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.
29,350
datasets available to search
ShareScore release 0.8.0
Dataset results
29,350 results for “new records”
Fig. 5 in Molecular Phylogeny Revealing the Single Origin of -associated (Diptera: Cecidomyiidae) in Asia, with Descriptions of Three New and One Newly Recorded Species from Taiwan.
Fig. 5. Male genitalia of Taiwanese Cinnamomum–associated Bruggmanniella. (A) Bruggmanniella turoguei sp. nov., (B) B. shianguei sp. nov., and (C) B. sanlianensis sp. nov. Scale bar = 0.1 mm.
Fig. 6 in Molecular Phylogeny Revealing the Single Origin of -associated (Diptera: Cecidomyiidae) in Asia, with Descriptions of Three New and One Newly Recorded Species from Taiwan.
Fig. 6. Taiwanese Cinnamomum–associated Bruggmanniella. Bruggmanniella turoguei sp. nov. (A, D), B. shianguei sp. nov. (B, E), B. sanlianensis sp. nov. (C, F). Scale bars: pupal head (A–C) = 0.5 mm and for larval sternal spatula (D–F) = 0.1 mm. Larval lateral papillae shown in dotted blue circles.
Fig. 3 in Molecular Phylogeny Revealing the Single Origin of -associated (Diptera: Cecidomyiidae) in Asia, with Descriptions of Three New and One Newly Recorded Species from Taiwan.
Fig. 3. Bruggmanniella shianguei sp. nov. (A) Male head (ventral view) (B) Male antenna (8–12 segment). (C) Female antenna (8–12 segment). (D) Male 1st tarsomere. (E) Male 5th tarsomere. (F) Female 5th tarsomere. (G) Male wing. (H) Female wing. Scale bars: A–C = 0.03 mm; D–F = 0.1 mm; G–H = 1 mm.
Fig. 2 in Molecular Phylogeny Revealing the Single Origin of -associated (Diptera: Cecidomyiidae) in Asia, with Descriptions of Three New and One Newly Recorded Species from Taiwan.
Fig. 2. Bruggmanniella turoguei sp. nov. (A) Male head (ventral view) (B) Male antenna (7–12 segment). (C) Female antenna (7–12 segment). (D) Male 1st tarsomere. (E) Male 5th tarsomere. (F) Female 5th tarsomere. (G) Male wing. (H) Female wing. Scale bars: A–C = 0.03 mm; D–F = 0.1 mm; G–H = 1 mm.
Fig. 1 in Molecular Phylogeny Revealing the Single Origin of -associated (Diptera: Cecidomyiidae) in Asia, with Descriptions of Three New and One Newly Recorded Species from Taiwan.
Fig. 1. Plant galls induced by Taiwanese Bruggmanniella species on Cinnamomum species. (A) Stem galls on C. insularimontanum. (B) Stem galls on C. subavenium. (C) Stem galls on C. osmophloeum. (D) Leaf galls on C. osmophloeum.
Fig. 4 in Molecular Phylogeny Revealing the Single Origin of -associated (Diptera: Cecidomyiidae) in Asia, with Descriptions of Three New and One Newly Recorded Species from Taiwan.
Fig. 4. Bruggmanniella sanlianensis sp. nov. (A) Male head (ventral view) (B) Male antenna (8–12 segment). (C) Female antenna (8–12 segment). (D) Male 1st tarsomere. (E) Male 5th tarsomere. (F) Female 5th tarsomere. (G) Male wing. (H) Female wing. Scale bars: A–C = 0.03 mm; D–F = 0.1 mm; G–H = 1 mm.
Fig. 14 in New records and five new species of sipunculans (Sipuncula) from the central and northwestern Mexican Pacific - Corrigendum
Fig. 14. Phascolosoma (Phascolosoma) perlucens Baird, 1868 (ECOSUR S0044). A. Lateral overview, introvert contracted. B. Close-up of introvert base and anal area. C. Tentacles; asterisk indicates position of mouth. D. Mid-posterior hook; asterisk indicates bubble inside clear streak. E. Illustration of hook. F. Internal anatomy. Abbreviations: see Material and methods in Gómez-Vásquez 2024. Scale bars: A, F = 4 mm; B = 2 mm; C = 0.7 mm; D = 20 µm.
Fig. 13 in New records and five new species of sipunculans (Sipuncula) from the central and northwestern Mexican Pacific - Corrigendum
Fig. 13. Phascolosoma (Phascolosoma) azteca Gómez-Vásquez, 2024 (EMU-13443). A. Lateral overview, introvert contracted. B. Close-up of introvert base and anal area. C. Tentacles. D. Mid posterior hook; asterisk indicates bubble inside clear streak. E. Illustration of hook. F. Internal anatomy. Abbreviations: see Material and methods in Gómez-Vásquez 2024. Scale bars: A, F = 2 mm; B–C = 0.5 mm; D–E = 20 µm.
Fig. 3 in New spatial records of three Odonata species from the Western Ghats, India (Coenagrionidae, Aeshnidae)
Fig. 3. Photograph of Pseudagrion spencei Fraser, 1922 taken at Satara, Maharashtra, India Рис. 3. Pseudagrion spencei Fraser, 1922, Сатаре, Махараштра, ИнΑия
Fig. 2 in New spatial records of three Odonata species from the Western Ghats, India (Coenagrionidae, Aeshnidae)
Fig. 2. Map showing the locality records of A. keralensis (AK), P. spencei (PS) and G. khasiaca (GK) in the Western Ghats, India Рис. 2. Карта с указанием местонахожΑений A. keralensis (AK), P. spencei (PS) и G. khasiaca (GK) в ЗапаΑных Гатах, ИнΑия
Рис. 3. Steatoda albomaculata (De Geer, 1778) — самка, поймавшая хрущика Sericania fuscolineata Motschulsky, 1860 Fig. 3. Steatoda albomaculata (De Geer, 1778) — female caught Sericania fuscolineata Motschulsky, 1860 in New records of cobweb spiders Araneae: Theridiidae from Sakhalin Island
Рис. 3. Steatoda albomaculata (De Geer, 1778) — самка, поймавшая хрущика Sericania fuscolineata Motschulsky, 1860 Fig. 3. Steatoda albomaculata (De Geer, 1778) — female caught Sericania fuscolineata Motschulsky, 1860
Рис. 5. Steatoda grossa (C. L. Koch, 1838): a — внешний виΑ самки; b — интактная эпигина вентраΛьно; c — эпигина вентраΛьно (по Kim 2021) Fig. 5. Steatoda grossa (C. L. Koch, 1838): a — female, dorsal view; b — intact epigyne, ventral view; c — epigyne, ventral view (Kim 2021) in New records of cobweb spiders Araneae: Theridiidae from Sakhalin Island
Рис. 5. Steatoda grossa (C. L. Koch, 1838): a — внешний виΑ самки; b — интактная эпигина вентраΛьно; c — эпигина вентраΛьно (по Kim 2021) Fig. 5. Steatoda grossa (C. L. Koch, 1838): a — female, dorsal view; b — intact epigyne, ventral view; c — epigyne, ventral view (Kim 2021)
Рис. 4. Steatoda grossa (C. L. Koch, 1838): a — самец ΑорсаΛьно; b — Λевая паΛьпа самца вентраΛьно; c — Λевая паΛьпа самца (по Kim 2021) Fig. 4. Steatoda grossa (C. L. Koch, 1838): a — male, dorsal view; b — left male palp, ventral view; c — left male palp, ventral view (Kim 2021) in New records of cobweb spiders Araneae: Theridiidae from Sakhalin Island
Рис. 4. Steatoda grossa (C. L. Koch, 1838): a — самец ΑорсаΛьно; b — Λевая паΛьпа самца вентраΛьно; c — Λевая паΛьпа самца (по Kim 2021) Fig. 4. Steatoda grossa (C. L. Koch, 1838): a — male, dorsal view; b — left male palp, ventral view; c — left male palp, ventral view (Kim 2021)
Fig. 8 in New record of three oxytrichid ciliates (Ciliophora: Oxytrichidae) from South Korea
Fig. 8. Maximum likelihood (ML) phylogenetic tree inferred from 18S rDNA sequences of Oxytrichidae ciliates. The phylogenetic trees show the position of three soil ciliates of Oxytricha lithofera (arrow), Pleurotricha curdsi (arrowhead) and Sterkiella tetracirrata (double-arrowhead). New sequences are shown in bold text. Numbers at nodes indicate the bootstrap values of ML and the posterior probability of BI. Nodes designated by an asterisk (*) correspond to the supports not recovered in the estimated BI tree. The scale bar corresponds to two substitutions per 100 nucleotide positions.
Fig. 7 in New record of three oxytrichid ciliates (Ciliophora: Oxytrichidae) from South Korea
Fig. 7. Morphology of Sterkiella tetracirrata from live (A-D) and protargol-impregnated (E, F) specimens. A, B, Ventral view of typical specimen live arrow denotes contractile vacuole (arrow); C, Ventral view of typical specimen; D, Ventral view showing macronuclear nodules (arrow) and micronuclei (arrowhead); E, F, Ventral and dorsal view of typical specimen; Scale bars: 50 μm (C, E, F).
Fig. 6 in New record of three oxytrichid ciliates (Ciliophora: Oxytrichidae) from South Korea
Fig. 6. Morphology of Sterkiella tetracirrata from live (A) and protargol-impregnated (B, C) specimens. A, Ventral view of typical specimen; B, C, Ventral and dorsal view of typical specimen; AZM, adoral zone of membranelles; BC, buccal cirri; CC, caudal cirri; DM, dorsomarginal row; E, endoral membrane; FC, frontal cirri; LMR, left marginal cirral row; PTC, pretransverse cirri; RMR, right marginal cirral row; TC, transverse cirri; 1-4, dorsal kineties 1-4; Scale bars: 50 μm (A-C).
Fig. 5 in New record of three oxytrichid ciliates (Ciliophora: Oxytrichidae) from South Korea
Fig. 5. Morphology of Pleurotricha curdsi from protargol-impregnated (A-D) specimens. A, B, Ventral and dorsal view of typical specimen; C, Ventral view showing macronuclear nodules (arrow) and micronuclei (arrowhead); D, Ventral view of posterior end; AZM, adoral zone of membranelles; E, endoral membrane; FC, frontal cirri; LMR, left marginal cirral row; P, paroral membrane; PTC, pretransverse cirri; RMR, right marginal cirral row; TC, transverse cirri; Scale bars: 50 μm (A), 10 μm (C).
Fig. 3 in New record of three oxytrichid ciliates (Ciliophora: Oxytrichidae) from South Korea
Fig. 3. Morphology of Pleurotricha curdsi from live (A) and protargol-impregnated (B, C) specimens. A, Ventral view of typical specimen live arrow denotes contractile vacuole (arrow); B, C, Ventral and dorsal view of typical specimen; AZM, adoral zone of membranelles; BC, buccal cirri; CC, caudal cirri; DM, dorsomarginal row; DK, dorsal kinety; E, endoral membrane; FC, frontal cirri; FVC, frontoventral cirri; LMR, left marginal cirral row; Ma, macronuclear nodules; Mi, micronuclei; P, paroral membrane; PTC, pretransverse cirri; PVC, postoral ventral cirri; RMR, right marginal cirral row; TC, transverse cirri; 1-4, dorsal kineties 1-4; Scale bars: 50 μm (A-C).
Fig. 4 in New record of three oxytrichid ciliates (Ciliophora: Oxytrichidae) from South Korea
Fig. 4. Photomicrographs of Pleurotricha curdsi from live (A-G). A, B, Ventral view arrow denotes contractile vacuole; C, Ventral view from live; D, Dorsal view showing cytoplasm; E, Dorsal views of arrow mark the tapered posterior end; F, G, Extension of the contractile vacuole.; Scale bars: 50 μm (A-D).
Fig. 2 in New record of three oxytrichid ciliates (Ciliophora: Oxytrichidae) from South Korea
Fig. 2. Photomicrographs of Oxytricha lithofera from live (A, B) and after protargol impregnation (C, D). A, Ventral view showing lithosomes (arrows) and contractile vacuole (arrowhead); B, Dorsal view showing dorsal bristles and cortical granules; C, D, Ventral and dorsal view of typical specimen; Scale bars: 50 μm (A-D).
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.