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Fig. 29 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Fig. 29. Map showing all localities of revised specimens of Otiorhynchus subcostatus (black circles) and those of O. muffi sp. nov. (white circles). Note that O. subcostatus is also recorded from the French Massif Central (records not shown on this map).
Figs 19–24 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 19–24. Spiculum ventrale of selected Otiorhynchus (Nihus) 19. O. subcostatus (lectotype, Engadine), 20. O. spaethi (Campogrosso), 21. O. spaethi (Monte Cavallo), 22. O. azaleae (Koralpe), 23. O. azaleae (Monte Sernio), 24. O. gredleri (Cima Tombea).
Figs 10–13 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 10–13. Habitus of 10. Otiorhynchus gredleri (female from a parthenogenetic population, Piz Clünas), 11. O. azaleae (male from Koralpe), 12. Ditto (female from an amphigonic population, Wöllaner Nock), 13. Ditto (female from a parthenogenetic population, Monte Sernio).
Figs 2–5 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 2–5. Habitus of female specimens of 2. Otiorhynchus uncinatus (Sagno), 3. O. carinatopunctatus (Tarasp), 4. O. muffi sp. nov. (holotype, S-charl), 5. O. subcostatus (lectotype, Engadine).
Figs 6–9 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 6–9. Habitus of 6. Otiorhynchus venustus (female from Valmasque), 7. O. hypocrita (female from Pragelato). 8. O. gredleri (male from Monte Baldo), 9. Ditto female from an amphigonic population, same locality.
Figs 25–28 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 25–28. Penis ventral and lateral of 25. O. gredleri (Monte Baldo), 26. O. azaleae (Koralpe), 27. O. spaethi (Campogrosso), 28. O. hypocrita (Albergian).
Fig. 6 in Six new species of Amblypsilopus Bigot (Diptera: Dolichopodidae: Sciapodinae) and a key to species of the Afrotropical mainland
Fig. 6. Amblypsilopus martini sp. nov., holotype, ♂ (A–G: ZMUC); paratype, ♂ (H–I: ZMUC). A. Habitus. B. Head. C. Antenna. D. Wing. E. Fore femur. F. Mid tarsus. G. Mid femur. H. Hypopygium after maceration, left lateral view. I. Surstylus, lateral view.
Fig. 5 in Six new species of Amblypsilopus Bigot (Diptera: Dolichopodidae: Sciapodinae) and a key to species of the Afrotropical mainland
Fig. 5. Amblypsilopus mufindiensis sp. nov., holotype, ♂ (ZMUC). A. Habitus. B. Head. C. Antenna. D. Fore femur. E. Mid tarsus. F. Wing. G. Hypopygium after maceration, left lateral view. H. Surstylus, lateral view. I. Cerci, dorsal view.
Fig. 7 in Six new species of Amblypsilopus Bigot (Diptera: Dolichopodidae: Sciapodinae) and a key to species of the Afrotropical mainland
Fig. 7. Amblypsilopus udzungwensis sp. nov., holotype, ♂ (ZMUC). A. Habitus. B. Head. C. Antenna. D. Foretarsus. E. Mid tarsus. F. Wing. G. Hypopygium after maceration, left lateral view. H. Surstylus, lateral view.
Fig. 4 in Six new species of Amblypsilopus Bigot (Diptera: Dolichopodidae: Sciapodinae) and a key to species of the Afrotropical mainland
Fig. 4. Amblypsilopus milleri sp. nov., holotype, ♂ (A–G: NMSA); paratype, ♂ (H: BMSA). A. Habitus. B. Head. C. Antenna. D. Fore femur and base of fore tibia. E. Mid femur. F. Wing. G. Hypopygium, left lateral view, dry. H. Hypopygium after maceration, left lateral view.
Fig. 2 in Six new species of Amblypsilopus Bigot (Diptera: Dolichopodidae: Sciapodinae) and a key to species of the Afrotropical mainland
Fig. 2. Amblypsilopus gabonensis sp. nov., holotype, ♂ (ZIN). A. Habitus. B. Head. C. Antenna. D. Fore tarsomeres 2–5, lateral view. E. Hypopygium after maceration, left lateral view.
Fig. 3 in Six new species of Amblypsilopus Bigot (Diptera: Dolichopodidae: Sciapodinae) and a key to species of the Afrotropical mainland
Fig. 3. Amblypsilopus bevisi (Curran, 1927), ♂, Natal, Edendale (NMSA). A. Habitus. B. Head. C. Antenna. D. Fore tarsus. E. Wing. F. Hypopygium, left lateral view, dry. G. Hypopygium, dorsal view, dry.
Fig. 4 in A new species of Anobothrus (Polychaeta, Ampharetidae) from the Weddell Sea (Antarctica), with notes on habitat characteristics and an updated key to the genus
Fig. 4. Anobothrus konstantini Säring & Bick sp. nov. A. Complete specimen with one outermost branchia, lateral view, arrow: dorsal ridge on segment 12 (TC 11, TU 7), additional material (ZSRO-P2657). B. Long thoracic notochaeta, additional material (ZSRO-P2658). C. Short thoracic notochaeta, additional material (ZSRO-P2658). D. Long notochaeta of the modified segment 12 (TC 11, TU 7), additional material (ZSRO-P2658). E. Short notochaeta of the modified segment 12 (TC 11, TU 7), additional material (ZSRO-P2658). F. Dorsal view of the anterior end, paratype (ZSRO-P2662). G. Lateral view of thoracic uncinus, additional material (ZSRO-P2658). H. Frontal view of thoracic uncinus, additional material (ZSRO-P2658). I. Lateral view of abdominal uncinus, additional material (ZSRO-P2658). J. Frontal view of abdominal uncinus, additional material (ZSRO-P2658). K. Lateral view of three thoracic segments, arrow: dorsal ridge on segment 12 (TC 11, TU 7) with slightly elevated notopodia, additional material (ZSRO-P2656). L. Lateral view of last thoracic, two intermediate and first abdominal segments, paratype (ZSRO-P2663). Scale bars: A = 500 µm; B–E = 100 µm; F, K = 200 µm; G–H = 10 µm; I–J = 5 µm; L = 50 µm.
Fig. 6 in A new species of Anobothrus (Polychaeta, Ampharetidae) from the Weddell Sea (Antarctica), with notes on habitat characteristics and an updated key to the genus
Fig. 6. Anobothrus konstantini Säring & Bick sp. nov. SEM micrographs. A. Anterior end and thorax, dorsal view, arrows: segment 6 (thoracic chaetiger 5, thoracic unciniger 1) and segment 12 (TC 11, TU 7), paratype (ZSRO-P2661). B. Pores in glandular band on segment 6 (TC 5, TU 1), dorsal view, paratype (ZSRO-P2661).C. Elevated ridge with cilia on segment 12 (TC 11, TU 7), dorsal view, paratype (ZSRO-P2661). D. Posterior end with papillose pygidium, lateral view, paratype (ZSRO-P2663). E. Last thoracic, two intermediate and first abdominal segments, lateral view, paratype (ZSRO-P2663). F. 4 longer and 3 shorter notochaetae of notopodium on segment 15 (TC 14, TU 10), paratype (ZSRO-P2661). G. Margin of short notochaetae on segment 15 (TC 14, TU 10), paratype (ZSRO-P2661). H. Margin of long notochaetae on segment 15 (TC 14, TU 10), paratype (ZSRO-P2661). I. Modified notochaetae on segment 12 (TC 11, TU 7), paratype (ZSRO-P2661). J. Abdominal uncini on abdominal segment 8, frontal view, paratype (ZSRO-P2663). K. Abdominal uncinus on abdominal segment 8, lateral view, paratype (ZSRO-P2663). Scale bars: A, E = 100 µm; B, I = 2 µm; C, D = 20 µm; F, H = 10 µm; G = 3 µm, J–K = 1 µm.
Fig. 5 in A new species of Anobothrus (Polychaeta, Ampharetidae) from the Weddell Sea (Antarctica), with notes on habitat characteristics and an updated key to the genus
Fig. 5. Anobothrus konstantini Säring & Bick sp. nov., additional material (ZSRO-P2658). Micro-CT graphs, additional material. A. Anterior end with arrangement of branchiae, dorsal view. B. Anterior end with arrangement of branchiae, frontal view (note semicircular arrangement of paleae; arrows: small paleae on each side). C. Frontal view of anterior end, without branchiae or paleae (note: Ampharete-type prostomium). D. Anterior end, transverse section of branchiae, paleae and prostomium (note arrows: small paleae on each side). Scale bars: A–D = 100 µm.
Fig. 3 in A new species of Anobothrus (Polychaeta, Ampharetidae) from the Weddell Sea (Antarctica), with notes on habitat characteristics and an updated key to the genus
Fig. 3. Anobothrus konstantini Säring & Bick sp. nov. Micrographs of ShirlastainA staining pattern. A. Complete specimen, lateral view with one outermost branchia, additional material (ZSRO-P2657). B. Notochaetae on segment 11 (TC 10), paratype (ZSRO-P2662). C. Modified notochaetae on segment 12 (TC 11, TC 7), paratype (ZSRO-P2660). D. Dorsal view of anterior end, arrow: glandular circular band on segment 6 (TC 5, TU 1), paratype (ZSRO-P2662). E. Lateral view, arrow: reduced neuropodium on segment 5 (TC 4), without uncini, paratype (ZSRO-P2662). F. Lateral view of anterior end, paratype (ZSRO-P2662). G. Lateral view of three thoracic segments, arrow: modified notopodium with dorsal ridge on segment 12 (TC 11, TU 7), paratype (ZSRO-P2662). Scale bars: A = 500 µm; B = 50 µm, C = 20 µm; D–E = 100 µm; F–G = 200 µm.
Fig. 1 in A new species of Anobothrus (Polychaeta, Ampharetidae) from the Weddell Sea (Antarctica), with notes on habitat characteristics and an updated key to the genus
Fig. 1. Schematic lateral view of Anobothrus konstantini Säring & Bick sp. nov. Abbreviations: see Material and methods. Vertical dotted line in TS6 represents circular glandular band. Vertical lines in TS12 represent elongated ridge between notopodia.
Fig. 2 in A new species of Anobothrus (Polychaeta, Ampharetidae) from the Weddell Sea (Antarctica), with notes on habitat characteristics and an updated key to the genus
Fig. 2. Sampling stations in the vicinity of the Antarctic Peninsula during RV Polarstern expedition PS 81 (Drake Passage, Bransfield Strait, North-Western Weddell Sea, green frame) and the South-Eastern Weddell Sea during PS 96 (North Filchner Trough, South Filchner Trough, blue frame). Stations without Anobothrus konstantini Säring & Bick sp. nov. labeled with a cross. Information about sampled stations and number of individuals of A. konstantini Säring & Bick sp. nov. are given in Table 1.
Fig. 45 in Revision of the Tomoderinae (Coleoptera: Anthicidae). Part III. New species and records of Macrotomoderus Pic, 1901 from China and a key to the Palaearctic species
Fig. 45. Macrotomoderus wudu sp. nov., paratypes, ♂♂ (ZIN), aedeagus. A–B. General view, different positions. C–D. Gonopore armature, median portion of apicale. E. Basale. F. Apical portion. Not to scale.
Fig. 43 in Revision of the Tomoderinae (Coleoptera: Anthicidae). Part III. New species and records of Macrotomoderus Pic, 1901 from China and a key to the Palaearctic species
Fig. 43. Macrotomoderus usitatus sp. nov., holotype, ♂ (ZIN), aedeagus. A–B. General view, different positions. C. Gonopore armature, median portion of apicale. D. Ditto, basal portion of apicale. E. Median portion of basale. F. Median portion of apicale, different position. G. Apical portion. Not to scale.
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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.