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670 results for “Molluscs”
Figs. 21–24 in Palaeogene continental molluscs of Oman
Figs. 21–24: Species of Subulinidae. Fig. 21: Cast of? Zootecus sp., Wadi Darbat NMBE 5018987. Fig. 22: Zootecus insularis, lectotype ZMB 109990, Yemen, Insula Cameran. Fig. 23: Zootecus lucidissimus, SMF 320191, Yemen, Sana'a, Wadi beni Mansur close to al-Hajima, 15°05.105'N 43°52.818'E, leg. Neubert. Fig. 24: Zootecus contiguus, syntype NHMUK 1987.033, Yemen, Socotra Archipelago, Abd el-Kuri. Detail not to scale.
Fig. 15a in Palaeogene continental molluscs of Oman
Fig. 15a: Achatina sculpturata sp. nov. Wadi Darbat, holotype NMBE 5018982 in frontal view. Figs 15b and 15c show details of the holotype shell; details not to scale.
Figs. 16–17 in Palaeogene continental molluscs of Oman
Figs. 16–17: Species of Cerastidae. Fig. 16a: Cerastus pseudoena sp. nov., Wadi Darbat, holotype NMBE 5018985 in frontal view. Fig. 16b: ditto, detail of protoconch and upper teleoconch whorls; detail not to scale. Fig. 17: Cerastus girwanensis CONOLLY, 1941, SMF 311620, Saudi Arabia, Asir province, Wadi al-Sharan S of Bani Sa'ad, 1750 m alt, leg. E. Neubert.
Fig. 1 in New Alien Species Mytilopsis Leucophaeata And Corbicula Fluminalis (Mollusca, Bivalvia) Recorded In Georgia And Notes On Other Non-Indigenous Molluscs Invaded The South Caucasus
Fig. 1. Map of the region showing the collection sites. Details for each sampling point are given in table 1.
Fig. 3 in New Alien Species Mytilopsis Leucophaeata And Corbicula Fluminalis (Mollusca, Bivalvia) Recorded In Georgia And Notes On Other Non-Indigenous Molluscs Invaded The South Caucasus
Fig. 3. Corbicula fluminalis: 1–4 whole specimen from native range, Vilesh River near Masally, Azerbaijan (1, 2 — right valve, 3, 4 — left valve); 5–8 — whole specimen from Pichori village (locality 1) (5, 6 — right valve, 7, 8 — left valve); 9–10 — a single left valve from Tbilisi Reservoir (locality 4) from outside (9) and inside (10); 11–12 — a single left valve from Shaori Reservoir (locality 3) from outside (11) and inside (12); 13–14 — a single left valve from Iori River (locality 5) from outside (13) and inside (14).
Fig. 2 in New Alien Species Mytilopsis Leucophaeata And Corbicula Fluminalis (Mollusca, Bivalvia) Recorded In Georgia And Notes On Other Non-Indigenous Molluscs Invaded The South Caucasus
Fig. 2. Mytilopsis leucophaeata: 1 — shells from Patara Paliastomi Lake (locality 2); 2–4 — whole specimen from the same locality (2 — right valve, 3 — left valve, 4 — enlarged inner view of position 2 showing the apophysis); 5–6 — a single right valve of shell from Shaori Reservoir (locality 3) from outside (5) and inside (6) views correspondingly.
Fig. 2 in Terrestrial Molluscs Of The Tsyr-Pripyat Area In Volyn (Northern Ukraine): The First Findings Of The Threatened Snail Vertigo Moulinsiana In Mainland Ukraine
Fig. 2. Shells of Vertigo moulinsiana from the vicinities of Velyka Glusha (plot 10), scale bar 1 mm.
Text-fig. 17. White Patch fossil sites (18°56′10.9″S: 34°38′41.0″E) Gorongosa National Park, south of the 4×4 vehicle track from Urema to Muanza. 1 – Marine molluscs, 2 – Bones, 3 – Bones, 4 – Marine snails (these sites were subsequently named GPL 12 and GPL 12b by d'Oliveira Coelho et al. 2021). Image modified from Google Earth. in Stratigraphy, Chronology And Palaeontology Of The Tertiary Rocks Of The Cheringoma Plateau, Mozambique
Text-fig. 17. White Patch fossil sites (18°56′10.9″S: 34°38′41.0″E) Gorongosa National Park, south of the 4×4 vehicle track from Urema to Muanza. 1 – Marine molluscs, 2 – Bones, 3 – Bones, 4 – Marine snails (these sites were subsequently named GPL 12 and GPL 12b by d'Oliveira Coelho et al. 2021). Image modified from Google Earth.
Рис. 2. А – Тусингайское водохранилиЩе; В – оросительный канал Дустлик у г. Гулистан. Фото Н. РуЗикуловой, 2020 г. Fig. 2. A – Tusingay water reservoir; B – irrigation channel Dustlik near the Gulistan Town. Photo by N. Ruzikulova, 2020. in Patterns of ecology and life cycles of aquatic molluscs from Central Asia
Рис. 2. А – Тусингайское водохранилиЩе; В – оросительный канал Дустлик у г. Гулистан. Фото Н. РуЗикуловой, 2020 г. Fig. 2. A – Tusingay water reservoir; B – irrigation channel Dustlik near the Gulistan Town. Photo by N. Ruzikulova, 2020.
Рис. 4. Раковины видов Melanoididae иЗ термальных источников: А – Melanoides pamiricus Lindholm иЗ теплого источника ДЖаушангоЗ (Памир), высота раковины 16 мм; В – M. shahdaraensis Starobogatov et Izzatullaev, иЗ теплого источника ДЖаушангоЗ, высота раковины 15 мм; С – M. kainarensis Starobogatov et Izzatullaev иЗ теплого источника ХадЖа-Кайнар (юго-восток Туркмении), высота раковины 23 мм. Фото З. ИЗЗатуллаева, 1976, 1980 гг. Fig. 4. Shells of the Melanoididae species from thermal springs: A – Melanoides pamiricus Lindholm, the hot spring Dzhaushangoz (Pamir), shell height 16 mm; B – M. shahdaraensis Starobogatov et Izzatullaev, the hot spring Dzhaushangoz, shell height 15 mm; C – M. kainarensis Starobogatov et Izzatullaev, the hot spring Khadzha-Kainar (south-eastern Turkmenistan). Photo by Z. Izzatullaev, 1976, 1980. in Patterns of ecology and life cycles of aquatic molluscs from Central Asia
Рис. 4. Раковины видов Melanoididae иЗ термальных источников: А – Melanoides pamiricus Lindholm иЗ теплого источника ДЖаушангоЗ (Памир), высота раковины 16 мм; В – M. shahdaraensis Starobogatov et Izzatullaev, иЗ теплого источника ДЖаушангоЗ, высота раковины 15 мм; С – M. kainarensis Starobogatov et Izzatullaev иЗ теплого источника ХадЖа-Кайнар (юго-восток Туркмении), высота раковины 23 мм. Фото З. ИЗЗатуллаева, 1976, 1980 гг. Fig. 4. Shells of the Melanoididae species from thermal springs: A – Melanoides pamiricus Lindholm, the hot spring Dzhaushangoz (Pamir), shell height 16 mm; B – M. shahdaraensis Starobogatov et Izzatullaev, the hot spring Dzhaushangoz, shell height 15 mm; C – M. kainarensis Starobogatov et Izzatullaev, the hot spring Khadzha-Kainar (south-eastern Turkmenistan). Photo by Z. Izzatullaev, 1976, 1980.
Рис. 1. А – р. Зарафшан в среднем течении (предгорнаЯ река); В – р. Зарафшан в ниЖнем течении (равниннаЯ река). Фото Н. РуЗикуловой, 2019 г. Fig. 1. А – the Middle Zarafshan River (submountain river); B – the Lower Zarafshan River (lowland river). Photo by N. Ruzikulova, 2019. in Patterns of ecology and life cycles of aquatic molluscs from Central Asia
Рис. 1. А – р. Зарафшан в среднем течении (предгорнаЯ река); В – р. Зарафшан в ниЖнем течении (равниннаЯ река). Фото Н. РуЗикуловой, 2019 г. Fig. 1. А – the Middle Zarafshan River (submountain river); B – the Lower Zarafshan River (lowland river). Photo by N. Ruzikulova, 2019.
Fig. 7 in Opisthobranch molluscs of «Cylichna occulta group» (Gastropoda: Opisthobranchia: Cylichnidae) from the Chukchi Sea and adjacent waters
Fig. 7. Cylichnoides scalptus: Kara Sea, 1948: radula (A–F), shell sculpture (G–J), (B–D – rachidian tooth, denticles of the internal lateral tooth, E – denticles of the internal lateral tooth, F – outer lateral teeth). Cylichnoides densistriatus (K, L): radula (K), shell sculpture (L). Scale bar: A – 100 µm; B – 40 µm; C, F, K – 50 µm; D – 30 µm; E – 10 µm; G – 500 µm; H, I, L – 200 µm; J – 400 µm.
Fig. 6 in Opisthobranch molluscs of «Cylichna occulta group» (Gastropoda: Opisthobranchia: Cylichnidae) from the Chukchi Sea and adjacent waters
Fig. 6. Cylichnoides scalptus, shell: Kara Sea, «Fyodor Litke», station 183 (A–E); Barents Sea, R/V «Persey», station 862 (F, G) and station 866 (H) (ventral view: A – 10.2 mm, B – 9.9 mm, C – 9.5 mm, D – 5.3 mm, F – 5.0 mm, H – 10 mm; apical view: E, G). Cylichnoides densistriatus, shell: Kotelny Isl., New Siberian Islands, 1903 (I, J); Laptev Sea, Kondrat'evsky Il., 1973 (K, L), ventral view (I – 5.6 mm, L – 4 mm), apical view (J, K). Scale bar: E, G, J, K – 1.0 mm.
Fig. 4 in Opisthobranch molluscs of «Cylichna occulta group» (Gastropoda: Opisthobranchia: Cylichnidae) from the Chukchi Sea and adjacent waters
Fig. 4. Cylichnoides occultus, shell: Chukchi Sea, Wrangel Isl., «Fyodor Litke», station 44 (A – 8.5 mm, ventral view); Wrangel Isl., Rodzhers Bay, station 4 (8.0 mm – B, 7.0 mm – C, ventral view); Greenland, identified previously as Cylichna insculpta (=Cylichna reinhardti) (8.0 mm – E, 6.5 mm – F); «Vega» expedition, 1876 (H – 4.0 mm, G – 5.0 mm, ventral view and D – apical view); Frantz Joseph Land (I – 7.2 mm, ventral view and J – apical view); K, L – Chukchi Sea, De Long Strait (K – apical view and L – 8.0 mm, ventral view); Cylichnoides sp. 1: «Fyodor Litke», station 44, Chukchi Sea, Wrangel Isl. (M – 7.8 mm).
Fig. 2 in Opisthobranch molluscs of «Cylichna occulta group» (Gastropoda: Opisthobranchia: Cylichnidae) from the Chukchi Sea and adjacent waters
Fig. 2. Cylichnoides validus: radula (K), lateral teeth (A, B, D) and rachidian teeth (C, E, F, I); gizzard plate (J); shell sculpture (G, H); penis (L). A, I – Laptev sea, «Sadko», station 21; D, E, G, J – Chukchi sea, «Fyodor Litke», station 55; B, C, F, H, K – Chukchi sea, «Fyodor Litke», station 54; L – «Vega» expedition. Abbreviations: a – atrium, a.pr – additional prostate, pr – prostate, p.s – penial sheath. Scale bar: A, C, D, J – 50 µm; B, K – 100 µm; G, H – 200 µm; I – 40 µm; E, F – 10 µm; L – 0.5 mm.
Fig. 1 in Opisthobranch molluscs of «Cylichna occulta group» (Gastropoda: Opisthobranchia: Cylichnidae) from the Chukchi Sea and adjacent waters
Fig. 1. Cylichnoides validus, shell: syntypes of Cylichna insculpta var. valida, SMNH, ventral view (A, B); «Vega» expedition, 1878, no data, 7.5 mm, (ventral view – D); R/V «Persey», Barents Sea, station 150, 8.5 mm (ventral view – H); Chukchi Sea, «Rusalka»-2009, station 119 (apical view (C) and ventral view (E – 5 mm; F – 4 mm; G – 7 mm)); R/V «Ivan Kireev», station 9/42, Laptev Sea, ventral view, 7.5 mm (I); «Fyodor Litke», Chukchi Sea, station 54, ventral view, 9 mm (J); «Krasin», Chukchi Sea, station 44, ventral view, 7.8 mm (K); «Sadko», Laptev Sea, station 21, identified by G.P. Gorbunov as Cylichna insculpta, ventral view, 8.5 mm (L). Scale bar: C – 2 mm.
Fig. 3 in Opisthobranch molluscs of «Cylichna occulta group» (Gastropoda: Opisthobranchia: Cylichnidae) from the Chukchi Sea and adjacent waters
Fig. 3. Male copulatory system: Cylichnoides scalptus, Laptev Sea (A); Cylichnoides densistriatus, Russian Polar Expedition 1901–1903, no data (B); Cylichnoides occultus, Novaya Zemlya, Matochkin Strait (C); Cylichnoides validus, Laptev Sea (D) and Chukchi Sea, «Vega» expedition (dorsal view (E), ventral view (F)). Abbreviations: m – muscle fibers, p.f – folds of penial sheath, others like to Fig. 2. Scale bar: A, D–F – 1 mm; B, C – 0.5 mm.
FIG. 4 in Harmozica zangezurica (Gastropoda, Pulmonata, Hygromiidae) - a cryptic species of land molluscs from southern Armenia
FIG. 4. The shells of anatomically verified specimens of H. zangezurica from different sites. A. Locus typicus (site 1). B. Shikahogh (site 2). С. Srashen (site 4). D. Vaganavank (site 7). Scale bars 5 mm.
FIG. 3 in Harmozica zangezurica (Gastropoda, Pulmonata, Hygromiidae) - a cryptic species of land molluscs from southern Armenia
FIG. 3. Dissected specimens of H. zangezurica from different sites. A. Locus typicus (site 1). B. Between Srashen and Tsav (site 5). С. Tsav (site 6). D. Vaganavank (site 7). Arrows indicate vaginal appendages. Scale bars 1 mm.
FIG. 1 in Harmozica zangezurica (Gastropoda, Pulmonata, Hygromiidae) - a cryptic species of land molluscs from southern Armenia
FIG. 1. The locations of the collecting sites of anatomically examined adults of Harmozica zangezurica.
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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.