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Figure 6 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 6. Imaginal phenology of Arctia tundrana based on the long-term collection data of 1904-2019 (Bolotov et al. 2015: Table S2; this study: Table 1). Specimens with uncertain collecting dates were excluded from the data set.
Figure 2 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 2. Female specimens of Arctia tundrana. (A) Near Bugrino village, Kolguev Island [locality no. 1; see Fig. 4], 26.vii.2009 [coll. RMBH]. (B) Near Seyakha village, Yamal Peninsula [locality no. 49; see Fig. 4 and 5D], 31.vii.2014 [coll. RMBH]. (C) Agapa River, Taymyr [locality no. 17; see Fig. 4], 12.vii.1976 [coll. ZMMU]. Scale bar = 10 mm. (Photos: Elisaveta A. Spitsyna and Vitaly M. Spitsyn).
Figure 1 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 1. Male specimens of Arctia tundrana. (A) Shokalsky Island [locality no. 48; see Figs. 4 and 5C], 06.viii.2019 [coll. RMBH]. (B) Tareya village, Taymyr [locality no. 12; see Fig. 4], vii.1967 [coll. ZMMU]. (C) Agapa River, Taymyr [locality no. 17; see Fig. 4], 23.vii.1973 [coll. ZMMU]. (D) Kresty village, Taymyr [locality no. 14; see Fig. 4], 12.vii.1976 [coll. ZMMU]. (E) Uelen settlement, Chukotka [locality no. 51; see Fig. 4], 19.vii.1979 [coll. ZMMU]. (F- H) Naukan settlement, Chukotka [locality no. 51; see Fig. 4], 14.vii.1979 [coll. ZMMU]. Scale bar = 10 mm. (Photos: Elisaveta A. Spitsyna and Vitaly M. Spitsyn).
Figure 5 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 5. Habitats of Arctia tundrana in Northeastern Europe (A-B) and Western Siberia (C-D). (A) Bog with lichens, mosses, and cottongrasses near Bugrino village, Kolguev Island [locality no. 1]. (B) Mountain dry willow-grass tundra near Amderma village, Yugor Peninsula [locality no. 2]. (C) Wet tundra, Shokalsky Island [locality no. 48]. (D) Nival grass-herb meadow on a southern slope of a hill near Seyakha village, Yamal [locality no. 49]. The numbers of localities correspond to those in the map (Fig. 4). (Photos: Boris Y. Filippov [A-B], Evgeny S. Babushkin [C], and Natalia A. Zubrii [D]).
Figure 4 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 4. Updated map of Arctia tundrana (Palearctic species) and A. subnebulosa (Nearctic species) occurrences (earlier version of this map is presented in Bolotov et al. 2015: Fig. 1A). The red circles indicate new occurrences of A. tundrana (Table 1). The yellow circles indicate A. tundrana occurrences published by Bolotov et al. (2015). The violet circles indicate occurrences of A. subnebulosa, a Nearctic vicariate of A. tundrana (after Bolotov et al. 2015). The numbers of localities correspond to those in Table 1 (this study) and Table S2 (Bolotov et al. 2015: Online Resource 1).
Figure 3 in New occurrences, morphology, and imaginal phenology of the rarest Arctic tiger moth Arctia tundrana (Erebidae: Arctiinae)
Figure 3. Male paratype of Arctia tundrana [coll. ZMMU]. (A) Dorsal view of the specimen with corresponding labels. The geographic label [in Russian] reads as follows: "Chukotka, Koluchinskaya Bay , Belyak's Sandspit, 17.vii.1988, P. Tomkovitch leg." [locality no. 24; see Fig. 4] (B) Genitalia and aedeagus. (Photos: Vitaly M. Spitsyn).
Figure 4 in The global freshwater bivalve checklist's extension: Freshwater occurrences and phylogenetic position of Galatea clams from West Africa (Venerida: Donacidae)
Figure 4. Shells of Galatea paradoxa from freshwater section of Niger River, Nigeria (sample RMBH biv1086, Yenagoa). Scale bar = 10 mm. (Photos: Ilya V. Vikhrev).
Figure 3 in The global freshwater bivalve checklist's extension: Freshwater occurrences and phylogenetic position of Galatea clams from West Africa (Venerida: Donacidae)
Figure 3. Shells of Galatea schwabi from Sanaga River, Cameroon. (A-B) Topotypes RMBH biv800, Mouanko (lower reaches, slightly brackish section). (C-D) Specimens RMBH biv801, Monatélé (middle reaches, freshwater section). Red arrows show well-developed muscle attachment scars. Scale bar = 10 mm. (Photos: Artem A. Lyubas).
Figure 5 in The global freshwater bivalve checklist's extension: Freshwater occurrences and phylogenetic position of Galatea clams from West Africa (Venerida: Donacidae)
Figure 5. Maximum likelihood (IQ-TREE) phylogeny of Bivalvia (Venerida and Adapedonta) based on the COI gene sequences (Table 1). A Galatea member is dark red. Scale bar indicates the branch lengths (substitutions per site). Black numbers near nodes indicate the ultrafast bootstrap support (BS) values.
Figure 1 in The global freshwater bivalve checklist's extension: Freshwater occurrences and phylogenetic position of Galatea clams from West Africa (Venerida: Donacidae)
Figure 1. Occurrences of Galatea schwabi (red stars) and Galatea paradoxa (light green stars). The locality data is given in Table 2. Freshwater basins are colored as follows: Sanaga (1), Cross (2), Niger (3), and Volta (4). The red dash indicates the Edea Hydroelectric Power Station's dam on the Sanaga River. (Map: Mikhail Y. Gofarov).
Figure 1 in First record of the occurrence of the Chinese pond mussel Sinanodonta woodiana (Lea, 1834) (Bivalvia: Unionidae) in African freshwaters: Oubeira Lake, Algeria
Figure 1. Location of Oubeira Lake in the boundaries of El-Kala National Park (modified from Sarri, 2017).
Figure 3 in First record of the occurrence of the Chinese pond mussel Sinanodonta woodiana (Lea, 1834) (Bivalvia: Unionidae) in African freshwaters: Oubeira Lake, Algeria
Figure 3. Scheme of measurements for S. woodiana from Oubeira Lake (photos by Bensaâd-Bendjedid L.): shell's length (SL), height (SH), and width (SW).
Figure 2 in First occurrence of the mite Litarachna duboscqi Walter, 1925 (Acariformes: Pontarachnidae) in the central Mediterranean Sea
Figure 2. According to the literature, the geographical range of Litarachna duboscqi is herein shown on the map. Black circles are the documented records from the Mediterranean Sea (France, Italy, Croatia, Greece, Turkey), from the Black Sea (Russia, Crimea), and the Atlantic Ocean (Spain, Canary Islands). The red circle is the nodocumented Mediterranean record from Italy (Ligurian Sea sector). The green triangle indicates the first southern Italy record from Sicily Island.
Figure 5 in The occurrence of Otiorhynchus janovskii Korotyaev (Coleoptera: Curculionidae) in the Pleistocene deposits of Khanty-Mansiysky Autonomous Okrug
Figure 5. Distribution map of Otiorhynchus janovskii. Red circles – modern finds, blue rhombuses – the Pleistocene records.
Figure 2 in The occurrence of Otiorhynchus janovskii Korotyaev (Coleoptera: Curculionidae) in the Pleistocene deposits of Khanty-Mansiysky Autonomous Okrug
Figure 2. Otiorhynchus janovskii, associated elytra, Gornopravdinsk, middle Pleistocene. The photo was taken by S.V. Zykov using a TESCAN Vega 3 scanning electron microscope.
Figure 1 in The occurrence of Otiorhynchus janovskii Korotyaev (Coleoptera: Curculionidae) in the Pleistocene deposits of Khanty-Mansiysky Autonomous Okrug
Figure 1. Otiorhynchus janovskii, elytra, Gornopravdinsk, middle Pleistocene: A – associated elytra; B – left elytron. Scale bar is 1 mm.
Figure 4. Otiorhynchus janovskii, habitus. A in The occurrence of Otiorhynchus janovskii Korotyaev (Coleoptera: Curculionidae) in the Pleistocene deposits of Khanty-Mansiysky Autonomous Okrug
Figure 4. Otiorhynchus janovskii, habitus. A – male, paratype, Western Sayan, Krasnoyarskii Krai, B – female, Tyva, Malyi Shivilig River.
Figure 3 in The occurrence of Otiorhynchus janovskii Korotyaev (Coleoptera: Curculionidae) in the Pleistocene deposits of Khanty-Mansiysky Autonomous Okrug
Figure 3. Otiorhynchus janovskii, left elytron, Gornopravdinsk, middle Pleistocene. The photo was taken by S.V. Zykov using a TESCAN Vega 3 scanning electron microscope
Fig. 2 in Parasite species co-occurrence patterns on Peromyscus: Joint species distribution modelling
Fig. 2. Results of variance partitioning for variation in ectoparasite prevalence explained by fixed and random effects for each ectoparasite species (columns). Explained variance presented for the constrained model for deer mice (n = 229 individuals). DM, deer mice; RBV, southern red-backed vole; WJM, woodland jumping mouse; PA, population abundance. Population abundance of small mammal species measured as captures per 100 trap nights. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 7 in Occurrence and characterisation of tongue worms, Linguatula spp., in South Africa
Fig. 7. Scanning electron microscopy of the nymph #8–5 from African buffalo: A) full view of the parasite; B) anterior end of the parasite showing the mouth and hooks; C) location of sensillae; D) right anterior dorsal accessory piece (white box), left anterior dorsal accessory piece (blue box) and annular spines (orange boxes); E & F) tip of the right anterior dorsal accessory piece; G) tip of the right posterior dorsal accessory piece; H) tip of the left anterior dorsal accessory piece; I) tip of the left posterior dorsal accessory piece; J) rows of annular spines on the mid-body region (ventral); K) pore (arrow) and annular spines in mid body region (ventral view); L) posterior end of the parasite (ventral view). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
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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)
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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.