Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
401
datasets available to search
ShareScore release 0.9.0
Dataset results
401 results for “Mongolia new species”
FIGURES 4 5 in Platicrista horribilis, a new species of Tardigrada (Eutardigrada: Hypsibiidae) from Mongolia
FIGURES 4 5. Platicrista horribilis sp. nov. 4, claws of the IV pair of legs (drawn from Phase Contrast Microscope), 5, internal claw of the IV pair of legs (Nomarski Differential Interference Contrast Microscope).
Fig. 2 in A new species of the "condylarth" Hyopsodus from the middle Eocene of the Erlian Basin, Inner Mongolia, China, and its biostratigraphic implications
Fig. 2. Temporal distributions of species of Hyopsodus and Asiohyopsodus from North America and Eurasia based on Archibald (1998) and Tong and Wang (2006). The left column shows the correlation between NALMAs and ALMAs modified from Speijer et al. (2020) and Wang et al. (2019b). The numbers below the vertical bars indicate the range or the mean value for lower molar m2 length in millimeters. Numbers with an asterisk mean that the measurement is taken from a single specimen. The traditional Wasatchian, Bridgerian, and Uintan species of Hyopsodus are discriminated by different grey shading. Abbreviations: A., Asiohyopsodus; ALMA, Asian Land Mammal Age; Clarkfork., Clarkforkian; H., Hyopsodus; NALMA, North American Land Mammal Age.
Fig. 1 in A new species of the "condylarth" Hyopsodus from the middle Eocene of the Erlian Basin, Inner Mongolia, China, and its biostratigraphic implications
Fig. 1. The middle Eocene "condylarth" mammal Hyopsodus arshantensis sp. nov. (A) and Hyopsodus sp. (B) from the Arshanto Formation of the Erlian Basin, Inner Mongolia, China. A. IVPP V 28282 from Chaganboerhe, m1–m2 in occlusal (A1), buccal (A2), and lingual (A3) views; mandible in buccal view (A4). B. IVPP V 28283 from Huheboerhe, mandible in buccal view (B1); m2 and m3 root in occlusal (B2), buccal (B3), and lingual (B4) views.
Fig. 4 in A new species of the "condylarth" Hyopsodus from the middle Eocene of the Erlian Basin, Inner Mongolia, China, and its biostratigraphic implications
Fig. 4. Mandible fragments and teeth for several species of "condylarth" mammal Hyopsodus previously reported from China utilizing µ-CT scanning A, B) and SEM images (C). A. Hyopsodus turpanensis Zhai, 1978 (IVPP V 4355) from the early Eocene Shisanjianfang Formation, Turpan Basin, Xinjiang, China. The left mandible with p2–p3 root, p4 talonid and m1–m3 in occlusal (A1, A2), lingual (A3), and buccal (A4) views, horizontal (A5) and longitudinal (A6) sections. B. Hyopsodus fangxianensis Huang, 1985 (IVPP V 12005) from the early Eocene Youping Formation, Fangxian, Hubei, China. The right mandible with m1–m3 in occlusal (B1), buccal (B2), and lingual (B3) views; cross section at the level of m2 trigonid (B4). C. Hyopsodus huashigouensis Tong, 1989 (IVPP V 7921) from the middle Eocene Üqbulak Formation, Junggar Basin, Xinjiang, China. The right m2 in occlusal (C1), lingual (C2), and buccal (C3) views.
Fig. 3 in A new species of the "condylarth" Hyopsodus from the middle Eocene of the Erlian Basin, Inner Mongolia, China, and its biostratigraphic implications
Fig. 3. Scatter plots of lower molar m1–m2 width (W) versus length (L), and size proportions of Hyopsodus and Asiohyopsodus. m1 (A) and m2 (B) width versus length, and regression lines for width as a function of length in species of Hyopsodus and Asiohyopsodus. Size proportions of m2 versus m1 (C) and m3 versus m2 (D), and regression lines for tooth size as a function of its preceding tooth size in species of Hyopsodus and Asiohyopsodus. Black symbols and lines, Wasatchian, blue symbols and lines, Bridgerian, red symbols represents the middle Eocene Hyopsodus from China, and the green symbols represent the Uintan Hyopsodus from North America. Abbreviation: H., Hyopsodus. (Raw data: SOM, the Supplementary Online Material available at http://app.pan.pl/SOM/app66-Bai_etal_SOM.pdf).
Figs 6–7. 6 in New And Little-Known Species Of Scythridid Moths Collected By Z. Kaszab In Mongolia (Lepidoptera: Gelechioidea, Scythrididae)
Figs 6–7. 6 = Female genitalia of S. bajanlegi sp. n. 7 = Male genitalia of S. gobiensis sp. n. A = uncus-tegumen-gnathos-aedeagus-valvae complex; B = T8 and S8. Scale bars = 0.5 mm
Fig. 3 in New And Little-Known Species Of Scythridid Moths Collected By Z. Kaszab In Mongolia (Lepidoptera: Gelechioidea, Scythrididae)
Fig. 3. Genitalia of S. kaszabi sp. n. Male: A = uncus-tegumen-gnathos-aedeagus-valvae complex; B = T8 and S8; C = uncus and gnathos, lateral view. Female = D. Scale bar = 1 mm
Fig. 5 in New And Little-Known Species Of Scythridid Moths Collected By Z. Kaszab In Mongolia (Lepidoptera: Gelechioidea, Scythrididae)
Fig. 5. Male genitalia of S. bajanlegi sp. n. A = uncus-tegumen-gnathos-aedeagus-valvae complex; B = T8 and S8; C = uncus and gnathos, lateral view, and S. talyniella sp. n. D = T8 and S8; E = uncus and
Fig. 2 in New And Little-Known Species Of Scythridid Moths Collected By Z. Kaszab In Mongolia (Lepidoptera: Gelechioidea, Scythrididae)
Fig. 2. Routes of KASZAB's six expeditions in Mongolia (from KASZAB 1969, modified). I. 15th June–16th July 1963. The first expedition from Ulaanbaatar reached the southern part of the Gobi Desert to the Chinese border and the northern part to Zuun-Chara (KASZAB 1964); II. 10th June–13th July 1964. The second expedition covered the area of the Altay Gobi, the Great Lakes Basin between the Altay Gobi and the Hangay Range, and the ESE region to the Hangay Range (KASZAB 1965); III. 21st July–2nd September 1965. KASZAB organized the third expedition in the eastern Mongolian steppes (KASZAB 1966); IV. 1st June–31st July 1966. The fourth expedition covered the far western regions of Mongolia, through the Hangay Range, the Gobi Altay, Aj Bogd Uul, the Dzungarian Gobi, the Mongol Altay and the Hangay Range again (KASZAB 1967); V. 24th May–30th July 1967. In the fifth expedition Kaszab covered the remote mountainous regions and the stagnant basins of the Transaltay Gobi (KASZAB 1968). VI. 30th May–2nd August 1968. The sixth and last expedition covered the northern and northwestern regions of Mongolia, where woods and high mountainous steppe can be found, as well as the desert depressions of the Great Lakes Basin, reaching the Tolbo Nuur (KASZAB 1969). The localities where the scythridids were found are numbered in succession by date
Fig. 1 in New And Little-Known Species Of Scythridid Moths Collected By Z. Kaszab In Mongolia (Lepidoptera: Gelechioidea, Scythrididae)
Fig. 1. Map of the scythridid collection localities. 1 = Bayan Ula, 20 km ESE, Dornod aimag; 2 = Bogd Ula, Bayanhongor aimag; 3 = Bogdo Ula, Saisan Tolgain Valley, Ulaanbaatar Hot; 4 = Bogdo-Ula Mt., northern slope, Ulaanbaatar Hot; 5 = Darkhan-Tsagaan Ovoo, 60 km ESE of Bayanburd, Bayanhogor aimag; 6 = Khalkh gol, 33 km S, Khalkhyn Gol, Dornod aimag; 7 = Khan-Bogdo, 8 km NNE, Omnogovi; 8 = Khökh Nuur, Dornod aimag; 9 = Mörön, Hövsgöl aimag; 10 = Numurgin Gol, 32 km SE from Sal'khit Mt., Dornod aimag; 11 = Togtohďn Shil, 50 km ESE Ulaan Goom, Uvs aimag; 12 = Ulaanbaatar. Until now, eight Scythris species were found in Mongolia: S. bengtssoni PATOČKA et LIŠKA, 1989 (6); S. felixi BENGTSSON et SUTTER, 1996 (9); S. lvovskyi SINEV, 2001 (12); S. macrourella SINEV, 2001 (1, 3, 10); S. minorella SINEV, 2001 (2, 6, 11); S. nitidella BENGTSSON et LIŠKA, 1996 (5); S. orientella SINEV, 2001 (6, 8); and S. sinevi NUPPONEN, 2003 (7,
Fig. 4 in New And Little-Known Species Of Scythridid Moths Collected By Z. Kaszab In Mongolia (Lepidoptera: Gelechioidea, Scythrididae)
Fig. 4. Male genitalia of S. mongholica sp. n. A = uncus-tegumen-gnathos-aedeagus-valvae complex; B = T8 and S8; C = uncus and gnathos, lateral view. Scale bar = 0.5 mm
Fig. 8 in New And Little-Known Species Of Scythridid Moths Collected By Z. Kaszab In Mongolia (Lepidoptera: Gelechioidea, Scythrididae)
Fig. 8. Male genitalia of S. sachkovi sp. n. A: uncus-tegumen-gnathos-valvae complex; B: T8 and S8; C: aedeagus. Scale bar = 0.5 mm
Figs 9–10. 9 in New And Little-Known Species Of Scythridid Moths Collected By Z. Kaszab In Mongolia (Lepidoptera: Gelechioidea, Scythrididae)
Figs 9–10. 9 = Male genitalia of S. pallidella sp. n.: A = uncus-tegumen-gnathos-aedeagus-valvae complex; B = T8 and S8. 10 = Female genitalia of S. cirra FALKOVITCH. Scale bars = 0.5 mm
Figs. 1-4 in Notes on Hybos Meigen (Diptera: Empididae) in Inner Mongolia with description of a new species
Figs. 1-4. Hybos daqinggouensis sp. nov. (male). 1. Genitalia, dorsal view; 2. right surstylus; 3. lef surstylus; 4. hypandrium, ventral view. Abbreviations: cer = cercus; lepn = lef epandrial lamella; lsur = lef surstylus; repn = right epandrial lamella; rsur = right surstylus. Scale bar = 0.1 mm.
Figure 16 in New data on the distribution of three species of the genus Catocala Schrank in East Kazakhstan and West Mongolia (Lepidoptera: Erebidae)
Figure 16. Habitat of Catocala neglecta: East Kazakhstan Reg., Saur Mts, 853m, 9 km SE of Saryterek vill., Kendyrlik River valley, Karashoky loc., 47°25'51.4924''N 85°16'28.9483''E, 14.X.2023 (photo by T. Smagulov).
Figure 14 in New data on the distribution of three species of the genus Catocala Schrank in East Kazakhstan and West Mongolia (Lepidoptera: Erebidae)
Figure 14. Habitat of Catocala spp.: East Kazakhstan Region, floodplain terrace of Kara-Irtysh River, near Boran village, 409m, 48°0'14.94"N 85°13'0.71"E, 28.VII.2023 (photo by S.V. Titov).
Figure 15 in New data on the distribution of three species of the genus Catocala Schrank in East Kazakhstan and West Mongolia (Lepidoptera: Erebidae)
Figure 15. Habitat of Catocala spp.: Kara-Irtysh river valley, east of the bridge, 10.X.2023 (photo by S.V. Titov).
Figure 11 in New data on the distribution of three species of the genus Catocala Schrank in East Kazakhstan and West Mongolia (Lepidoptera: Erebidae)
Figure 11. Distribution map of Catocala neglecta. Blue dots: previously known localities; red dots: new localities.
Figure 13 in New data on the distribution of three species of the genus Catocala Schrank in East Kazakhstan and West Mongolia (Lepidoptera: Erebidae)
Figure 13. Distribution map of Catocala desiderata. Blue dots: previously known localities; red dots: new localities.
Figure 12 in New data on the distribution of three species of the genus Catocala Schrank in East Kazakhstan and West Mongolia (Lepidoptera: Erebidae)
Figure 12. Distribution map of Catocala repudiata. Blue dots: previously known localities; red dots: new localities.
ScienceDex guides
Understand access before you commit
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.