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321 results for “Crimea”
Fig. 2 in One Or Two: How Many Species Of The Genus Pyrrhocorax (Passeriformes, Corvidae) Inhabited The Crimea During The Late Pleistocene?
Fig. 2. Locations of bone sites in the Emine-Bair-Khosar Сave on the section (Vremir & Ridush, 2005 modified).
Fig. 3 in One Or Two: How Many Species Of The Genus Pyrrhocorax (Passeriformes, Corvidae) Inhabited The Crimea During The Late Pleistocene?
Fig. 3. Minimal and maximal values, arithmetic mean and standard deviation (SD) for the total length of coracoideum, humerus, ulna, carpometacarpus, femur, tibiotarsus and tarsometatarsus: PP — extant Pyrrhocorax pyrrhocorax (after Tomek & Bochenski, 2000); PGg — extant Pyrrhocorax graculus graculus (after Tomek & Bochenski, 2000); PGv — Pyrrhocorax graculus vetus from the Emine-Bair-Khosar Cave (our data); n — number of specimens.
Fig. 1 in One Or Two: How Many Species Of The Genus Pyrrhocorax (Passeriformes, Corvidae) Inhabited The Crimea During The Late Pleistocene?
Fig. 1. Map showing the Late Pleistocene and Early Holocene cave sites in the Crimean Peninsula yielding the remains of choughs (Pyrrhocorax): 1 — Emine-Bair-Khosar; 2 — Kiik-Koba; 3 — Kosh-Koba; 4 — AdzhiKoba; 5 — Sjuren 1; 6 — Alymivskyi Navis; 7 — Karani-Koba; 8 — Murzak-Koba; 9 — Fat'ma-Koba.
Fig. 5 in One Or Two: How Many Species Of The Genus Pyrrhocorax (Passeriformes, Corvidae) Inhabited The Crimea During The Late Pleistocene?
Fig. 5. Humerus (A) and coracoideum (C) of Pyrrhocorax graculus vetus from Emine-Bair-Khosar compared to respective bones (B, D) of Pyrrhocorax graculus. Arrows indicate a clear edge of the impressio musculus pectoralis (1) and a large tuberculum brachiale (2).
Fig. 4 in One Or Two: How Many Species Of The Genus Pyrrhocorax (Passeriformes, Corvidae) Inhabited The Crimea During The Late Pleistocene?
Fig. 4. Differences in the length of tubular bones of Pyrrhocorax graculus vetus and extant Pyrrhocorax graculus. Data on the remains from France and extant birds follow Mourer-Chauviré (1975). Measurements are presented according to the scheme in Mourer-Chauviré (1975).
Fig. 6 in One Or Two: How Many Species Of The Genus Pyrrhocorax (Passeriformes, Corvidae) Inhabited The Crimea During The Late Pleistocene?
Fig. 6. Measurements of humerus (А) and tarsometatarsus (В) of Pyrrhocorax graculus vetus from the EmineBair-Khosar Cave (Late Pleistocene, Ukraine), Pyrrhocorax graculus from Llonin Cave (Late Pleistocene, Spain) and extant Pyrrhocorax graculus.
Figure 5 in Sexual dimorphism in Pseudopus apodus (Reptilia: Sauria: Anguidae) from the Steppe Crimea
Figure 5. Variability of the head shape in Pseudopus apodus from the Kerch Peninsula, view from above: left column – males, right column – females.
Figures 7–8 in Sexual dimorphism in Pseudopus apodus (Reptilia: Sauria: Anguidae) from the Steppe Crimea
Figures 7–8. Scatterplot of canonical scores computed for dimensions of head and body (7) and indices of body and head proportions (8) of Pseudopus apodus males and females (results of discriminant analysis).
Figure 6 in Sexual dimorphism in Pseudopus apodus (Reptilia: Sauria: Anguidae) from the Steppe Crimea
Figure 6. Variability of the head shape in Pseudopus apodus from the Kerch Peninsula, side view: left column – males, right column – females.
Figures 3–4 in Sexual dimorphism in Pseudopus apodus (Reptilia: Sauria: Anguidae) from the Steppe Crimea
Figures 3–4. Topography of Pseudopus apodus head shields: view from above, body length is 390 mm in male and 385 mm in female (im: intermaxillar (rostral), fr: frontal, pr: parietal, ip: interparietal, oc: occipital, so: supraoculars) (3), side view (im: intermaxillar (rostral), sl: supralabials, fr: frontal, so: supraoculars, na: nasal area, ot: ear aperture) (4).
Figure 2 in Sex inversion in cultivated mussels Mytilus galloprovincialis Lam. (Crimea, Black Sea) under influence of external environmental factors
Figure 2. Sex inversion in females of the cultivated mussel M. galloprovincialis after a one-month-long laboratory experiment and three-months-long conditioning at the mussel-and-oyster farm, 2016–2017.
Fig. 9 in The first record of the Far Eastern grass-carrying wasp Isodontia nigella (F. Smith, 1856) (Hymenoptera: Sphecidae: Sphecinae) from the Crimea
Fig. 9. Dynamics of emergence of Isodontia nigella (F. Smith, 1856) imagines from the
Fig. 8 in The first record of the Far Eastern grass-carrying wasp Isodontia nigella (F. Smith, 1856) (Hymenoptera: Sphecidae: Sphecinae) from the Crimea
Fig. 8. Opened nests of Isodontia nigella (F. Smith, 1856) in reed canes. Scale bar =
Figs 6–7. A in The First Record From Ukraine Of The Spider Monaeses Israeliensis (Aranei, Thomisidae) From The Crimea
Figs 6–7. A female of Monaeses israeliensis: 6 — prosoma, dorsal; 7 — abdomen, ventral.
Fig. 8 in The first record of the Far Eastern grass-carrying wasp Isodontia nigella (F. Smith, 1856) (Hymenoptera: Sphecidae: Sphecinae) from the Crimea
Fig. 8. Opened nests of Isodontia nigella (F. Smith, 1856) in reed canes. Scale bar = 1 cm.
Fig. 1 in Size-At-Age Variability And Sexual Dimorphism Of Morphometric Characteristics In The Late Ontogenesis Of The Marsh Frog, Pelophylax Ridibundus (Anura, Ranidae), From Terrytory Of Crimea
Fig. 1. Measurement system for tailess amphibians according to the standard methods.
Fig. 5 in Abundance And Summer Distribution Of A Local Stock Of Black Sea Bottlenose Dolphins, Tursiops Truncatus (Cetacea, Delphinidae), In Coastal Waters Near Sudak (Ukraine, Crimea)
Fig. 5. Discovery curve as cumulative number of identified dolphins vs. duration of study.
Fig. 3 in Abundance And Summer Distribution Of A Local Stock Of Black Sea Bottlenose Dolphins, Tursiops Truncatus (Cetacea, Delphinidae), In Coastal Waters Near Sudak (Ukraine, Crimea)
Fig. 3. Categories of dorsal fins for photo-identification(a– d, marked; e, f, unmarked).
Fig. 1 in Abundance And Summer Distribution Of A Local Stock Of Black Sea Bottlenose Dolphins, Tursiops Truncatus (Cetacea, Delphinidae), In Coastal Waters Near Sudak (Ukraine, Crimea)
Fig. 1. Area of study in the northern Black Sea.
Fig. 5 in A Redescription Of Pontoppidania Pontica (Acari, Astigmatina, Acaridae) Inhabiting Algal Debris On Seashores Of Black And Azov Seas Of Crimea (Ukraine)
Fig. 5. Pontoppidania pontica, male: 1 — dorsum; 2 — venter.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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