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.
123
datasets available to search
ShareScore release 0.9.0
Dataset results
123 results for “WATSON”
FIGURES 10 in A new species of Onryza Watson, 1893 (Lepidoptera: Hesperiidae) from China
FIGURES 10. Male genitalia of Onryza maga. A—lateral view of ring. B—dorsal view of uncus. C—outer view of left valva. D—inner view of left valva. E—lateral view of phallus. F—dorsal view of phallus. G—juxta. Scale bar = 1 mm.
FIGURES 9 in A new species of Onryza Watson, 1893 (Lepidoptera: Hesperiidae) from China
FIGURES 9. Male genitalia of Onryza pesudomaga. A—lateral view of ring. B—dorsal view of uncus. C—outer view of left valva. D—inner view of left valva. E—lateral view of phallus. F—dorsal view of phallus. G—juxta. Scale bar = 1 mm.
FIGURES 1–8 in A new species of Onryza Watson, 1893 (Lepidoptera: Hesperiidae) from China
FIGURES 1–8. Adults of Onryza. 1–4. O. pesudomaga. 1. holotype, ♂, upperside; 2. ditto, underside; 3. paratype, ♀, upperside; 4. ditto, underside. 5–8. O. maga from Zhejiang, China. 5. ♂, upperside; 6. ditto, underside. 7. ♀, upperside; 8. ditto, underside. Scale bar = 10 mm.
FIGURE 2 in New bathyal Anachis (Neogastropoda: Buccinoidea: Columbellidae) from the Southwestern Atlantic, and the designation of a lectotype for A. stricta (Watson, 1882)
FIGURE 2. Three deep sea Anachis from the Western Atlantic (ventral view): A. Anachis rechonchuda n. sp. (holotype), B. Anachis stricta (lectotype—here designated), C. Anachis strix (syntype—TL 9.80 mm). Scale bars: A. 500 µm, B. 1 mm.
FIGURE 1. Anachis rechonchuda n in New bathyal Anachis (Neogastropoda: Buccinoidea: Columbellidae) from the Southwestern Atlantic, and the designation of a lectotype for A. stricta (Watson, 1882)
FIGURE 1. Anachis rechonchuda n. sp. (SEM: A, C. holotype; B, D–G. paratypes, IBUFRJ 19468): A. ventral view, B. lateral view, C. view of aperture, D. view of siphonal canal, E–G. view of protoconch. Scale bars: A–B. 500 µm, C–D and E. 200 µm, F–G. 100 µm.
FIGURES 1–8. Figs. 1–2. Radiarctia screabile. 1. R. screabile displaying orange cervical hairs. 2. R. screabile type 2 sustained static display. Fig. 3 in A review of some of the Binna- like species of Afrotropical Spilosoma Curtis (1825) listed by Goodger & Watson (1995) and including the genus Radiarctia Dubatolov (2006) (Lepidoptera: Arctiidae, Arctiinae)
FIGURES 1–8. Figs. 1–2. Radiarctia screabile. 1. R. screabile displaying orange cervical hairs. 2. R. screabile type 2 sustained static display. Fig. 3. Binna penicillata, ♂, Kenya, Suna (BMNH). Figs. 4–6. Radiarctia spp. 4. R. screabile screabile, ♂, Zimbabwe, Harare (PGH). 5. R. screabile screabile, Ψ, Zimbabwe, Harare (PGH). 6. R. screabile nyangana, holotype ♂, Zimbabwe, Nyanga (BMNH). Figs. 7–8. Pseudoradiarctia spp. 7. P. rho de s i a na, ♂, Zimbabwe, Nyanga (PGH). 8. P. rhodesiana (Hampson), paralectotype Ψ, Zimbabwe, Harare (BMNH).
FIGURE 17–24. Fig. 17. P in A review of some of the Binna- like species of Afrotropical Spilosoma Curtis (1825) listed by Goodger & Watson (1995) and including the genus Radiarctia Dubatolov (2006) (Lepidoptera: Arctiidae, Arctiinae)
FIGURE 17–24. Fig. 17. P. scita, Ψ, South Africa, Natal, Umkomaas (BMNH) Fig. 18. Binna penicillata, holotype ♂ genitalia, Sierra Leone, slide 3475 (BMNH). Figs. 19–21. Radiarctia spp. genitalia. 19. R. screabile screabile, ♂ genitalia, Zimbabwe, Harare, slide S113 (PGH). 20. R. screabile screabile, ♂ abdomen, Zimbabwe, Harare, slide S113 (PGH). 21. R. screabile screabile, Ψ genitalia, Zimbabwe, Harare, slide S158 (PGH). Figs. 22–24. Pseudoradiarctia spp. genitalia. 22. P. rh o d e s i a n a, lectotype ♂ genitalia, Zimbabwe, Harare, slide 136 (BMNH). 23. P. rh o d e s i a n a, ♂ abdomen, Zimbabwe, Nyanga, slide S266 (PGH). 24. P. lentifasciata, ♂ genitalia, Zimbabwe, Harare, slide S234 (PGH).
FIGURES 25–32. Pseudoradiarctia spp. genitalia. 25. P in A review of some of the Binna- like species of Afrotropical Spilosoma Curtis (1825) listed by Goodger & Watson (1995) and including the genus Radiarctia Dubatolov (2006) (Lepidoptera: Arctiidae, Arctiinae)
FIGURES 25–32. Pseudoradiarctia spp. genitalia. 25. P. lentifasciata, Ψ genitalia, Zimbabwe, Harare, slide S262 (PGH). 26. P. pallida, paratype ♂ genitalia, Zimbabwe, Chimanimani, slide 6278 (BMNH). 27. P. p a r v a, holotype ♂ genitalia, Zambia, Mwenga, slide 139 (BMNH). 28. P. tanzanica, paratype ♂ genitalia, Tanzania, Bukoba (ZSM). 29. P. affinis, lectotype ♂ genitalia, Tanzania, Uhehe, slide 41295 (ZMB). 30. P. scita, ♂ genitalia, South Africa, Natal, slide 6279 (BMNH). 31. P. scita, ♂ abdomen, South Africa, Natal, slide 6279 (BMNH). 32. P. scita, Ψ genitalia, South Africa, Natal, slide 6277 (BMNH).
FIGURES 9–16. Pseudoradiarctia spp. 9. P in A review of some of the Binna- like species of Afrotropical Spilosoma Curtis (1825) listed by Goodger & Watson (1995) and including the genus Radiarctia Dubatolov (2006) (Lepidoptera: Arctiidae, Arctiinae)
FIGURES 9–16. Pseudoradiarctia spp. 9. P. lentifasciata, ♂, Zimbabwe, Harare (BMNH). 10. P. lentifasciata, Ψ, Zimbabwe, Harare (BMNH). 11. P. pallida, paratype ♂, Tanzania, Ilonga Kilosa (PGH). 12. P. p a r v a, paratype ♂, Tanzania, Rukwa Region (ZSM). 13. P. p a r v a, paratype Ψ, Zambia, Mwenga (BMNH). 14. P. tanzanica, paratype ♂, Tanzania, Bukoba (ZSM). 15. P. affinis, lectotype ♂, Tanzania, Uhehe, Iringa (ZMB). 16. P. scita, ♂, South Africa, Natal (BMNH).
FIGURE 15. Halecium banzare Watson, 2008 in Benthic hydroids (Cnidaria, Hydrozoa) from the Ross Sea (Antarctica) collected by the New Zealand Antarctic expedition BioRoss 2004 with RV Tangaroa
FIGURE 15. Halecium banzare Watson, 2008: A, internodes with primary and second-order hydrothecae; B, gonotheca. Halecium exaggeratum Peña Cantero, Boero & Piraino, 2013: C, internode with primary and secondary hydrotheca as well as lower-order branch; D, internodes with primary hydrothecae; E, gonotheca. Halecium interpolatum Ritchie, 1907: F, internode with primary hydrotheca and internode structure. Halecium jaederholmi Vervoort, 1972: G, internodes with primary hydrothecae. Halecium secundum Jäderholm, 1904: H, internode with primary hydrotheca. (A from Stn 53; B from Stn 139; C–E, H from Stn 67; F from Stn 107; G from Stn 112). Scale bar: 250 µm.
FIGURE 3. Aclis sarissa Watson, 1881. A–B, H–K. MORG 49199. C–D. CZUFS GAS-00102. E–G. CZUFS GAS-00104. A, C, E in Taxonomic review of Aclis Lóven, 1846 (Gastropoda, Eulimidae) from Brazil with notes on other congeners from the western Atlantic and Saint Helena
FIGURE 3. Aclis sarissa Watson, 1881. A–B, H–K. MORG 49199. C–D. CZUFS GAS-00102. E–G. CZUFS GAS-00104. A, C, E. Shell in frontal view; square in A indicates detail in I. B, D, F. Shell in lateral view. G–H. Detail of the body whorl in frontal view. I–J. Detail of teleoconch surface; rectangle in I indicates detail in J. K. Detail of apical whorls; arrow indicates the transition protoconch–teleoconch. Scale bars: A–F. 1 mm; G–H. 500 μm; I–J. 50 μm; K. 200 μm.
FIGURE 2. Aclis sarissa Watson, 1881. A–C, E. Lectotype, NHMUK 1887.2.9.1576 in Taxonomic review of Aclis Lóven, 1846 (Gastropoda, Eulimidae) from Brazil with notes on other congeners from the western Atlantic and Saint Helena
FIGURE 2. Aclis sarissa Watson, 1881. A–C, E. Lectotype, NHMUK 1887.2.9.1576, herein designated; D. Paralectotype, NHMUK 1887.2.9.1576; F–I. Paralectotype, NMW 1955.158.26255; J–K. Holotype of Aclis carolinensis, USNM 83743. A, D, F, J. Shell in frontal view; B, G, K. Shell in lateral view. C, H. Shell in dorsal view. E, I. Body whorl in frontal view. Scale bars: A–D, F–H, I–J. 1 mm; E, I. 500 μm. Credits: A–E. NHMUK photographic unit; F–I. NMW.
FIGURE 13. Paleaequor psamathe Watson Russell, 1986 in A new genus and seven new species of chrysopetalids (Annelida, Chrysopetalidae) from the Tropical Eastern Pacific
FIGURE 13. Paleaequor psamathe Watson Russell, 1986, non-type specimen (ECOSUR-3068). A) Complete body. B) Drawing of prostomium, ventral view. C) Drawing of pygidium, ventral view. D) Oocyte. E) Parapodium from segment 15. F) Lateral paleae. G) Subunit 1, two kinds of paleae. H) Main paleae. I) Median paleae. J) Unit 1. K) Unit 2. L) Unit 3. M–N) Unit 4. Scales: 10 µm (JKLMN), 50 µm (BCFGHI), 200 µm (E), 2 mm (A).
FIGURE 11. Paleaequor nicoyensis Watson Russell, 1986 in A new genus and seven new species of chrysopetalids (Annelida, Chrysopetalidae) from the Tropical Eastern Pacific
FIGURE 11. Paleaequor nicoyensis Watson Russell, 1986, non-type specimen (UMAR-Poly 954). A) Complete body. B) Drawing of prostomium, ventral view. C) Drawing of pygidium, ventral view. D) Parapodium from segment 20. E) Lateral paleae. F) Subunit 1. G) Main palea. H) Median palea. I) Unit 1. J) Unit 2. K) Unit 3. L–M) Unit 4. Scales: 20 µm (EFGHI- JKLM), 50 µm (BC), 200 µm (D), 1 mm (A).
FIGURE 2 in A new species of Zographetus Watson, 1893 (Lepidoptera: Hesperiidae) from Sikkim, eastern Himalaya, India
FIGURE 2. Male genitalia of paratypes of Zographetus dzonguensis sp. nov. A. lateral view of genital capsule, B. valva, C. aedeagus, D. dorsal view of genital capsule, E. ventral view of genital capsule, F. juxta. In IBC-BM770, 'A' shows the outside of the right valve, and 'B' shows inside of the left valve (left valve was separated from the genital capsule and then photographed). In IBC-BM772, 'A' shows inside of the left valve, and 'B' shows outside of the right valve (right valve was separated from the genital capsule and then photographed).
FIGURE 3 in A new species of Zographetus Watson, 1893 (Lepidoptera: Hesperiidae) from Sikkim, eastern Himalaya, India
FIGURE 3. Zographetus dzonguensis sp. nov. in life. All individuals were photographed at Namprikdang playground, Dzongu, North Sikkim District, Sikkim, India in August-September 2020 and 2021. Photographs © Sonam Wangchuk Lepcha.
Figure 1. Scaphander gracilis Watson, 1883 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 1. Scaphander gracilis Watson, 1883. (a) apertural (left), adpertural (right), apical (bottom) views of shell from south off Flores Island, Azores, lectotype, NHMUK 1887.2.9.2183–6, H = 13.5 mm (images courtesy of the NHMUK photographic unit). (b) apertural (left), adpertural (right), apical (bottom) views of shell from south of São Miguel Island, Azores, paralectotype, NHMUK 1887.2.9.2187 − 8, H = 13.0 mm (images courtesy of the NHMUK photographic unit). (c) apertural (left), adpertural (right), apical (bottom) views of shell from between São Miguel and Santa Maria Islands, Azores, DBUA 1630, H = 20 mm. (d) stereo microscope image of the sculpture of the shell illustrated in C. Scale bar = 1 mm.
Figure 4 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 4. Bayesian phylogenetic tree based on partial sequences of the COI gene. Figures on nodes are posterior probabilities, scale bar refers to branch lengths. The tree was rooted using the species Bulla vernicosa.
Figure 3 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 3. Scanning electron micrographs of foraminifera taken from the gut content of Scaphander gracilis (DBUA 1630, H = 20 mm). (a–b) agglutinating foraminifera; (c−j) calcareous foraminifera. Scale bar = 1 mm.
Figure 2 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 2. Anatomical details of Scaphander gracilis Watson, 1883 (DBUA 1630, H = 20 mm). (a) radula; (b) rachidian tooth; (c) denticulation of the inner edge of lateral teeth; (d) anterior part of digestive tract; (e) gizzard plates, inner side of the paired plates and lateral view of the unpaired plate; (f) male reproductive system; (g) lining of the penial chamber. bb, buccal bulb; c, crop; go, genital opening; m, mouth; o, oesophagus; p, prostate; pc, penial chamber; pd, prostatic duct; pgp, paired gizzard plates; sg, salivary gland; ugp, unpaired gizzard plate. Scale bars: A, G = 200 µm; B, C = 20 µm; D, F = 1 mm; E = 2 mm.
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.