3 in A new species-group of Chrysura Dahlbom, 1845 (Hymenoptera: Chrysididae), with description of Ch. baiocchii sp. nov. from Iran
FIGURES 1–4. 1–3. Chrysura baiocchii sp. nov. 1. Holotype, habitus in dorsal view; 2. Metasoma in dorso-lateral view; 3. Head in frontal view; 4. Ch. foetiana (Semenov): head in frontal view.
FIGURES 11–14 in A new species-group of Chrysura Dahlbom, 1845 (Hymenoptera: Chrysididae), with description of Ch. baiocchii sp. nov. from Iran
FIGURES 11–14. Chrysura foveata (Radoszkowski), syntype. 11. Habitus in lateral view, 12. Head in frontal view, 13. Mesosoma in dorsal view, 14. Metasoma in dorsal view.
FIGURES 7–10. 7 in A new species-group of Chrysura Dahlbom, 1845 (Hymenoptera: Chrysididae), with description of Ch. baiocchii sp. nov. from Iran
FIGURES 7–10. 7. Chrysura baiocchii sp. nov., T-V; 8. Ch. genalis (Mocsáry), genital capsula; 9. Ch. foetiana (Semenov), genital capsula; 10. Ch. radians (Harris), genital capsula.
FIGURE 3 in New sea anemone (Anthozoa: Actiniaria) from Patagonia: Andvakia manoloi sp. nov.
FIGURE 3. Internal anatomy of Andvakia manoloi sp. nov. a) Longitudinal section through distal column, showing marginal sphincter. b) Cross section through mid column, showing a tenaculum and cuticle. c) Cross section through proximal column. Arrow points to fourth cycle mesentery. d) Detail of parietal muscle. e) Cross section of the column at the actinopharynx; the holotype display the same arrange shown in the image. Abbreviations: A, actinopharynx; C, cuticle, D, directive mesenteries; G, gastrodermis; Me, mesogloea; S, sphincter; T, tenaculum.
FIGURES 1–9 in Acerentulus shrubovychae sp. nov. from Italy (Protura: Acerentomidae)
FIGURES 1–9. Acerentulus shrubovychae sp. nov. 1A) Head, dorsal view. 1B) Head, lateral view. 2) Pseudoculus. 3) Canal of maxillary gland. 4) Maxillary palpus. 5) Labial palpus. 6A) Foretarsus, exterior view. 6B) Foretarsus, exterior view. 7) Foretarsus, interior view. 8) Mesonotum. 9) Mesosternum. Arrows indicate pores. Figs. 1A, 2, 6A, 8, 9: holotype; Figs. 1B, 3–5, 6B, 7: paratypes.
FIGURE 4. Cross section showing the junction between proximal end and a mesentery. Images a and b in New sea anemone (Anthozoa: Actiniaria) from Patagonia: Andvakia manoloi sp. nov.
FIGURE 4. Cross section showing the junction between proximal end and a mesentery. Images a and b, and c and d correspond to the same specimens respectively. M, mesentery.
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.