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Figure 2 in Nikolaj Livanow's historical collection sheds new light on potential local extinctions and host association in Hirudinea
Figure 2. Collection vials with selected samples from the historical Hirudinea collection (EEZM): (a) Acanthobdella peledina Grube, 1851 (lot EEZM 387 "Onega Lake. N. Livanow, 1902"); (b) Hirudo medicinalis Linnaeus, 1758 (lot EEZM 406-407 "Kazan. E. Meyer, 1891"); and (c) Glossiphonia grubei (Lukin & Epshtein, 1959) (lot EEZM 397 "Lake Baikal (Maloe More [Strait]). V. Garjaew, 1899"). Photos: T. A. Eliseeva and A. V. Bespyatykh.
Figure 1 in Nikolaj Livanow's historical collection sheds new light on potential local extinctions and host association in Hirudinea
Figure 1. Cabinet with the historical Hirudinea collection in the EEZM – Edward Eversman Zoology Museum and Herbarium, Kazan (Volga Region) Federal University (formerly Zootomy Cabinet Museum of the Imperial Kazan University), prepared by Nikolaj A. Livanow and Eduard A. Meyer. The red numbers indicate exposition vials with samples of Acanthobdella peledina Grube, 1851 (1), Hirudo medicinalis Linnaeus, 1758 (2), and Glossiphonia grubei (Lukin & Epshtein, 1959) (3). Photo: T. A. Eliseeva and A. V. Bespyatykh.
Fig. 1 in Thorius narismagnus (Amphibia: Plethodontidae): rediscovery at the type locality and detection of a new population
Fig. 1. Locations of historical collection localities and the new localities of Thorius narismagnus in Los Tuxtlas region, Mexico.
Fig 4 in Unexpectedly high Sphaerodactylus diversity on a Caribbean island: new locality for the Honduran endemic Sphaerodactylus dunni Schmidt, 1936 (Gekkonidae: Sphaerodactylidae) on Utila Island, Honduras
Fig 4. Pictures of an adult Sphaerodactylus dunni photographed in 2014, in Pico Bonito National Park, La Cieba, Honduras, to provide direct comparison and aid in confirmation of the species' presence on Utila Island. Photos by Tom W. Brown.
Fig 2 in Unexpectedly high Sphaerodactylus diversity on a Caribbean island: new locality for the Honduran endemic Sphaerodactylus dunni Schmidt, 1936 (Gekkonidae: Sphaerodactylidae) on Utila Island, Honduras
Fig 2. Key diagnostic features (outlined in white or indicated in blue) used to identify the captured individual as Sphaerodactylus dunni on Isla de Utila, Honduras. (A) Three supralabial scales positioned beneath/level to the lower anterior half of each eye; (B) nine narrow sub-digital lamellae on digit IV (described range of 7–11); (C) keeled dorsal scales (not outlined) and usually a superciliary spine located at or posterior to the level of the mid-eye; (D) subcaudal scales in alternating series on tail. Photos by Tom W. Brown.
Fig 3 in Unexpectedly high Sphaerodactylus diversity on a Caribbean island: new locality for the Honduran endemic Sphaerodactylus dunni Schmidt, 1936 (Gekkonidae: Sphaerodactylidae) on Utila Island, Honduras
Fig 3. Google Earth © map hosted on the IUCN platform for Sphaerodactylus dunni (Townsend et al. 2013), illustrating the known range of the species on mainland Honduras, modified to include the new locality on Utila Island (X), part of Islas de la Bahía. Map data: see Google Earth (https://www.google.com/earth/) and Townsend et al. (2013).
Fig 1 in Unexpectedly high Sphaerodactylus diversity on a Caribbean island: new locality for the Honduran endemic Sphaerodactylus dunni Schmidt, 1936 (Gekkonidae: Sphaerodactylidae) on Utila Island, Honduras
Fig 1. An adult Sphaerodactylus dunni photographed upon capture at its newly reported locality on Isla de Utila, Honduras. Photo by Tom W. Brown.
Fig. 2. Representative elements ofgoniopholidid crocodyliform Dakotasuchus kingi Mehl, 1941, OMNH 34500 from OMNH locality V828 in A new occurrence of Dakotasuchus kingi from the Late Cretaceous of Utah, USA, and the diagnostic utility of postcranial characters in Crocodyliformes
Fig. 2. Representative elements ofgoniopholidid crocodyliform Dakotasuchus kingi Mehl, 1941, OMNH 34500 from OMNH locality V828, Mussentuchit Member, Cedar Mountain Formation, Cenomanian. A. Right cervical rib in ventral (A1) and dorsal (A2) views. B. Right coracoid in lateral (B1), caudal (B2), and medial (B3) views. C. Dorsal vertebra in cranial (C1), caudal (C2), lateral (C3), and dorsal (C4) views. D. Right radius in medial (D1) and lateral (D2) views. E. Dorsal scute in dorsal (E1) and ventral (E2) views. F. Ventral scute in dorsal (F1) and ventral (F2) views. G. Close-up views of neural canal in dorsal vertebrae, illustrating distinctive heart shape (white arrows); G1, OMNH 34500 vertebra in caudal view; G2, D. kingi holotype vertebra mold in cranial view. H. Tooth in labiolingual (H1), basal (H2), and mesiodistal (H3) views.
Fig. 1. A in Sauropod dinosaur remains from a new Early Jurassic locality in the Central High Atlas of Morocco
Fig. 1. A. Geological map of the Haute Moulouya Basin, Central High Atlas of Morocco, showing the location of the NHMUK PV R36834 site (based on Saâdi et al. 2012). B. Geographic location of the studied area (asterisk).
Fig. 3 in Sauropod dinosaur remains from a new Early Jurassic locality in the Central High Atlas of Morocco
Fig. 3. Line drawings of cervical vertebrae of Eusauropoda indet. (NHMUK PV R36834) from the Early Jurassic of the Haute Moulouya Basin, Morocco. Vertebra 1 (A) and vertebra 2 (B), in right lateral (A, B) and left lateral (A, B), anterior (A, B), posterior (A, B), ventral (A, B), and dorsal (A, B) 1 1 2 2 3 3 4 4 5 5 6 6 views.
Fig. 5 in Sauropod dinosaur remains from a new Early Jurassic locality in the Central High Atlas of Morocco
Fig. 5. Strict consensus trees obtained from addition of NHMUK PV R36834 to the data matrices of Carballido et al. 2015 (A) and McPhee et al. 2015 (B). Black circle indicates node for Eusauropoda. Taxa basal to Sauropoda collapsed for simplicity.
Fig. 4. Morphological comparisons between Lower and Middle Jurassic African sauropod middle cervical vertebrae. A in Sauropod dinosaur remains from a new Early Jurassic locality in the Central High Atlas of Morocco
Fig. 4. Morphological comparisons between Lower and Middle Jurassic African sauropod middle cervical vertebrae. A. Pulanesaura (BP/1/6199; McPhee et al. 2015: fig. 4). B. Jobaria tiguendis (MNN TIG F40-49; PDM personal observation 2013). C. Eusauropoda indet. (NHMUK PV R36834). D. Spinophorosaurus nigerensis (Remes et al. 2009: fig. 3A). Scale bars 100 mm.
Fig. 3. Early Jurassic gastropods from Lomas Occidentales fossil locality. A–D in New Early Jurassic gastropods from west-central Patagonia, Argentina
Fig. 3. Early Jurassic gastropods from Lomas Occidentales fossil locality. A–D. Pseudomelania feruglioi sp. nov. A. MPEF−PI 4090, paratype, adult teleoconch in lateral views (A1, A2). B. MPEF−PI 4091, paratype, adult teleoconch in lateral view. C. MPEF−PI 4096, juvenile teleoconch in lateral view. D. MPEF−PI 4089, paratype, adult teleoconch in apertural views (D1, D2). E. Pseudomelania sp. adult teleoconch in lateral views (E1, E2), basal views showing ornament details (E3, E4). F, G. Anulifera chubutensis sp. nov. F. SEGEMAR 25000 (MPEF−PI 4107), holotype, teleoconch in lateral (F1) and apertural (F2) views. G. SEGEMAR 25001 (MPEF−PI 4108), fragmentary teleoconch in lateral views (G1, G2). H. Globularia aff. catanlilensis (Weaver, 1931). MPEF−PI 4110, teleoconch in lateral (H1) and apertural (H2) views. Scale bars: A–E 3 mm, F–H, 10 mm.
Рис. 7–16. Carabus (Ophiocarabus) spp., генитаΛии самцов, виà сбоку (7–11 – меÃиаΛьная ÃоΛя эÃеагуса; 12–16 – энÃофаΛΛус). 7–8, 12–13 – C. ernsti ulastaiensis subsp. n., паратипы; 9–10, 14–15 – C. ernsti ernsti Kabak, 2002: 9, 14 – с гор к запаÃу от реки Сарык, 10, 15 – из ÃоΛины правого притока реки Сарык; 11, 16 – C. ernsti nilkiensis Kabak, 2014: 11 – гоAотип, 12 – паратип. ml – меÃиаΛьный бугор; pp – препуциаΛьный бугор; rbll – правый базоΛатераΛьный бугор. Figs 7–16. Carabus (Ophiocarabus) spp., male genitalia, lateral view (7–11 – medial lobe of the aedeagus; 12–16 – endophallus). 7–8, 12–13 – C. ernsti ulastaiensis subsp. n., paratypes; 9–10, 14–15 – C. ernsti ernsti Kabak, 2002: 9, 14 – from the locality in mountains to the West of the Saryk River, 10, 15 – from the locality in right tributary of the Saryk River; 11, 16 – C. ernsti nilkiensis Kabak, 2014: 11 – holotype, 12 – paratype. ml – median lobe; pp – praeputial pad; rbll – right basolateral lobe. in New data on the taxonomy of the genus Carabus Linnaeus, 1758 (Coleoptera: Carabidae) from the Ili River basin (China)
Рис. 7–16. Carabus (Ophiocarabus) spp., генитаΛии самцов, виà сбоку (7–11 – меÃиаΛьная ÃоΛя эÃеагуса; 12–16 – энÃофаΛΛус). 7–8, 12–13 – C. ernsti ulastaiensis subsp. n., паратипы; 9–10, 14–15 – C. ernsti ernsti Kabak, 2002: 9, 14 – с гор к запаÃу от реки Сарык, 10, 15 – из ÃоΛины правого притока реки Сарык; 11, 16 – C. ernsti nilkiensis Kabak, 2014: 11 – гоAотип, 12 – паратип. ml – меÃиаΛьный бугор; pp – препуциаΛьный бугор; rbll – правый базоΛатераΛьный бугор. Figs 7–16. Carabus (Ophiocarabus) spp., male genitalia, lateral view (7–11 – medial lobe of the aedeagus; 12–16 – endophallus). 7–8, 12–13 – C. ernsti ulastaiensis subsp. n., paratypes; 9–10, 14–15 – C. ernsti ernsti Kabak, 2002: 9, 14 – from the locality in mountains to the West of the Saryk River, 10, 15 – from the locality in right tributary of the Saryk River; 11, 16 – C. ernsti nilkiensis Kabak, 2014: 11 – holotype, 12 – paratype. ml – median lobe; pp – praeputial pad; rbll – right basolateral lobe.
Рис. 1–6. Carabus (Ophiocarabus) spp., общий виÃ. 1–2 – C. ernsti ulastaiensis subsp. n., паратипы: 1 – самец, 2 – самка; 3–4 – C. ernsti ernsti Kabak, 2002: 3 – самец из ÃоΛины правого притока реки Сарык, 4 – самец с гор к запаÃу от реки Сарык; 5–6 – C. ernsti nilkiensis Kabak, 2014, паратипы: 5 – самец, 6 – самка. Figs 1–6. Carabus (Ophiocarabus) spp., general view. 1–2 – C. ernsti ulastaiensis subsp. n., paratypes: 1 – male, 2 – female; 3–4 – C. ernsti ernsti Kabak, 2002: 3 – male from the locality in right tributary of the Saryk River, 4 – male from the locality in mountains to the West of the Saryk River; 5–6 – C. ernsti nilkiensis Kabak, 2014, paratypes: 5 – male, 6 – female. in New data on the taxonomy of the genus Carabus Linnaeus, 1758 (Coleoptera: Carabidae) from the Ili River basin (China)
Рис. 1–6. Carabus (Ophiocarabus) spp., общий виÃ. 1–2 – C. ernsti ulastaiensis subsp. n., паратипы: 1 – самец, 2 – самка; 3–4 – C. ernsti ernsti Kabak, 2002: 3 – самец из ÃоΛины правого притока реки Сарык, 4 – самец с гор к запаÃу от реки Сарык; 5–6 – C. ernsti nilkiensis Kabak, 2014, паратипы: 5 – самец, 6 – самка. Figs 1–6. Carabus (Ophiocarabus) spp., general view. 1–2 – C. ernsti ulastaiensis subsp. n., paratypes: 1 – male, 2 – female; 3–4 – C. ernsti ernsti Kabak, 2002: 3 – male from the locality in right tributary of the Saryk River, 4 – male from the locality in mountains to the West of the Saryk River; 5–6 – C. ernsti nilkiensis Kabak, 2014, paratypes: 5 – male, 6 – female.
Рис. 17–23. Carabus (Alipaster) semenoviellus Breuning, 1934, самцы (17–20 – общий виÃ, 21–23 – меÃиаΛьная ÃоΛя эÃеагуса, виà сбоку). 17, 21 – C. semenoviellus semenoviellus, экземпΛяр с гор ТагымбеΛь; 18–20, 22–23 – C. semenoviellus tokkuztaraensis subsp. n.: 18, 22 – гоΛотип, 19, 23 – паратип из ÃоΛины реки Эрботу, 20 – паратип из ÃоΛины реки Актуюк. Figs 17–23. Carabus (Alipaster) semenoviellus Breuning, 1934, males (17–20 – general view, 21–23 – median lobe of the aedeagus, lateral view). 17, 21 – C. semenoviellus semenoviellus from the locality in Tagymbel Mountains; 18–20, 22–23 – C. semenoviellus tokkuztaraensis subsp. n.: 18, 22 – holotype; 19, 23 – paratype from the locality in the Erbotu Valley; 20 – paratype from the locality in the Aktuyuk Valley. in New data on the taxonomy of the genus Carabus Linnaeus, 1758 (Coleoptera: Carabidae) from the Ili River basin (China)
Рис. 17–23. Carabus (Alipaster) semenoviellus Breuning, 1934, самцы (17–20 – общий виÃ, 21–23 – меÃиаΛьная ÃоΛя эÃеагуса, виà сбоку). 17, 21 – C. semenoviellus semenoviellus, экземпΛяр с гор ТагымбеΛь; 18–20, 22–23 – C. semenoviellus tokkuztaraensis subsp. n.: 18, 22 – гоΛотип, 19, 23 – паратип из ÃоΛины реки Эрботу, 20 – паратип из ÃоΛины реки Актуюк. Figs 17–23. Carabus (Alipaster) semenoviellus Breuning, 1934, males (17–20 – general view, 21–23 – median lobe of the aedeagus, lateral view). 17, 21 – C. semenoviellus semenoviellus from the locality in Tagymbel Mountains; 18–20, 22–23 – C. semenoviellus tokkuztaraensis subsp. n.: 18, 22 – holotype; 19, 23 – paratype from the locality in the Erbotu Valley; 20 – paratype from the locality in the Aktuyuk Valley.
Рис. 5. Типовое местонахожΑение Dorcadion natali sp. n. Fig. 5. The type locality of Dorcadion natali sp. n. in A new species of Dorcadion Dalman, 1817 (Coleoptera: Cerambycidae) from East Kazakhstan
Рис. 5. Типовое местонахожΑение Dorcadion natali sp. n. Fig. 5. The type locality of Dorcadion natali sp. n.
Рис. 4. Типовое местонахожΔение Dorcadion pantherinum ludmilae subsp. n. Fig. 4. The type locality of Dorcadion pantherinum ludmilae subsp. n. in A new subspecies of Dorcadion pantherinum Jakowleff, 1901 (Coleoptera: Cerambycidae) from South Kazakhstan
Рис. 4. Типовое местонахожΔение Dorcadion pantherinum ludmilae subsp. n. Fig. 4. The type locality of Dorcadion pantherinum ludmilae subsp. n.
Рис. 1. Распространение виΑов Dorcadion (s. str.) Dalman, 1817 в Восточном Казахстане. 1 – южные преΑгорья хр. Тарбагатай, типовое местонахожΑение D. urdzharicum; 2 – северные преΑгорья и скΛоны Тарбагатая и Саура, местонахожΑение D. songaricum; 3 – степи северо-запаΑнее оз. СасыккоΛь, местонахожΑение D. cephalotes; 4 – преΑгорья у югозапаΑного берега оз. АΛакоΛь, типовое местонахожΑение D. alakoliense; 5 – 47 км юго-восточнее Маканчи, типовое местонахожΑение D. natali sp. n. Fig. 1. Localities of species of Dorcadion (s. str.) Dalman, 1817 in East Kazakhstan. 1 – southern foothills of the Tarbagatai Ridge, type locality of D. urdzharicum; 2 – northern foothills and slopes of the Tarbagatai and Saur, locality of D. songaricum; 3 – steppes NW of Sasykkol Lake, locality of D. cephalotes; 4 – foothills at the SW shore of Alakol Lake, type locality of D. alakoliense; 5 – 47 km SE Makanchi, type locality of D. natali sp. n. in A new species of Dorcadion Dalman, 1817 (Coleoptera: Cerambycidae) from East Kazakhstan
Рис. 1. Распространение виΑов Dorcadion (s. str.) Dalman, 1817 в Восточном Казахстане. 1 – южные преΑгорья хр. Тарбагатай, типовое местонахожΑение D. urdzharicum; 2 – северные преΑгорья и скΛоны Тарбагатая и Саура, местонахожΑение D. songaricum; 3 – степи северо-запаΑнее оз. СасыккоΛь, местонахожΑение D. cephalotes; 4 – преΑгорья у югозапаΑного берега оз. АΛакоΛь, типовое местонахожΑение D. alakoliense; 5 – 47 км юго-восточнее Маканчи, типовое местонахожΑение D. natali sp. n. Fig. 1. Localities of species of Dorcadion (s. str.) Dalman, 1817 in East Kazakhstan. 1 – southern foothills of the Tarbagatai Ridge, type locality of D. urdzharicum; 2 – northern foothills and slopes of the Tarbagatai and Saur, locality of D. songaricum; 3 – steppes NW of Sasykkol Lake, locality of D. cephalotes; 4 – foothills at the SW shore of Alakol Lake, type locality of D. alakoliense; 5 – 47 km SE Makanchi, type locality of D. natali sp. n.
Рис. 3. Распространение поΔвиΔов Dorcadion (s. str.) pantherinum Jakowleff, 1901 в Южном Казахстане. 1 – центраΛьная часть пустыни Бетпак-ÀаΛа, преΔпоΛагаемое типовое местонахожΔение D. p. pantherinum; 2 – ЧуΛак-Эспе, местонахожΔение D. p. pantherinum; 3 – Аксуек, местонахожΔение D. p. pantherinum; 4 – Капчагай, типовое местонахожΔение D. p. shamaevi; 5 – 120 км северовосточнее Баканаса, типовое местонахожΔение D. p. desertum; 6 – 37 км восточнее КызыΛ-ОрΔы, типовое местонахожΔение D. p. sabulosum; 7 – 41 км восточнее Айтеке-Би, типовое местонахожΔение D. p. ludmilae subsp. n. Fig. 3. Localities of subspecies of Dorcadion (s. str.) pantherinum Jakowleff, 1901 in South Kazakhstan. 1 – central part of Betpak-Dala desert, possible type locality of D. p. pantherinum; 2 – Chulak-Espe, locality of D. p. pantherinum; 3 – Aksuek, locality of D. p. pantherinum; 4 – Kapchagai, type locality of D. p. shamaevi; 5 – 120 km NE Bakanas, type locality of D. p. desertum; 6 – 37 km E Kyzyl-Orda, type locality of D. p. sabulosum; 7 – 41 km E Ayteke-Bi, type locality of D. p. ludmilae subsp. n. in A new subspecies of Dorcadion pantherinum Jakowleff, 1901 (Coleoptera: Cerambycidae) from South Kazakhstan
Рис. 3. Распространение поΔвиΔов Dorcadion (s. str.) pantherinum Jakowleff, 1901 в Южном Казахстане. 1 – центраΛьная часть пустыни Бетпак-ÀаΛа, преΔпоΛагаемое типовое местонахожΔение D. p. pantherinum; 2 – ЧуΛак-Эспе, местонахожΔение D. p. pantherinum; 3 – Аксуек, местонахожΔение D. p. pantherinum; 4 – Капчагай, типовое местонахожΔение D. p. shamaevi; 5 – 120 км северовосточнее Баканаса, типовое местонахожΔение D. p. desertum; 6 – 37 км восточнее КызыΛ-ОрΔы, типовое местонахожΔение D. p. sabulosum; 7 – 41 км восточнее Айтеке-Би, типовое местонахожΔение D. p. ludmilae subsp. n. Fig. 3. Localities of subspecies of Dorcadion (s. str.) pantherinum Jakowleff, 1901 in South Kazakhstan. 1 – central part of Betpak-Dala desert, possible type locality of D. p. pantherinum; 2 – Chulak-Espe, locality of D. p. pantherinum; 3 – Aksuek, locality of D. p. pantherinum; 4 – Kapchagai, type locality of D. p. shamaevi; 5 – 120 km NE Bakanas, type locality of D. p. desertum; 6 – 37 km E Kyzyl-Orda, type locality of D. p. sabulosum; 7 – 41 km E Ayteke-Bi, type locality of D. p. ludmilae subsp. n.
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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.