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Figure 4 from: Branch WR, Haacke W, Vaz Pinto P, Conradie W, Baptista N, Verburgt L, Verisimmo L (2017) Loveridge's Angolan geckos, Afroedura karroica bogerti and Pachydactylus scutatus angolensis (Sauria, Gekkonidae): new distribution records, comments on type localities and taxonomic status. Zoosystematics and Evolution 93(1): 157-166. https://doi.org/10.3897/zse.93.10915
Figure 4 - Regional variation in colouration and habitus of Afroedura bogerti from Angola A Omauha Lodge, Namibe Province B 52 km N Caraculo, Namibe Province C Praia do Meva, Benguela Province (P Vaz Pinto). D Candumbo Rocks, Huambo Province (L Verburgt). All photos by WR Branch, except where noted.
Figure 5 from: Branch WR, Haacke W, Vaz Pinto P, Conradie W, Baptista N, Verburgt L, Verisimmo L (2017) Loveridge's Angolan geckos, Afroedura karroica bogerti and Pachydactylus scutatus angolensis (Sauria, Gekkonidae): new distribution records, comments on type localities and taxonomic status. Zoosystematics and Evolution 93(1): 157-166. https://doi.org/10.3897/zse.93.10915
Figure 5 - Distribution of Pachydactylus angolensis and Pachydactylus scutatus in Angola. Stars = type localities. For additional Namibian localities for Pachydactylus scutatus, see Bauer et al. (2002).
Figure 2 from: Branch WR, Haacke W, Vaz Pinto P, Conradie W, Baptista N, Verburgt L, Verisimmo L (2017) Loveridge's Angolan geckos, Afroedura karroica bogerti and Pachydactylus scutatus angolensis (Sauria, Gekkonidae): new distribution records, comments on type localities and taxonomic status. Zoosystematics and Evolution 93(1): 157-166. https://doi.org/10.3897/zse.93.10915
Figure 2 - The ruins of farm Monte Verde, surrounded by eucalyptus trees (middle distance), overlay those of William Chapman's farm Monte Victoria-Verdun. Viewed from an intrusive rock outcrop on the lower northern slopes of Sandula Hill.
Figure 1 from: Branch WR, Haacke W, Vaz Pinto P, Conradie W, Baptista N, Verburgt L, Verisimmo L (2017) Loveridge's Angolan geckos, Afroedura karroica bogerti and Pachydactylus scutatus angolensis (Sauria, Gekkonidae): new distribution records, comments on type localities and taxonomic status. Zoosystematics and Evolution 93(1): 157-166. https://doi.org/10.3897/zse.93.10915
Figure 1 - A: (left) Photograph of the original "Titulo de Concessao" (28 January 1930) confirming William Chapman's ownership of the farm that was purchased by the Kath-Brock family. B: (right) the farm map from the "Titulo de Concessao" showing 'Alengo Sandula' at middle of lower boundary.
Figure. Dionysia splendens Alipour, Mehregan & Lidén, sp. nov. A–C, plant in habitat, type locality; D, close-up of flowers, inflorescence and leaf rosette (upper left, brevistylous corolla; upper middle, longistylous corolla). Photographs: Sajad Alipour. in DIONYSIA SPLENDENS (PRIMULACEAE), A NEW SPECIES FROM THE FARS PROVINCE OF IRAN
Figure. Dionysia splendens Alipour, Mehregan & Lidén, sp. nov. A–C, plant in habitat, type locality; D, close-up of flowers, inflorescence and leaf rosette (upper left, brevistylous corolla; upper middle, longistylous corolla). Photographs: Sajad Alipour.
Fig. 1. Locality 2 in New data on the distribution of Hoplia stenolepis (Scarabaeoidea: Melolonthidae) in Bulgaria
Fig. 1. Locality 2 (Zemen Gorge). Fig. 2. Males of Hoplia stenolepis on Rhinanthus wagneri. Locality 2.
Рис. 3. Точки нахоΔок Orthosia ariuna: 1 — МонгоΛия, аймак БуΛган, 64 км З ЭрΔэнэсанта (типовая местность); 2 — Россия, РеспубΛика Тыва, Эрзин; 3 — Россия, ЗабайкаΛьский край, Нижний Цасучей; 4 — Россия, Хабаровск (новая нахоΔка);? — Россия, Приморский край, Уссурийск (сомнитеΛьное указание) Fig. 3. Distribution records of Orthosia ariuna: 1 — Mongolia, Bulgan aimak, 64 km W of Erdenesant (type locality); 2 — Russia, Republic of Tyva, Erzin; 3 — Russia, Zabaykalsky Krai, Nizhny Tsasuchey; 4 — Russia, Khabarovsk (new record);? — Russia, Primorsky Krai, Ussuriisk (questionable record) in The First Reliable Record Of A Little-Known Species Orthosia Ariuna Hreblay, 1991 (Lepidoptera, Noctuidae) From The Far East Of Russia
Рис. 3. Точки нахоΔок Orthosia ariuna: 1 — МонгоΛия, аймак БуΛган, 64 км З ЭрΔэнэсанта (типовая местность); 2 — Россия, РеспубΛика Тыва, Эрзин; 3 — Россия, ЗабайкаΛьский край, Нижний Цасучей; 4 — Россия, Хабаровск (новая нахоΔка);? — Россия, Приморский край, Уссурийск (сомнитеΛьное указание) Fig. 3. Distribution records of Orthosia ariuna: 1 — Mongolia, Bulgan aimak, 64 km W of Erdenesant (type locality); 2 — Russia, Republic of Tyva, Erzin; 3 — Russia, Zabaykalsky Krai, Nizhny Tsasuchey; 4 — Russia, Khabarovsk (new record);? — Russia, Primorsky Krai, Ussuriisk (questionable record)
Fig. 1. The map showing the localities where the examined materials were collected from 1981 in A new species and new record of Pacificincolidae (Bryozoa: Cheilostomata) from Korea
Fig. 1. The map showing the localities where the examined materials were collected from 1981 to 2020. 1, Geojin Port (Goseong-gun); 2, Jodo Island (Yangyang-gun); 3, Namae Port (Yangyang-gun); 4, Jumunjin Port (Gangneung-si); 5, Gyeongpodae (Gangneung-si); 6, Neunggeol (Ulleungdo Island); 7, Deoksan Port (Samcheok-si); 8, Ganggu Port (Yeongdeok-gun); 9, Guryongpo Port (Pohang-si); 10, Yangpo Port (Pohang-si); 11, Gampo Port (Gyeongju-si); 12, Bangeojin Port (Ulsan); 13, Jangsaengpo Port (Ulsan); 14, Daebyeon Port (Busan); 15, Mipo Port (Busan); 16, Suyabangdo Island (Geoje-si); 17, Gujora Port (Geoje-si); 18, Daetseom Island (Geoje-si); 19, Daegueulbido Island (Tongyeong-si); 20, Hongdo Island (Tongyeong-si); 21, Tongyeong Consignment Market (Tongyeong-si); 22, Sindo Island (Tongyeong-si); 23, Yokjido Island (Tongyeong-si); 24, Sangju-ri (Namhae-gun); 25, Gwangyang Port (Gwangyang-si); 26, Almado Island (Yeosu-si); 27, Gyedo Island (Goheung-gun); 28, Jeju Port (Jeju-do); 29, Seogwipo Port (Jeju-do); 30, Munseom Island (Jeju-do); 31, Gangjeong (Jeju-do); 32, Gapado Island (Jeju-do); 33, Hauido Island (Sinan-gun); 34, Hoenggyeongdo Island (Gunsan-si); 35, Cheongpodae Beach (Taean-gun); 36, Sinjindo (Taean-gun); 37, Hagampo Beach (Taean-gun); 38, Incheon Port (Incheon); 39, Baengnyeongdo Island (Incheon). ●, Pacificincola perforata; ■, Primavelans glabricollaris n. sp.; ★, Pacificincola perforata + Primavelans glabricollaris n. sp.
Figure 4 from: Espinasa L, Legendre L, Fumey J, Blin M, Rétaux S, Espinasa M (2018) A new cave locality for Astyanax cavefish in Sierra de El Abra, Mexico. Subterranean Biology 26: 39-53. https://doi.org/10.3897/subtbiol.26.26643
Figure 4 Variability in the correlation between eye and pigment may suggest introgression between the surface morph and the cave morph as evidenced by the presence of individuals that are highly depigmented, and without eyes (A) or individuals that are also highly depigmented but with eyes (B). For the other combinations of eye and pigment see Figure 3.
Figure 1 from: Espinasa L, Legendre L, Fumey J, Blin M, Rétaux S, Espinasa M (2018) A new cave locality for Astyanax cavefish in Sierra de El Abra, Mexico. Subterranean Biology 26: 39-53. https://doi.org/10.3897/subtbiol.26.26643
Figure 1 Chiquitita Cave map. The accessible and explored cave system is composed of a pit from which locals pump water out and a small chamber under the roots of a tree. Photographs from left to right are: 1 The pump facility with the pipe going into the pit 2 Descending into the pit 3 Entrance to the small chamber under the tree.
Figure 6 from: Espinasa L, Legendre L, Fumey J, Blin M, Rétaux S, Espinasa M (2018) A new cave locality for Astyanax cavefish in Sierra de El Abra, Mexico. Subterranean Biology 26: 39-53. https://doi.org/10.3897/subtbiol.26.26643
Figure 6 Fragment of the mitochondrial 16S rRNA. Individuals from Chiquitita Cave have identical sequence to members of the "A" lineage (Chica cave, Pachón cave, Molino cave and Rio Comandante surface river). Members of the "B" lineage (Sabinos cave and Tinaja cave) have 5-6 bp disagreements in this fragment, indicated by red arrows.
Figure 2 from: Espinasa L, Legendre L, Fumey J, Blin M, Rétaux S, Espinasa M (2018) A new cave locality for Astyanax cavefish in Sierra de El Abra, Mexico. Subterranean Biology 26: 39-53. https://doi.org/10.3897/subtbiol.26.26643
Figure 2 Topographic map of El Pujal area, in the southern-most Sierra de El Abra. Overlaid is the line topography of Chica, Cuates and Chiquitita Caves.
Figure 5 from: Espinasa L, Legendre L, Fumey J, Blin M, Rétaux S, Espinasa M (2018) A new cave locality for Astyanax cavefish in Sierra de El Abra, Mexico. Subterranean Biology 26: 39-53. https://doi.org/10.3897/subtbiol.26.26643
Figure 5 Eye histology in one of the fish with most degenerated eyes. A eye capsule. Notice the absence of lens. B retina. Notice the high disorganization of vestigial layers, which are for the most part unrecognizable when compared to surface fish retinal layers.
Figure 3 from: Espinasa L, Legendre L, Fumey J, Blin M, Rétaux S, Espinasa M (2018) A new cave locality for Astyanax cavefish in Sierra de El Abra, Mexico. Subterranean Biology 26: 39-53. https://doi.org/10.3897/subtbiol.26.26643
Figure 3 High variability in the eye and pigmentation level within the population inhabiting Chiquitita Cave. A eye size reduced B pupil closed C in the foreground a troglomorphic fish with reduced and embedded eyes and in the background a pigmented fish with large eyes D eyes and pigment mostly absent. Black arrow highlights pigmented cells in some troglomorphic fish and yellow arrow highlights fragmentation of the suborbital bone III.
Text-fig. 2. Caryanthus sp., no. F03286, locality Zliv-Řídká Blana A – Inflorescence, three bisexual flowers / fruits, central flower inserted slightly higher than the two lateral ones, scale bar 0.5 mm; B – Lateral flowers arranged at an angle of about 45˚ relative to each other, hp. – hypanthium with grooves, scale bar 0.5 mm; C – Epidermal cells of hypanthium, scale bar 0.1 mm; D – Detail of epidermal cells, scale bar 50 µm; E – Lateral flower, basal parts of six filaments and basal parts of two anthers styles, f – filaments, s – styles, scale bar 0.3 mm; F – Central flower, scale bar 0.3 mm; G – Stoma, scale bar 30 µm. in A New Record Of The Genus Caryanthus From The Cretaceous Of South Bohemia (Czech Republic)
Text-fig. 2. Caryanthus sp., no. F03286, locality Zliv-Řídká Blana A – Inflorescence, three bisexual flowers / fruits, central flower inserted slightly higher than the two lateral ones, scale bar 0.5 mm; B – Lateral flowers arranged at an angle of about 45˚ relative to each other, hp. – hypanthium with grooves, scale bar 0.5 mm; C – Epidermal cells of hypanthium, scale bar 0.1 mm; D – Detail of epidermal cells, scale bar 50 µm; E – Lateral flower, basal parts of six filaments and basal parts of two anthers styles, f – filaments, s – styles, scale bar 0.3 mm; F – Central flower, scale bar 0.3 mm; G – Stoma, scale bar 30 µm.
Figure 1 in New locality record for Podarcis siculus hieroglyphicus (Berthold, 1842) (Squamata: Lacertidae) in the western Black Sea region of Anatolia
Figure 1. Distribution of Podarcis siculushieroglyphicus in Turkey, showing the known distribution according to the literature, with a star for the new locality. Data from Bird (1936), Bodenheimer (1944), Başoğlu and Baran (1977), Çevik (1999), Uğurtaş et al. (2000), Hür et al. (2008), and Mollov (2009).
Text–fig. 1. Map of the Anti-Atlas area (Morocco) with the sampled locality in the Zagora region (marked with a black star) (after Gutiérrez-Marco et al. 2003, and Sumrall and Zamora 2011). Key: a, Precambrian and Palaeozoic rocks; b, Ordovician rocks; c, post-Palaeozoic cover. in Pauxillites Thaddei A New Lower Ordovician Hyolith From Morocco
Text–fig. 1. Map of the Anti-Atlas area (Morocco) with the sampled locality in the Zagora region (marked with a black star) (after Gutiérrez-Marco et al. 2003, and Sumrall and Zamora 2011). Key: a, Precambrian and Palaeozoic rocks; b, Ordovician rocks; c, post-Palaeozoic cover.
Figure. Map of Georgia with main administrative divisions delimited. Shade intensity indicates the richness of mayfly species for respective administrative unit. Dots indicate localities sampled for mayflies prior to this study. in The first annotated checklist of mayflies (Ephemeroptera: Insecta) of Georgia with new distribution data and a new record for the country
Figure. Map of Georgia with main administrative divisions delimited. Shade intensity indicates the richness of mayfly species for respective administrative unit. Dots indicate localities sampled for mayflies prior to this study.
Figure 5 in Nikolaj Livanow's historical collection sheds new light on potential local extinctions and host association in Hirudinea
Figure 5. Historical samples of Hirudo medicinalis Linnaeus, 1758 (lot EEZM 406-407 "Kazan. E. Meyer, 1891") and Glossiphonia grubei (Lukin & Epshtein, 1959) (lot EEZM 397 "Lake Baikal (Maloe More [Strait]). V. Garjaew, 1899"). (a) H. medicinalis (specimen No 1; dorsal view). (b) H. medicinalis (specimen No 2; ventral view). (c) G. grubei (dorsal view). Scale bar = 10 mm. Photo: A. V. Bespyatykh.
Fig. 2 in Thorius narismagnus (Amphibia: Plethodontidae): rediscovery at the type locality and detection of a new population
Fig. 2. Habitat in the Volcán San Martín locality (A) and a specimen (C) collected from it in life (CARIE 0857). Habitat in the Volcán Santa Marta locality (B) and a specimen (D) collected from it in life (CARIE 1251).
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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.