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.
1,148
datasets available to search
ShareScore release 0.9.0
Dataset results
1,148 results for “Baltic amber”
Figure 2. X in A new Eocene Bacanius species (Histeridae: Dendrophilinae) from Baltic amber
Figure 2. X-ray micro-CT renderings of Bacanius gorskii sp. nov., holotype, 8619 (CAG), habitus: (a) dorsal view; (b) ventral view; (c) right lateral view. Scale bar = 0.25 mm. Abbreviations: h – head; m – mandibula; msv – mesoventrite; mtv – metaventrite; pk – prosternal keel; pl – prosternal lobe; py – pygidium; s – meso-metaventral suture; shs – subhumeral stria; v1 – abdominal ventrite 1.
Figure 5 in Two new species of the family Rhynchitidae (Coleoptera: Curculionoidea) from Eocene Baltic amber, with key to species and assumed trophic relationships
Figure 5. Distribution of the genus Pseudomesauletes with extant (green area) and fossil records: records from Florissant formation, Colorado, USA (black square); record from Rovno amber (black octagon); and P. lobanovi sp. nov. from Baltic amber (black dot).
Figure 5 in A new enigmatic lineage of Dascillidae (Coleoptera: Elateriformia) from Eocene Baltic amber described using X-ray microtomography, with notes on Karumiinae morphology and classification
Figure 5. Pleolobus fuscescens Philippi et Philippi, 1864, female from Chile: (a) habitus, dorsal view; (b) head, lateral view; (c) head, pronotum and scutellar shield, dorsal view. Scale bars = 4.0 mm (a), 1.0 mm (b, c). All images by Jorge Jensen.
Figure 2. X in Two new species of the family Rhynchitidae (Coleoptera: Curculionoidea) from Eocene Baltic amber, with key to species and assumed trophic relationships
Figure 2. X-ray micro-CT renderings of Baltocar sontagae sp. nov., holotype, 6703 (MAIG), habitus: (a) dorsal view; (b) dorso-frontal view; (c) left lateral view. Scale bar = 0.5 mm.
Figure 1 in Two new species of the family Rhynchitidae (Coleoptera: Curculionoidea) from Eocene Baltic amber, with key to species and assumed trophic relationships
Figure 1. Photomicrographs of Baltocar sontagae sp. nov., holotype, 6703 (MAIG): (a) habitus, left lateral view; (b) details of forebody, lateral view. Scale bars = 0.25 mm. Abbreviations: a1–a11 denote antennomeres 1–11.
Figure 73 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figure 73. Dorsal view of holotype female of Ctenoplectrella eocenica (Michez & Nel), new combination, in Eocene Oise amber (PA 3190 1/17). Photograph courtesy of Muséum National d'Histoire Naturelle (accepit a A. Nel and O. Béthoux).
Figures 74–75 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 74–75. Oblique facial view of holotype female of Ctenoplectrella eocenica (Michez & Nel), new combination (PA 3190 1/17). 74. Head in right oblique profile. 75. Magnified view of 74, with arrow noting juncture of subantennal sulcus at outer margin of antennal torulus. Photographs courtesy V. Ngô-Muller.
Figures 71–72 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 71–72. Holotype female of Ctenoplectrella eocenica (Michez & Nel), new combination, in Eocene Oise amber (PA 3190 1/17). 71. Lateral view. 72. Ventral view. Photographs courtesy of Muséum National d'Histoire Naturelle (accepit a A. Nel and O. Béthoux).
Figures 63–70 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 63–70. PPC-SRµCT scan of mandibles of worker of Amelikertotes clypeata (Engel), new combination; lower left worker from figure 29. Right mandible rotated axially in left column, left mandible rotated axially in right column. 63. Outer (slightly ventral oblique) view of right mandible. 64. Outer (slightly ventral oblique) view of left mandible. 65. Dorsal view of right mandible. 66. Dorsal view of left mandible. 67. Inner view of right mandible. 68. Inner view of left mandible. 69. Ventral view of right mandible. 70. Ventral view of left mandible.
Figure 29 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figure 29. Two workers of Amelikertotes clypeata (Engel), new combination, in Eocene Baltic amber (SEMC B-147).
Figure 22. X in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figure 22. X-ray µCT scan of holotype worker of Haidomelikertes uraeus, new genus and species (SMF Be 14263a), oblique frontolateral view. Note that scan resolution was insufficient to resolve most setae.
Figure 21 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figure 21. Holotype worker of Haidomelikertes uraeus, new genus and species, in Eocene (Bartonian) Baltic amber (SMF Be 14263a).
Figures 46–50 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 46–50. PPC-SRµCT scan of hind leg structures of worker of Amelikertotes clypeata (Engel), new combination; upper right worker from figure 29. 46. Right hind leg, outer (prolateral) view. 47. Right hind leg, inner (retrolateral) view. 48. Left metatibia, view along posterior edge. 49. Left hind leg, inner (retrolateral) view. 50. Left hind leg, outer (prolateral) view, note debris packed into surface of corbicula. Note that scan resolution was insufficient to resolve most fine setae.
Figures 17–18. X in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 17–18. X-ray µCT scans of hindleg of Aethemelikertes emunctorii, new genus and species (SMF Be 14262a). 17. Outer (prolateral) view. 18. Inner (retrolateral) view. Note that scan resolution was insufficient to resolve most fine setae and setal details.
Figures 13–16. X in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 13–16. X-ray µCT scans of heads of holotype workers of Succinapis micheneri Engel (AMNH B-JH103) and Aethemelikertes emunctorii, new genus and species (SMF (Be 14262a), in Baltic amber; yellow highlights disc and modification of clypeus, orange highlights labrum. 13. Facial view of S. micheneri. 14. Facial view of A. emunctorii. 15. Oblique profile of S. micheneri. 16. Oblique profile of A. emunctorii. Note that scan resolution was insufficient to resolve most setae.
Figures 51–56 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 51–56. PPC-SRµCT scan of worker of Amelikertotes clypeata (Engel), new combination; lower left worker from figure 29. 51. Left lateral view. 52. Dorsal view. 53. Outer (prolateral) view of hind leg. 54. Inner (retrolateral) view of hind leg. 55. Ventral view. 56. Right lateral view. Scale bar at right for 53 and 54, scale bar in center for 51, 52, 55, and 56. Note that scan resolution was insufficient to resolve most setae of the body and legs (e.g., posterior fringe of fine setae on metatibia is not resolved).
Figures 19–20 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 19–20. Inner (retrolateral) surfaces of metatibiae of Haidomelikertes, new genus, and Aethemelikertes, new genus. 19. Haidomelikertes uraeus, new species, holotype worker (SMF Be 14263a). 20. Aethemelikertes emunctorii, new species, holotype worker (SMF Be 14262a).
Figure 11. X in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figure 11. X-ray µCT scan of holotype worker of Aethemelikertes emunctorii, new genus and species (SMF Be 14262a), lateral view. Note that scan resolution was insufficient to resolve most setae.
Figures 6–8 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 6–8. Worker of Succinapis micheneri Engel (SEMC B-017). 6. Oblique facial view. 7. Outer (prolateral) view of metatibia and metabasitarsus. 8. Detail of fringe setae of metatibial posterior/upper margin; white arrow indicates a deceptive internal microfracture of resin trail with branched fractal patern (such fracture planes and trails are a common taphonomic structure among or even running alongside many fine setae in amber inclusions, and can give such setae an artificially plumose appearance; accordingly, care must be taken before concluding whether or not amber-included setae are branched); black arrow highlights one of many truly plumose setae, separate from the internal microfracture planes.
Figures 3–5 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 3–5. Worker of Succinapis micheneri Engel (SEMC B-018). 3. Facial view. 4. Dorsal view of head and mesoscutum. 5. Right 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.