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14,755 results for “redescription”
Figure 7 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 7: Large adult male of Tityus smithii from Union: a. carapace; b. pedipalp, dorsal view; c. sternopectinal region; d. sternite V; e. metasomal segments I–III, lateral view; f. metasomal segments IV–V and telson, lateral view; g. telson, lateral close-up.
Figure 8 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 8: Small adult male of Tityus smithii from Union: a. entire dorsal view; b. entire ventral view.
Figure 6 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 6: Large adult male of Tityus smithii from Union: a. entire dorsal view; b. entire ventral view.
Figure 5 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 5: Adult male topotype of Tityus smithii: a. carapace; b. pedipalp, dorsal view; c. venter; d. metasoma, lateral view. Photos courtesy František Kovařík.
Figure 4 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 4: Adult male topotype of Tityus smithii: a. entire dorsal view; b. entire ventral view. Photos courtesy František Kovařík.
Figure 3 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 3: Juvenile female topotype of Tityus pictus: a. entire dorsal view; b. sternopectinal region; c. sternite V; d. metasomal segments III–V and telson, lateral view.
Figure 2 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 2: Large adult male topotype of Tityus pictus: a. carapace; b. pedipalp, dorsal view; c. sternopectinal region; d. sternite V; e. metasomal segments I–III, lateral view; f. metasomal segments IV–V and telson, lateral view; g. telson, lateral close-up.
Figure 1 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 1: Large adult male topotype of Tityus pictus: a. entire dorsal view; b. entire ventral view.
Figure 1 in Redescription of Scorpiops margerisonae Kovařík, 2000, with the first record of its female, from China (Xizang) (Scorpiones: Euscorpiidae: Scorpiopinae)
Figure 1: Scorpiops margerisonae Kovařík, 2000, male (Ar.-HBU-XZLX060137). Dorsal view. Scale bar: 5.0 mm.
Figures 2–12 in Redescription of Scorpiops margerisonae Kovařík, 2000, with the first record of its female, from China (Xizang) (Scorpiones: Euscorpiidae: Scorpiopinae)
Figures 2–12: Scorpiops margerisonae Kovařík, 2000, male (Ar.-HBU-XZLX060137). 2. Carapace. 3–4. Chelicera, dorsal and ventral aspects. 5. Lateral eyes. 6. Genital operculum and pectines. 7. Femur, dorsal aspect. 8–10. Patella, dorsal, external and ventral aspects. 11. Metasomal segment V, ventral aspect. 12. Telson, lateral aspect. Scale bars (except fig. 6): 1.0 mm; scale bar of fig. 6: 2.0 mm.
Figures 13–21 in Redescription of Scorpiops margerisonae Kovařík, 2000, with the first record of its female, from China (Xizang) (Scorpiones: Euscorpiidae: Scorpiopinae)
Figures 13–21: 13–17. Scorpiops margerisonae Kovařík, 2000, male (Ar.-HBU-XZLX060137). 13–16. Chela dorsoexternal, external, ventral and internal aspects. 17. Dentate margin of movable finger, showing rows of granules. 18–21. S. margerisonae Kovařík, 2000, female (Ar.-HBU-XZLX060138). Chela dorsoexternal, external, ventral and internal aspects. Scale bars: 2.0 mm.
Figure 2 in Rare or poorly known scorpions from Colombia. II. Redescription of Tityus columbianus (Thorell, 1876) (Scorpiones: Buthidae)
Figure 2: Large adult male of Tityus columbianus from Chiquinquirá: a) prosoma, dorsal view; b) pedipalp, dorsal view; c) sternopectinal region, ventral view; d) pecten, ventral view; e) sternites V–VI, ventral view; f) metasomal segments II–IV, lateral view; g) metasomal segments IV–V and telson, lateral view.
Figure 4 in Rare or poorly known scorpions from Colombia. II. Redescription of Tityus columbianus (Thorell, 1876) (Scorpiones: Buthidae)
Figure 4: Adult female of Tityus columbianus from Chiquinquirá: a) entire dorsal view; b) entire ventral view.
Figure 3 in Rare or poorly known scorpions from Colombia. II. Redescription of Tityus columbianus (Thorell, 1876) (Scorpiones: Buthidae)
Figure 3: Small adult male of Tityus columbianus from Chiquinquirá: a) entire dorsal view; b) pedipalp, dorsal view; c) metasomal segments IV–V and telson, lateral view.
Figure 5 in Rare or poorly known scorpions from Colombia. II. Redescription of Tityus columbianus (Thorell, 1876) (Scorpiones: Buthidae)
Figure 5: Adult female of Tityus columbianus from Chiquinquirá: a) prosoma, dorsal view; b) pedipalp, dorsal view; c) movable finger, dorsal view; d) sternopectinal region, ventral view; e) pecten, ventral view; f) sternites V–VI, ventral view; g) metasomal segments II–IV, lateral view; h) metasomal segments IV–V and telson, lateral view.
Fig. 16 in Figs. 18-21 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Fig. 16. Mothocya parvostis manca (2.96 mm) infesting a yellowfin seabream Acanthopagrus latus juvenile (12.22 mm). (A–D) Pereopods 3–6, respectively. (E, F) Pleopods 1, 2, respectively. Scale bars = 0.1 mm.
Fig. 14 in Figs. 18-21 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Fig. 14. Mothocya parvostis manca (3.12 mm) infesting a cobaltcap silverside Hypoatherina tsurugae juvenile (14.54 mm). (A–D) Pereopods 3–6, respectively. (E, F) Pleopods 1, 2, respectively. Scale bars = 0.1 mm.
Fig. 15 in Figs. 18-21 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Fig. 15. Mothocya parvostis manca (2.96 mm) infesting a yellowfin seabream Acanthopagrus latus juvenile (12.22 mm). (A) Body, dorsal view. (B) Cephalon, ventral view. (C) Pleotelson. (D, E) Pereopods 1, 2, respectively. Scale bars: A = 1 mm; B, C = 0.2 mm; D, E = 0.1 mm.
Fig. 12 in Figs. 18-21 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Fig. 12. Mothocya parvostis juvenile (6.89 mm) infesting a yellowfin seabream Acanthopagrus latus juvenile (23.27 mm). (A–E) Pereopods 3–7, respectively. (F, G) Pleopods 1, 2, respectively. Scale bars = 0.2 mm.
Fig. 11 in Figs. 18-21 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Fig. 11. Mothocya parvostis juvenile (6.89 mm) infesting a yellowfin seabream Acanthopagrus latus juvenile (23.27 mm). (A) Body, dorsal view. (B) Cephalon, ventral view. (C) Pleotelson. (D, E) Pereopods 1, 2, respectively. Scale bars: A–C = 1 mm; D, E = 0.2 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
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.