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Fig. 2 in Contribution to the Knowledge of the Rakantrechus Complex (Coleoptera, Carabidae, Trechini), with Description of a New Subgenus and a New Species of the Genus Nipponaphaenops S. Uéno, 1971 from Northwestern Shikoku, Western Japan

Fig. 2. Labium (a–e), prosternum (f), and female abdominal sterna (setae on metasternum and metacoxae are omitted).—a & j, Rakantrechus (Uozumitrechus) sp.; b & h, R. (Rakantrechus) kawasawai S. Uéno; c & m, R. (Iyotrechus) hisamatsui (S. Uéno et Naitô) comb. nov.; d, R. (Paratrechiama) sp. (nomurai group from Shikoku); e & k, Nipponaphaenops (Tanakaphaenops) kojii subgen. et sp. nov; f–g, R. (Pilosotrechiama) peninsularis S. Uéno et Naitô; i, R. (Izushites) sp.; l, N. (N.) erraticus S. Uéno; n, Kusumia takahasii S. Uéno.

opencc-by-4.0Aug 2022View details →
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Fig. 1 in Contribution to the Knowledge of the Rakantrechus Complex (Coleoptera, Carabidae, Trechini), with Description of a New Subgenus and a New Species of the Genus Nipponaphaenops S. Uéno, 1971 from Northwestern Shikoku, Western Japan

Fig. 1. Right mandible in dorsal view (a–i) and labial (right) and maxillary (left) palpi in ventral view (j–p).—a, Chaetotrechiama procerus S. Uéno; b, Rakantrechus (Paratrechiama) sp. (nomurai group from Shikoku); c & l, R. (Iyotrechus) hisamatsui (S. Uéno et Naitô) comb. nov.; d & m, R. (Uozumitrechus) sp.; e, R. (Pilosotrechiama) mirabilis S. Uéno; f & k, R. (Izushites) sp.; g & j, R. (Rakantrechus) kawasawai S. Uéno; h & o, Nipponaphaenops (N.) erraticus S. Uéno; i & n, N. (Tanakaphaenops) kojii subgen. et sp. nov.; p, Trechiama pluto S. Uéno (this species is unique in having trisetose penultimate labial palpomere in the Trechiama Series).

opencc-by-4.0Aug 2022View details →
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Fig. 4 in Contribution to the Knowledge of the Rakantrechus Complex (Coleoptera, Carabidae, Trechini), with Description of a New Subgenus and a New Species of the Genus Nipponaphaenops S. Uéno, 1971 from Northwestern Shikoku, Western Japan

Fig. 4. Reconstructed derivation pattern of elytral discal chaetotaxy in the Rakantrechus Complex.—Except asterisked one, all the chaetotaxy presented in diagrams are exhibited by the extant species of the Rakantrechus Complex (including undescribed Kusumia species), but the asterisked one of Ishikawatrechus is only theoretically required.—Left side of arrow is ancestral state and right side is derivative one; the transposition of setae between internal and external series is not taken into consideration.

opencc-by-4.0Aug 2022View details →
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Fig. 10. Typhlochactidae Mitchell, 1971, sinistral legs I–IV in Systematic Revision Of The Troglomorphic North American Scorpion Family Typhlochactidae (Scorpiones: Chactoidea)

Fig. 10. Typhlochactidae Mitchell, 1971, sinistral legs I–IV, basitarsi and telotarsi, retrolateral aspect. A–D. Alacran tartarus Francke, 1982, ♀ (WDS). E–H. Sotanochactas elliotti (Mitchell, 1971), paratype ³ (WDS). I–L. Stygochactas granulosus (Sissom and Cokendolpher, 1998), juv. ³ holotype (AMNH). Scales: A 5 0.1 mm; B, C 5 0.5 mm.

opencc-by-4.0Sep 2009View details →
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Fig. 12. Typhlochactinae Mitchell, 1971 in Systematic Revision Of The Troglomorphic North American Scorpion Family Typhlochactidae (Scorpiones: Chactoidea)

Fig. 12. Typhlochactinae Mitchell, 1971, metasoma and telson, lateral aspect. A. Sotanochactas elliotti (Mitchell, 1971), paratype ³ (WDS). B. Stygochactas granulosus (Sissom and Cokendolpher, 1998), juv. ³ holotype (AMNH). C. Typhlochactas cavicola Francke, 1986, holotype ♀ (AMNH). D. Typhlochactas mitchelli Sissom, 1988, holotype ³ (AMNH). E. Typhlochactas reddelli Mitchell, 1968, holotype ♀ (AMNH), segments IV, V and telson only. F. Typhlochactas rhodesi Mitchell, 1971, holotype ♀ (AMNH). G. Typhlochactas sylvestris Mitchell and Peck, 1977, holotype ♀ (AMNH). Scales 5 1 mm.

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Fig. 5. Typhlochactidae Mitchell, 1971 in Systematic Revision Of The Troglomorphic North American Scorpion Family Typhlochactidae (Scorpiones: Chactoidea)

Fig. 5. Typhlochactidae Mitchell, 1971, chelicerae, dorsal aspect. A. Alacran tartarus Francke, 1982, paratype ³ (AMNH). B. Sotanochactas elliotti (Mitchell, 1971), paratype ³ (WDS). C. Stygochactas granulosus (Sissom and Cokendolpher, 1998), juv. ³ holotype (AMNH). D. Typhlochactas cavicola Francke, 1986, holotype ♀ (AMNH). E. Typhlochactas mitchelli Sissom, 1988, holotype ³ (AMNH). F. Typhlochactas reddelli Mitchell, 1968, holotype ♀ (AMNH). G. Typhlochactas rhodesi Mitchell, 1968, holotype ♀ (AMNH). H. Typhlochactas sissomi Francke et al., 2009, subad. ³ holotype (IBUNAM), dextral chelicera. I. Typhlochactas sylvestris Mitchell and Peck, 1977, holotype ♀ (AMNH), sinistral chelicera. Scales: A 5 1 mm; B–H 5 0.1 mm.

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Fig. 6. Typhlochactidae Mitchell, 1971 in Systematic Revision Of The Troglomorphic North American Scorpion Family Typhlochactidae (Scorpiones: Chactoidea)

Fig. 6. Typhlochactidae Mitchell, 1971, carapace, dorsal aspect. A. Alacran tartarus Francke, 1982, paratype ³ (AMNH). B. Alacran tartarus Francke, 1982, ♀ (WDS). C. Sotanochactas elliotti (Mitchell, 1971), paratype ³ (WDS). D. Stygochactas granulosus (Sissom and Cokendolpher, 1998), juv. ³ holotype (AMNH). Scales: A, B 5 1 mm; C, D 5 0.5 mm.

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Рис. 16–21. L. argentata (16): 16 — самец, общий виΔ; L. capensis (17–21): 17 — самец, общий виΔ; 18 — брюшко самца; 19 — брюшко самки; 20 — церки и стернит 5 (по Zielke 1971); 21 — церки и стернит 5 in Lispe (Diptera, Muscidae) of Africa

Рис. 16–21. L. argentata (16): 16 — самец, общий виΔ; L. capensis (17–21): 17 — самец, общий виΔ; 18 — брюшко самца; 19 — брюшко самки; 20 — церки и стернит 5 (по Zielke 1971); 21 — церки и стернит 5

opencc-by-4.0Dec 2021View details →
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Figs 162–166. Netomocera rufa Hedqvist, 1971. 162 in Revision of Netomocera Bouček (Hymenoptera: Chalcidoidea: Pteromalidae), excluding the Oriental species

Figs 162–166. Netomocera rufa Hedqvist, 1971. 162. ♂, Zimbabwe, habitus, dorsal view. 163. Holotype, ♂, mesosoma, lateral view. 164. Holotype, ♂, mesosoma, dorsal view. 165. Holotype, ♂, propodeum, dorsal view. 166. Holotype, ♂, fore wing. Scale bars: 0.2 mm.

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Figs 157–161. Netomocera rufa Hedqvist, 1971. 157 in Revision of Netomocera Bouček (Hymenoptera: Chalcidoidea: Pteromalidae), excluding the Oriental species

Figs 157–161. Netomocera rufa Hedqvist, 1971. 157. Holotype, ♂, habitus, lateral view. 158. Holotype, ♂, head, frontal view. 159. ♂, Zimbabwe, head, dorsal view. 160. Holotype, ♂, lower face. 161. Holotype, ♂, antenna. Scale bars: 0.2 mm.

opencc-by-4.0Oct 2019View details →
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Figs 17–22. Netomocera alboscapus Hedqvist, 1971. 17 in Revision of Netomocera Bouček (Hymenoptera: Chalcidoidea: Pteromalidae), excluding the Oriental species

Figs 17–22. Netomocera alboscapus Hedqvist, 1971. 17. ♀, D.R. Congo, mesosoma, lateral view (mesepimeral sulcus indicated). 18. Holotype, ♀, mesosoma, dorsal view. 19. Holotype, ♀, propodeum, dorsal view. 20. Holotype, ♀, fore and hind wings. 21. ♂, D.R. Congo, habitus, lateral view. 22. ♂, D.R. Congo, antenna. Scale bars: 0.2 mm.

opencc-by-4.0Oct 2019View details →
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Figs 12–16. Netomocera alboscapus Hedqvist, 1971 in Revision of Netomocera Bouček (Hymenoptera: Chalcidoidea: Pteromalidae), excluding the Oriental species

Figs 12–16. Netomocera alboscapus Hedqvist, 1971, holotype, ♀. 12. Habitus, lateral view. 13. Head, frontal view. 14. Head, dorsal view. 15. Lower face. 16. Antenna. Scale bars: 0.2 mm.

opencc-by-4.0Oct 2019View details →
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Figs 6–11. Netomocera africana Hedqvist, 1971. 6 in Revision of Netomocera Bouček (Hymenoptera: Chalcidoidea: Pteromalidae), excluding the Oriental species

Figs 6–11. Netomocera africana Hedqvist, 1971. 6. ♀, mesosoma, lateral view. 7. Paratype, ♀, mesosoma, dorsal view. 8. Paratype, ♀, propodeum, dorsal view. 9. Paratype, ♀, fore wing. 10. Paratype, ♂, habitus, lateral view. 11. Paratype, ♂, antenna. Scale bars: 0.2 mm.

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Figs 1–5. Netomocera africana Hedqvist, 1971. 1 in Revision of Netomocera Bouček (Hymenoptera: Chalcidoidea: Pteromalidae), excluding the Oriental species

Figs 1–5. Netomocera africana Hedqvist, 1971. 1. Paratype, ♀, habitus, lateral view. 2. ♀, head, frontal view. 3. Paratype, ♀, head, dorsal view. 4. ♀, lower face. 5. Paratype, ♀, antenna. Scale bars: 0.2 mm.

opencc-by-4.0Oct 2019View details →
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Text-fig. 3. 1, 2. Ensete goldianum (LESQUEREUX) comb. nov, Holotype, USNM 494, Golden Colorado. 1. Numerous seeds on a slab. 2. Detail of seed molds and casts. 3-5 "Sagittaria" megasperma R. W. BROWN. 3. Infructescence head. USNM 167488, lectotype selected by Watt 1971. 4. Isolated fruit showing veins of wing, and longitudinally striate central body and single style, USNM 313282, 5. Additional isolated fruit, USNM 313283. Images 4, 5 light-dark inverted. Scale = 1 cm. in Revisions To Roland Brown'S North American Paleocene Flora

Text-fig. 3. 1, 2. Ensete goldianum (LESQUEREUX) comb. nov, Holotype, USNM 494, Golden Colorado. 1. Numerous seeds on a slab. 2. Detail of seed molds and casts. 3-5 "Sagittaria" megasperma R. W. BROWN. 3. Infructescence head. USNM 167488, lectotype selected by Watt 1971. 4. Isolated fruit showing veins of wing, and longitudinally striate central body and single style, USNM 313282, 5. Additional isolated fruit, USNM 313283. Images 4, 5 light-dark inverted. Scale = 1 cm.

opencc-by-4.0Dec 2014View details →
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Figure 5 in Morphological and molecular characterization and phylogenetic position of a new record, Tylenchorhynchus zeae, and some known species of Telotylenchidae Siddiqi, 1960 and Merliniidae Siddiqi, 1971 from Iran

Figure 5. Pairwise identity between species based on SDTv 1.2 software. Brown and red colors show higher percentage of identity between species.

opencc-by-4.0Jun 2016View details →
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Figure 3 in Morphological and molecular characterization and phylogenetic position of a new record, Tylenchorhynchus zeae, and some known species of Telotylenchidae Siddiqi, 1960 and Merliniidae Siddiqi, 1971 from Iran

Figure 3. Tylenchorhynchus zeae: anterior end of the female (A) and male (B), head with stylet (C), shape of the female body (D) and male (E), vulva with ovary (F), lateral lines (G), tail with bursa in male (H), and tail of female (I–K).

opencc-by-4.0Jun 2016View details →
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Figure 1 in Morphological and molecular characterization and phylogenetic position of a new record, Tylenchorhynchus zeae, and some known species of Telotylenchidae Siddiqi, 1960 and Merliniidae Siddiqi, 1971 from Iran

Figure 1. Anterior and posterior end of Amplimerlinius globigerus (A), Merlinius brevidens (B), Pratylenchoides alkani (C), P. ritteri (D), Scutylenchus rugosus (E), Scutylenchus tartuensis (F), and Trophurus impar (G).

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Figure 2 in Morphological and molecular characterization and phylogenetic position of a new record, Tylenchorhynchus zeae, and some known species of Telotylenchidae Siddiqi, 1960 and Merliniidae Siddiqi, 1971 from Iran

Figure 2. Tylenchorhynchus zeae: anterior end of the female (A), head with stylet (B), lateral lines (C), vulva with ovary (D), tail terminus in female (E), tail terminus with bursa in male (F), phasmid (G), and spicule (H).

opencc-by-4.0Jun 2016View details →
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Fig. 1. Imago 1 in Intersexuality in Farrodes Peters, 1971 (Ephemeroptera: Leptophlebiidae: Atalophlebiinae) from Brazil

Fig. 1. Imago 1 of Farrodes xingu: (A) dorsal view, red circle showing the eggs on abdomen; (B) lateral view, red circle showing the eggs on abdomen; (C) segments II–IV with mass of eggs; (D) segments VI–X, red circle showing the mass of eggs and the malformed genitalia (ventral view).

opencc-by-4.0Jun 2019View details →

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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.

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electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
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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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record