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Fig. 3 in Circulation Pathways Of Trematodes Of Freshwater Gastropod Mollusks In Forest Biocenoses Of The Ukrainian Polissia
Fig. 3. Three-host life cycle of trematodes: А — second intermediate hosts are aquatic invertebrates; В — second intermediate hosts are amphibiontic invertebrates; С — second intermediate hosts are vertebrates; а — alternation hosts; b — biological structure of helminth fauna.
Fig. 7 in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine
Fig. 7. Micrographs of the outer edge of the inhalant siphon in mussels: 1 — A. cygnea (r. Derevychka); 2 — A. anatina (Lyutsymer lake); 3 — P. complanata (r. Uzh); 4 — S. woodiana (r. Danube). Рис. 7. Микрофотографии наружного края вводных сифонов у беззубок: 1 — A. cygnea (р. Деревичка); 2 — A. anatina (оз. Люцимер); 3 — P. complanata (р. Уж); 4 — S. woodiana (р. Дунай.
Fig. 5 in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine
Fig. 5. The distribution of mussels from four species in the space of canonical variables made by conchological characters. N o t e. Еxtrapolation of specimens distribution on probability level is p <0.05. Рис. 5. Распределение особей четырёх видов беззубок в пространстве канонических переменных, построенных по конхиологическим признакам. П р и м е ч а н и е. Экстраполяция распределения особей проведена на уровне вероятности p <0,05.
Fig. 2 in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine
Fig. 2. UPGMA phenogram of genetic distances (Nei, 1972) between mussel species and populations. N o t e. Aa — A. anatina, Ac — A. cygnea, Pc — P. complanata, Sw — S. woodiana. Riwer systems: 1 — Danube, 2 — r. Tysa, 3 — Upper Dniester, 4 — Lower Dniester, 5 — r. Ingul, 6 — r. Western Bug, 7 — r. Prypyat, 8 — Upper Dnipro, 9 — r. Ros, 10 — r. Psel, 11 — r. Siversky Donets, 12 — r. Salgyr.
Fig. 1 in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine
Fig. 1. Main places of material collection: 1 — r. Danube, 2 — r. Tysa, 3 — Upper Dniester, 4 — Lower Dniester, 5 — r. Ingul, 6 — r. Western Bug, 7 — r. Prypyat, 8 — Upper Dnipro, 9 — r. Ros, 10 — r. Psel, 11 — r. Siversky Donets, 12 — r. Salgyr.
Fig. 4 in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine
Fig. 4. UPGMA phenogram of genetic distances (Tamura et al., 2004, 2011) between specimens of four Anodontinae species made by homologous sequences of two homologous loci (COI and 16S). Рис. 4. UPGMA фенограмма генетических дистанций (Tamura et al., 2004, 2011), построенная по гомологичным последовательностям двух локусов (COI и 16S) между отдельными особями четырёх видов Anоdontinae.
Fig. 3 in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine
Fig. 3. Geographic variation of Mdh-1 locus in P. complanata populations in Ukraine (Mdh-1110 — filled with black, Mdh-1120 — filled with grey).
Fig. 6 in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine
Fig. 6. The umbonal structure of the shell in molluscs from subfamily Anodontinae: 1 — A. cygnea; 2 — A. anatina; 3 — P. complanata; 4 — S. woodiana. Рис. 6. Структура вершины раковины моллюсков подсемейства Anodontinae: 1 — A. cygnea; 2 — A. anatina; 3 — P. complanata; 4 — S. woodiana.
Рис. 3. Географическая изменчивость локуса Mdh-1 в популяциях P. complanata в пределах Украины (Mdh-1110 — заполнение чёрным цветом, Mdh-1120 — серым). in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine
Рис. 3. Географическая изменчивость локуса Mdh-1 в популяциях P. complanata в пределах Украины (Mdh-1110 — заполнение чёрным цветом, Mdh-1120 — серым).
Рис. 2. UPGMA — фенограма генетических дистанций (Nei, 1972) между видами и популяциями двустворчатых моллюсков. П р и м е ч а н и е. Aa — A. anatina, Ac — A. cygnea, Pc — P. complanata, Sw — S. woodiana. Речные системы: 1 — Дунай, 2 — р. Тиса, 3 — Верхний Днестр, 4 — Нижний Днестр, 5 — р. Ингул, 6 — р. Западный Буг, 7 — р. Припять, 8 — р. Верхний Днепр, 9 — р. Рось, 10 — р. Псёл, 11 — р. Северский Донец, 12 — р. Салгир. in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine
Рис. 2. UPGMA — фенограма генетических дистанций (Nei, 1972) между видами и популяциями двустворчатых моллюсков. П р и м е ч а н и е. Aa — A. anatina, Ac — A. cygnea, Pc — P. complanata, Sw — S. woodiana. Речные системы: 1 — Дунай, 2 — р. Тиса, 3 — Верхний Днестр, 4 — Нижний Днестр, 5 — р. Ингул, 6 — р. Западный Буг, 7 — р. Припять, 8 — р. Верхний Днепр, 9 — р. Рось, 10 — р. Псёл, 11 — р. Северский Донец, 12 — р. Салгир.
Fig. 4–7 in A New Species Of Testate Amoebae Of The Genus Difflugia From The Freshwaters Of Azerbaijan (Rhizopoda, Testacea, Difflugiidae)
Fig. 4–7. Difflugia alekperovi sp. n.: 4–5 — LM photographs; 6–7 — SEM photographs. Рис. 4–7. Difflugia alekperovi sp. n.: 4–5 — фотографии, выполненная при помощи световой микроскопии (LM); 6–7 — фотографии, выполненная при помощи электронной микроскопии (SEM).
Fig. 2–3 in A New Species Of Testate Amoebae Of The Genus Difflugia From The Freshwaters Of Azerbaijan (Rhizopoda, Testacea, Difflugiidae)
Fig. 2–3. Water reservoir in Azfilial settlement (2) and Khanbulanchay water reservoir (3), Lenkoran District, Azerbaijan. Рис. 2–3. Общий вид водоёма в посёлке Азфилиал (2) и Ханбуланчайского водохранилища (3), Ленкоранский район Азербайджана.
Fig. 1 in A New Species Of Testate Amoebae Of The Genus Difflugia From The Freshwaters Of Azerbaijan (Rhizopoda, Testacea, Difflugiidae)
Fig. 1. Map showing the location of sampling points on the water reservoir in Azfilial settlement (1) and Khanbulanchay water reservoir (2), Lenkoran District, Azerbaijan. Рис. 1. Карта расположения точек сбора проб на водоёме в посёлке Азфилиал (1) и Ханбуланчайском водохранилище (2), Ленкоранский район Азербайджана.
Fig. 8–28 in A New Species Of Testate Amoebae Of The Genus Difflugia From The Freshwaters Of Azerbaijan (Rhizopoda, Testacea, Difflugiidae)
Fig. 8–28. Species of the genus Difflugia: 8 — Difflugia subaequalis Penard, 1910, general view; 9 — D. subaequalis, apertural view (5–6 after Penard, 1910); 10 — D. lithoplites Penard, 1902, general view; 11 — D. lithoplites, apertural view; 12–13 — D. lithoplites, aperture (7–10 Penard, 1902); 14–15 — D. lithoplites, LM photographs (14–15 after http://www.arcella.nl/difflugia-lithoplites); 16 — D. lebes sphaerica Gauthier-Lièvre et Thomas, 1958, general view; 17 — D. lebes sphaerica, apertural view; 18 — D. lebes masurica Schönborn, 1965, general view (16–18 after Gauthier-Lièvre et Thomas, 1958); 19 — D. geosphaira Ogden, 1991, LM photographs, general view; 20 — D. geosphaira, LM photographs, apertural view (19–20 after http://www.arcella. nl/difflugia-geosphaira); 21 — D. globulosa Dujardin, 1837, general view; 22 — D. globulosa, apertural view (21–22 after Gauthier-Lièvre et Thomas, 1958); 23 — D. globulosa, LM photographs (23 after http://www. arcella.nl/difflugia-globulosa); 24 — D.globularis Wallich, 1864, general view (24 after Beyens, Chardez, 1984); 25 — D. globularis, LM photographs, general view; 26 — D.globularis, LM photographs, apertural view (25–26 after Zapata, Álvarez, Cea, 2002); 27 — D. minuta var. grandis Gauthier-Lièvre et Thomas, 1958, general view; 28 — D. minuta var. grandis, apertural view (27–28 after Gauthier-Lièvre et Thomas, 1958). Рис. 8–28. Виды рода Difflugia: 8 — Difflugia subaequalis Penard, 1910, общий вид; 9 — D. subaequalis, вид устья (8–9 по: Penard, 1910); 10 — D. lithoplites Penard, 1902, общий вид; 11 — D. lithoplites, вид устья; 12–13 — D. lithoplites, устье (10–13 по: Penard, 1902); 14–15 — D. lithoplites, LM фотографии (14– 15 по: http://www.arcella.nl/difflugia-lithoplites); 16 — D. lebes sphaerica Gauthier-Lièvre et Thomas, 1958, общий вид; 17 — D. lebes sphaerica, apertural view; 18 — D. lebes masurica Schönborn, 1965, общий вид (16–18 по: Gauthier-Lièvre et Thomas, 1958); 19 — D. geosphaira Ogden, 1991, LM фотографии, общий вид; 20 — D. geosphaira, LM фотографии, вид устья (19–20 по: http://www.arcella.nl/difflugia-geosphaira); 21 — D. globulosa Dujardin, 1837, общий вид; 22 — D. globulosa, вид устья (21–22 по: Gauthier-Lièvre et Thomas, 1958); 23 — D. globulosa, LM фотографии (23 по: http://www.arcella.nl/difflugia-globulosa); 24 — D. globularis Wallich, 1864, общий вид (24 по: Beyens, Chardez, 1984); 25 — D. globularis, LM фотографии, общий вид; 26 — D. globularis, LM фотографии, вид устья (25–26 по: Zapata, Álvarez, Cea, 2002); 27 — D. minuta var. grandis Gauthier-Lièvre et Thomas, 1958, общий вид; 28 — D. minuta var. grandis, вид устья (27–28 по: Gauthier-Lièvre et Thomas, 1958).
Fig. 2 in Submicroscopic Changes In The Hepatopancreas Of Freshwater Mollusks Infected With Parthenites Of Trematodes Echinoparyphium Aconiatum (Echinostomida) And Plagiorchis Elegans (Plagiorchiida)
Fig. 2. Changes in the cells of the L. stagnalis hepatopancreas acinus with a high degree of invasion with parthenitis: A: Walls of a hepatopancreas acinus of a mollusk infected with E. aconiatum: 1 — collagen fibers; 2 — hepatic cell; 3 — lime cells; 4 — karyorrhexis. (Electronogram ×1000); B: hepatic cells of the hepatopancreas of a mollusk infected with E. aconiatum: 1 — fragments of a destroyed hepatic cell. (Electronogram ×10000); C: Lime cells of the hepatopancreas of the mollusk infected with P. elegans: 1 — interlobular fibrous connective tissue; 2 — hepatic cell; 3 — lime cell. (Electronogram × 6500); D: Cells of the hepatopancreas acinus of the mollusk infected with P. elegans: 1 — hepatic cell; 2 — lime cell. (Electronogram ×15000).
Fig. 1 in Submicroscopic Changes In The Hepatopancreas Of Freshwater Mollusks Infected With Parthenites Of Trematodes Echinoparyphium Aconiatum (Echinostomida) And Plagiorchis Elegans (Plagiorchiida)
Fig. 1. Acinus of L. stagnalis hepatopancreas: A: Cells of L. stagnalis hepatopancreas acinus: 1 — hepatic cell; 2 — lime cell. (Electronogram ×4800); B: Hepatic and lime cells of a L. stagnalis hepatopancreas fragment undamaged by trematode parthenitis: 1 — hepatic cell; 2 — nucleus; 3 — heterochromatin; 4 — pore in the nuclear envelope; 5 — perinuclear space; 6 — the lumen of the acinus; 7 — lime cell; 8 — the nucleus of the lime cell. (Electronogram ×13000).
Fig. 1 in Freshwater Mussels (Mollusca, Bivalvia, Unionidae) Of The Danube River Basin Of Ukraine
Fig. 1. Shells (left side): 1 — U. tumidus (the Stalineshty River, Mamalyga); 2 — U. pictorum (the Stalineshty River, Mamalyga); 3 — U. crassus (the Borzhava River, Vilkhivka); 4 — A. anatina (PMK channel, Vylkove); 5 — A. cygnea (PMK canal, Vylkove); 6 — P. complanata (the Danube River, Lisky); 7 — S. woodiana (the Danube River, Vylkove); 8 — S. woodiana (the Latorytsa River, Solomonove). Scale 10 mm.
Fig. 2 in Symbiont Fauna Of Freshwater Zooplankton In Several Water Bodies Of The Dnipro River Basin
Fig. 2. Symbionts of fresh-water zooplankton: I — Haplocaulus kahlii; J — Haplocaulus epizoicus; K — Rhabdostyla cyclopis; L —Epistylis digitalis; M — Zoothamnium sp.; N — Vorticella lutea; O — Acineta nitocrae; P — Tokophrya actinostyla; Q — eggs of Thermocyclops oithonoides infected by parasitic flagellates Dinema undulaflagellatum; R — Bosmina longirostris filled by Coelosporidium chydoricola.
Fig. 5. The potential distribution map for F in Distribution Of The Freshwater Snail Species Fagotia (Gastropoda, Melanopsidae) In Ukraine According To Climatic Factors. I. Fagotia Esperi
Fig. 5. The potential distribution map for F. esperi in Ukraine under climatic conditions projected for 2050. Captions as in fig. 4, Bu — "Southern Buh".
Fig. 4. The potential distribution map for F in Distribution Of The Freshwater Snail Species Fagotia (Gastropoda, Melanopsidae) In Ukraine According To Climatic Factors. I. Fagotia Esperi
Fig. 4. The potential distribution map for F. esperi in Ukraine under contemporary climatic conditions (black squares represent pixels of 10-minute resolution, predicted to be suitable for the species). Convex polygons are drawn around assumed clusters: N — "northern", Ds — "Dnister", Du — "Danube", Dn — "Dnipro".
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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.