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Figure 2 in A new Norwegian Lemming subspecies from Novaya Zemlya, Arctic Russia

Figure 2. Maximum likelihood (IQ-TREE) phylogeny of Lemmus taxa based on the cytb gene haplotypes. The Novaya Zemlya Lemming (Lemmus lemmus chernovi ssp. nov.) is colored red. The numbers near nodes are ultrafast bootstrap support values/Bayesian posterior probabilities. The red asterisks indicate the putative species-level clades supported by bPTP and sPTP species-delimitation models. The scale bar indicates the branch length. Outgroup taxa (Dicrostonyx torquatus, D. hudsonius, Synaptomys cooperi, and Myopus schisticolor) are not shown.

opencc-by-4.0Mar 2021View details →
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Figure 1 in A new Norwegian Lemming subspecies from Novaya Zemlya, Arctic Russia

Figure 1. Ranges and habitats of the true lemmings (Lemmus). (A) Distribution map of Lemmus taxa. Ranges were digitized based on published data and our records (Table 1). Red circles indicate sampling localities of Novaya Zemlya Lemming (L. lemmus chernovi ssp. nov.): 1 – Malye Karmakuly Polar Station (type locality), 2 – Bezymyannaya Bay (Table 1). The topographic base of the map was created with Natural Earth Free Vector and Raster Map Data (www.naturalearthdata.com). The map was created using ESRI ArcGIS 10 software (www.esri.com/arcgis). (B, C, D) Habitats of Lemmus taxa: (B) Novaya Zemlya Lemming (type locality, Novaya Zemlya), (C) Norwegian Lemming (Kola Peninsula), and (D) Siberian Lemming (Taimyr Peninsula). (Photos: Vitaly M. Spitsyn [B, C] and Natalia A. Zubrii [D])

opencc-by-4.0Mar 2021View details →
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Figure 3 in Complete mitochondrial genome of an Arctic Collared Lemming subspecies endemic to the Novaya Zemlya Archipelago, Russia

Figure 3. Bayesian Inference phylogenetic tree of the concatenated protein coding and rRNA genes based on available mitogenomes of Arctic Collared Lemming Dicrostonyx torquatus. The red font indicates the Novaya Zemlya subspecies D. torquatus ungulatus. The numbers near nodes represent Bayesian Posterior Probabilities (BPP) of MrBayes / Bootstrap Support (BS) values of IQ-Tree. The values above 95% for both BPP/BS are replaced with an asterisk. Outgroup taxa (Dicrostonyx hudsonius and D. groenlandicus) are not shown.

opencc-by-4.0Mar 2021View details →
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Figure 1 in Complete mitochondrial genome of an Arctic Collared Lemming subspecies endemic to the Novaya Zemlya Archipelago, Russia

Figure 1. Morphology of Novaya Zemlya Collared Lemming Dicrostonyx torquatus ungulatus (von Baer, 1841) from Novaya Zemlya Archipelago, Arctic Russia [topotype No. RMBH Lem16]: (A, B) specimen: (A) dorsal view, (B) ventral view; (C, D, E) crania: (C) dorsal view, (D) ventral view, (E) lateral view; (F, G) lower jaw: (F) outer lateral view, (G) inner lateral view; (H, I) molar rows: (H) maxillary, and (I) mandibular. Scale bars = 10 mm. (Photos: Elizaveta A. Spitsyna).

opencc-by-4.0Mar 2021View details →
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Figure 1 in Life in the extreme environment: Structure and species richness of bird assemblages on Yuzhny Island of Novaya Zemlya, Russia

Figure 1. Study region on Yuzhny Island of Novaya Zemlya. (A) Map of Novaya Zemlya. The yellow circle indicates the study region of Yuzhny Island. (B) Detailed map of the study region with the location of counting routes. The shaded area represents the study area (1). The dashed red lines indicate the counting routes (2). The dashed black line indicates the helicopter route (3).

opencc-by-4.0Jan 2021View details →
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Figure 4 in Life in the extreme environment: Structure and species richness of bird assemblages on Yuzhny Island of Novaya Zemlya, Russia

Figure 4. Relative bird species abundance (log10 scale) over habitat patches on Yuzhny Island of Novaya Zemlya. Numbers of (01) – (10) are the codes of the habitat types. Differences between assemblages were all significant (Kruskal-Wallis test: p = 0.003). Images show habitat types; numbers indicate their codes (see Table 2 for detail). (Photos: V. M. Spitsyn).

opencc-by-4.0Jan 2021View details →
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Figure 1 in Molecular data on Phyllodistomum macrocotyle (Digenea: Gorgoderidae) from an intermediate host Dreissena polymorpha (Bivalvia: Dreissenidae) in the Northern Dvina River Basin, Northwest Russia

Figure 1. Map of the study area: A) Geographic position of the research area (red color frame and red color point); B) The Northern Dvina River Basin (red color flags indicate points where zebra mussels infected with Phyllodistomum macrocotyle were found); C) Habitat of zebra mussel, the Yuras River; D) Trematode sporocysts located within the gills of Dreissena polymorpha.

opencc-by-4.0Feb 2021View details →
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Figure 2 in Molecular data on Phyllodistomum macrocotyle (Digenea: Gorgoderidae) from an intermediate host Dreissena polymorpha (Bivalvia: Dreissenidae) in the Northern Dvina River Basin, Northwest Russia

Figure 2. Maximum likelihood phylogeny of Phyllodistomum macrocotyle based on the nuclear dataset (28S rDNA gene fragment). Numbers near nodes are bootstrap support (BS) values of IQ-TREE. Scale bar indicates the branch lengths. The red color indicates our sequence from Northwest Russia.

opencc-by-4.0Feb 2021View details →
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Figure 3 in Life in the extreme environment: Structure and species richness of bird assemblages on Yuzhny Island of Novaya Zemlya, Russia

Figure 3. Species diversity of bird assemblages on Yuzhny Island of Novaya Zemlya. (A) Bi-plot of detrended correspondence analysis (DCA) with supplementary variables, showing the ordination of species and environmental variables. Circles indicate bird species abundance (categorical estimations by using a logarithmic scale, see Table 3), abundances decrease with increasing distance from each point in a unimodal fashion (ter Braak and Smilauer, 2002). Data represent independent samples from various habitats (n = 10). Total variation is 2.44, supplementary variables account for 66.1% (adjusted explained variation is 23.8%). Eigenvalues (lambda) are 0.675, 0.162, 0.069, and 0.025 for first (horizontal), second (vertical), third and fourth axes, respectively. The first two axes explain 34.4% of the variation. The pseudo-canonical correlations of bird abundance and environmental variables for axes 1 and 2 are 0.77 and 0.91, respectively. For an explanation of environmental variables, see Table 4. For abbreviations of species names see Fig. 4. (B) Bi-plot of the same analysis revealing the ordination of species richness over a range of habitats and environmental variables. Circles indicate bird assemblages in primary types of habitats (size of each circle corresponds to the number of bird species). The red numbers near the circles indicate species richness. The black numbers near the circles (01–10) indicate the codes of habitat types (see Fig. 4 and Table 2 for detail).

opencc-by-4.0Jan 2021View details →
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Figures 1−11. 1 in Additions to the Catalogue of Lepidoptera of Omsk Region of Russia. Part 1.

Figures 1−11. 1 – Scopula flaccidaria, Nikolaevka, 7-8.VI.2020 (SKO); 2 – Heterothera serraria, Timshinyakovo, 24- 25.V.2020 (SKO); 3 – Thera juniperata, Keizes, 13.IX.2020 (SKO); 4 – Jankowskia bituminaria, Malyi Atmas, 14- 15.VII.2020 (SKO); 5 – Phigalia pilosaria, Ust-Ishim, 17-18.IV.2020 (SKO); 6 – Macrochilo cribrumalis, Proletarskyi, 1-2.VII.2020 (SKO); 7 – Enterpia picturata, Malyi Atmas, 17-18.VII.2020 (SKO); 8 – Cucullia fuchsiana, Malyi Atmas, 17-18.VII.2020 (KPO); 9 – Arenostola phragmitidis, Omsk, 28.VII.1923 (ZISP); 10 – Clossiana frigga, Loskutovo, upperside (SKO); 11 – Clossiana frigga, Loskutovo, underside (SKO).

opencc-by-4.0Nov 2020View details →
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Figure 5 in Dragonflies from hot springs in Russia with a country-level checklist of species known to occur in geothermal environments

Figure 5. Odonata specimens from geothermal habitats of the Kunashir Island [RMBH]. (A) Mnais costalis, male, 29.vii.2011. (B) M. costalis, male, 29.vii.2011. (C) Anotogaster sieboldii, male, 26.vii.2011. (D) A. sieboldii, female, 24.vii.2011. (E) Orthetrum melania, male, 29.vii.2011. (F) O. melania, female, 29.vii.2011. (G) Sympetrum pedemontanum elatum, male, 26.vii.2011. (H) S. pedemontanum elatum, female, 24.vii.2011. Corresponding labels are presented below each specimen. (Photos: Yu. S. Kolosova).

opencc-by-4.0Sep 2020View details →
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Figure 4 in Dragonflies from hot springs in Russia with a country-level checklist of species known to occur in geothermal environments

Figure 4. Habitats, exuvium, and larva of Odonata in geothermal areas of the Kamchatka Peninsula. (A) Warm pool near the Karymshinsky hot springs, 12 June 2013. (B) Exuvium of Libellula quadrimaculata on the shore of this pool. (C) Lakelet Medvezhie in the Valley of Geysers, 13 August 2014. (D) Larva of Aeshna juncea collected from this lakelet. Scale bar = 2 mm. (Photos: O. V. Aksenova).

opencc-by-4.0Sep 2020View details →
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Figure 2. Hot spring habitats and a in Dragonflies from hot springs in Russia with a country-level checklist of species known to occur in geothermal environments

Figure 2. Hot spring habitats and a live dragonfly on the Kunashir Island. (A) Neskuchensky hot springs, a habitat of Sympetrum pedemontanum elatum, Anotogaster sieboldii, and Orthetrum melania, 26 July 2011. (B) Stolbovsky hot springs, a habitat of Mnais costalis, Anotogaster sieboldii, and Orthetrum melania, 29 July 2011. (C) Male of Orthetrum melania near the Neskuchensky hot springs, 26 July 2011. (Photos: Yu. S. Kolosova [A, C] and O. V. Aksenova [B]).

opencc-by-4.0Sep 2020View details →
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Figure 1 in Dragonflies from hot springs in Russia with a country-level checklist of species known to occur in geothermal environments

Figure 1. Map of sampling localities of Odonata in eastern Russia: Stolbovsky hot springs (1); Neskuchensky hot springs (2); Karymshinsky hot springs (3); and the Valley of Geysers (4).

opencc-by-4.0Sep 2020View details →
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Figure 3 in Dragonflies from hot springs in Russia with a country-level checklist of species known to occur in geothermal environments

Figure 3. Microhabitats in the Neskuchensky hot springs, Kunashir Island, and Odonata larvae collected from this geothermal source. (A) Scheme of microhabitats within the geothermal system with water and ground temperature measurements during the period of 24-26 July 2011 (before heavy monsoon rainfalls). The black symbols indicate collecting sites of Anotogaster sieboldii (circles) and Sympetrum pedemontanum elatum (squares) larvae. The color arrows indicate the oviposion sites of A. sieboldii before (green) and after (red) heavy monsoon rainfalls. (B) Larvae of Anotogaster sieboldii, 26 July 2011. Scale bar = 2 mm. (C) Larvae of Sympetrum pedemontanum elatum, 26 July 2011. Scale bar = 2 mm. (Photos: O. V. Aksenova).

opencc-by-4.0Sep 2020View details →
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Figure 1 in The taxonomic status of Argynnis pallescens Butler, 1873 stat. rev. from Japan and the Kuril Islands (Russia) (Lepidoptera: Nymphalidae)

Figure 1. Maximum likelihood phylogeny of Argynnis species (the subgenus Fabriciana) based on the COI barcode sequence dataset. Numbers near nodes are bootstrap support values. Scale bar on the tree indicates the branch lengths. Outgroup taxa (Melitaea cinxia, Araschnia levana, Issoria lathonia, Brenthis hecate, and Argynnis pandora) are not shown.

opencc-by-4.0Jul 2024View details →
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Figure 2. Argynnis pallescens Butler, 1873 in The taxonomic status of Argynnis pallescens Butler, 1873 stat. rev. from Japan and the Kuril Islands (Russia) (Lepidoptera: Nymphalidae)

Figure 2. Argynnis pallescens Butler, 1873 stat. rev. from Kunashir Island, Russia: A, C) Male; B, D) Female; E) Male genitalia; F) Habitat (meadow along birch forest with Kurile bamboo (Sasa kurilensis)).

opencc-by-4.0Jul 2024View details →
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Figures 5–6. 5 in New results of testing the attractant EFETOV-2 in the Far East of Russia, Siberia and South Africa

Figures 5–6. 5. Russia, Zabaykalskiy Kray, Chita Region, Mogocha District, 34 km NE of Amazar vill. Habitat of Rh. pruni pruni. 6. South Africa, KwaZulu-Natal Province, Giant's Castle Camp. Habitat of P. ochroptera. (All photos by S.A. Knyazev).

opencc-by-4.0Mar 2024View details →
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Figures 1−6 in New subspecies of Oeneis urda Eversmann, 1847 (Lepidoptera, Nymphalidae, Satyrinae) from Irkutsk region, Russia

Figures 1−6. Oeneis urda maranus ssp. nova., adult specimens: 1. Holotype, upperside, male, Russia, Irkutsk reg., Nizhneudinsk distr., Mara station, Uda R., 7−14.06.2006, Vaschenko S. leg.; 2. Paratype, upperside, male, same data; 3. Paratype, upperside, female, same data; 4. Holotype, underside; 5. Paratype, underside, male; 6. Paratype, underside, female, same data.

opencc-by-4.0Mar 2024View details →
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Figures 1–2. 1 in New results of testing the attractant EFETOV-2 in the Far East of Russia, Siberia and South Africa

Figures 1–2. 1. Male of Illiberis kardakoffi (Primorskiy Kray, vic. Anisimovka). 2. Male of Rhagades pruni pruni (Zabaykalskiy Kray, 34 km NE of Amazar).

opencc-by-4.0Mar 2024View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record