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Figure 9 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 9 SEM micrographs ofPediculaster nidicolus (Mahunka, 1972), phoretic female: A – several females attached to gamasid mite Haemogamasus ambulans (Haemogamasidae), B – one female attached toHaemogamasus ambulans, C – general view dorsally, D – prodorsum, E – general view ventrally, F – prosoma, ventral aspect.
Figure 5 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 5 Pediculaster nidicolus (Mahunka, 1972), phoretic female: A – dorsum of body, B – venter of body. Legs omitted.
Figure 1 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 1 Pediculaster nidicolus (Mahunka, 1972), non-phoretic female: A – dorsum of body, B – venter of body. Legs omitted.
Figure 2 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 2 Pediculaster nidicolus (Mahunka, 1972), non-phoretic female: A – gnathosoma, dorsal aspect, B – gnathosoma and pharyngeal pumps, ventral aspect.
Figure 8 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 8 Phase contrast micrograph ofPediculaster nidicolus (Mahunka, 1972), phoretic female: A – general view dorsally, B – general view ventrally.
Figure 4 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 4 Pediculaster nidicolus (Mahunka, 1972), non-phoretic female: A – left leg III, dorsal aspect, B – left leg IV, dorsal aspect.
Figure 10 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 10 SEM micrographs ofPediculaster nidicolus (Mahunka, 1972), phoretic female: A – gnathosoma, B – metapodosoma, ventral aspect, C – opisthosoma, ventral aspect, D – tibia and tarsus II, dorsal aspect, E – tibiotarsus I, dorsal aspect, F – tibiotarsus I, ventral aspect.
Figure 3 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 3 Pediculaster nidicolus (Mahunka, 1972), non-phoretic female: A – left leg I, dorsal aspect, B – left leg II, dorsal aspect.
Figure 6 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 6 Pediculaster nidicolus (Mahunka, 1972), phoretic female: A – left leg I, dorsal aspect, B –
Figure 7 in First description of phoretic and redescription of non-phoretic females of Pediculaster nidicolus (Mahunka) (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 7 Pediculaster nidicolus (Mahunka, 1972), phoretic female: A – left leg III, dorsal aspect, B – left leg IV, dorsal aspect.
Figure 8 in Two new species of Caligonellidae (Acari: Raphignathoidea) from Western Siberia, Russia
Figure 8 Neognathus sibiriensisn. sp., female: A – gnathosoma, dorsal aspect, B – palptarsus, dorsal aspect, C – subcapitulum.
Figure 10 in Two new species of Caligonellidae (Acari: Raphignathoidea) from Western Siberia, Russia
Figure 10 DIC micrographs ofNeognathus sibiriensisn. sp., female: A – prodorsum and anterior part of hysterosoma, B – gnathosoma, dorsal aspect.
Figure 6 in Two new species of Caligonellidae (Acari: Raphignathoidea) from Western Siberia, Russia
Figure 6 Molothrognathus altaicusn. sp., protonymph: A – idiosomal dorsum, B – idiosomal venter. Striation of soft cuticle not illustrated.
Figure 4 in Two new species of Caligonellidae (Acari: Raphignathoidea) from Western Siberia, Russia
Figure 4 Molothrognathus altaicusn. sp., male: A – idiosomal dorsum, B – idiosomal venter. Striation of soft cuticle not illustrated.
Figure 5 in Two new species of Caligonellidae (Acari: Raphignathoidea) from Western Siberia, Russia
Figure 5 Molothrognathus altaicusn. sp., deutonymph: A – idiosomal dorsum, B – idiosomal venter. Striation of soft cuticle not illustrated.
Text-fig. 2. Map of Partizansk coal basin with early angiosperm localities. a: Severosuchan Formation, Aptian; b: Frentsevka Formation, early-middle Albian. 1 – Novoveselaya village; 2 – 3rd Kamenka River; 3 – Bolshoy Kuvshin; 4 – Andreev Inlet. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia
Text-fig. 2. Map of Partizansk coal basin with early angiosperm localities. a: Severosuchan Formation, Aptian; b: Frentsevka Formation, early-middle Albian. 1 – Novoveselaya village; 2 – 3rd Kamenka River; 3 – Bolshoy Kuvshin; 4 – Andreev Inlet.
Text-fig. 4. Porechye open pit coal mine. a: photography of the Lipovtsy Formation section; b: stratigraphic column, 1 – sandstone, 2 – conglomerate, 3 – coal, 4 – tuff dated by U-Th-Pb geochronology, 5 – siltstone, 6 – mudstone, 7 – palynological samples with angiosperm pollen, 8 – dispersed angiosperm cuticles. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia
Text-fig. 4. Porechye open pit coal mine. a: photography of the Lipovtsy Formation section; b: stratigraphic column, 1 – sandstone, 2 – conglomerate, 3 – coal, 4 – tuff dated by U-Th-Pb geochronology, 5 – siltstone, 6 – mudstone, 7 – palynological samples with angiosperm pollen, 8 – dispersed angiosperm cuticles.
Text-fig. 3. Map of Razdolnaya coal basin with early angiosperm localities. a: Lipovtsy Formation, Aptian; b: Galenki Formation, early-middle Albian. 1 – Porechye coal mine; 2 – Konstantinovka; 3 – Aleksee-Nikolskoe coal mine; 4 – Fedorovsky Rudnik; 5 – Podgorodenka coalfield; 6 – Firsov Cape. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia
Text-fig. 3. Map of Razdolnaya coal basin with early angiosperm localities. a: Lipovtsy Formation, Aptian; b: Galenki Formation, early-middle Albian. 1 – Porechye coal mine; 2 – Konstantinovka; 3 – Aleksee-Nikolskoe coal mine; 4 – Fedorovsky Rudnik; 5 – Podgorodenka coalfield; 6 – Firsov Cape.
Figs 1–3 in The genus Alekhosara Aristov, 2008 from the Upper Permian of Russia is a possible most ancient representative of the suborder Caelifera (Orthoptera)
Figs 1–3. Tegmen of Alekhosara reticulata Aristov, 2008, holotype PIN, No 3700/51; Russia, Orenburg Region, Novo-Aleksandrovka locality; Upper Permian, Severodvinian Stage: 1, 2 – combined photography of part (1) and counterpart (2), 3 – reconstruction.
Fig. 7 in A new species of the genus Hydrobaenus Fries, 1830 (Diptera: Chironomidae) from the Arctic Russia
Fig. 7. Gathering place of Hydrobaenus birulyai sp. n., left – Pay-Khoy Range, nameless stream, a tributary of the Peschanaya River near its estuary; right – Pay-Khoy Range, Amderma River.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.