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.
5,547
datasets available to search
ShareScore release 0.7.1
Dataset results
5,547 results for “Turkey”
FIG. 4. — A in Archaeozoological study of a unique Late Neolithic pit from Tepecik-Çiftlik, central Turkey
FIG. 4. — A, location of the pit in Trench 16/L, Layer 3.2c; B, close up photograph of the pit (excavation archive). Scale bar: 50 cm.
FIG. 1 in Phylogenetic relationships of Nyctereutes Temminck, 1838 (Canidae, Carnivora, Mammalia) from early Pliocene of Çalta, Turkey
FIG. 1. — Nyctereutes donnezani from Çalta, central Turkey, early Pliocene. Skull MNHN.F.ACA292, probably belonging to a female individual, in dorsal (A), occipital (B), ventral (C) and right lateral (D) views. Scale bar: 50 mm.
FIG. 3 in Phylogenetic relationships of Nyctereutes Temminck, 1838 (Canidae, Carnivora, Mammalia) from early Pliocene of Çalta, Turkey
FIG. 3. — Nyctereutes donnezani from Çalta, central Turkey, early Pliocene: A-C, right mandible MNHN.F.ACA549 in occlusal (A), labial (B) and lingual (C), views; D-F, right mandible fragment MNHN.F.ACA294 in occlusal (D), labial (E) and lingual (F) views; G-I, right mandible fragment MNHN.F.ACA295 in occlusal (G), labial (H) and lingual (I) views; J, K, left mandible fragment FSL-212806 in lingual (J) and labial (K) views. Scale bar: 50 mm.
FIG. 2 in Phylogenetic relationships of Nyctereutes Temminck, 1838 (Canidae, Carnivora, Mammalia) from early Pliocene of Çalta, Turkey
FIG. 2. — Nyctereutes donnezani from Çalta, central Turkey, early Pliocene. Skull MNHN.F.ACA291, probably belonging to a male individual, in dorsal (A), occipital (B), ventral (C) and right lateral (D) views. Scale bar: 50 mm.
Coseismic ground deformation map for the Mw5.7 20 March, 2019 Acipayam earthquake (Turkey)
<p>This repository contains an interferogram from Sentinel-1 satellite acquired over the Mw5.7 20 March, 2019 Acipayam earthquake (Turkey). This interferogram was obtained by processing Sentinel-1 SAR data with the JPL-developed InSAR Scientific Computing Environment (ISCE) open-source software package.</p> <p>Sentinel-1 descending track 138:</p> <ul> <li>Master image: 11 Mar 2019, identifier: S1A_IW_SLC_1SDV_20190311T040709_20190311T040736_026285_02F00C_6A73</li> <li>Slave image: 23 Mar 2019, identifier: S1A_IW_SLC_1SDV_20190323T040709_20190323T040736_026460_02F67D_EC68</li> </ul> <p>This interferogram was generated for figures in: Jiang, Y., and González, P. J. (2020). "Bayesian inversion of wrapped satellite interferometric phase to estimate fault and volcano surface ground deformation models. " JGR: Solid Earth.</p>
FIG. 10 in A new hyporheic Monchenkocyclops Karanovic, Yoo & Lee, 2012 (Crustacea: Copepoda) from Turkey with special emphasis on antennulary homology
FIG. 10. — Scanning electron micrographs of Monchenkocyclops mehmetadami n. sp., paratype ♂: A, antennule, ventral view; B, C, inset showing detail of modified seta on segment 11 (ancestral segment (XVI) and 12 (ancestral segment XVII), ventral view; D, segment 14 (ancestral segment (XIX-XX), ventral view; E, segment 15 (ancestral segment (XXI-XXIII), ventral view; F, segments 16 and 17, ventral view; G, segment 17, posterior view. Scale bars: A, 10 µm; B, C, 1 µm; D, F, G, 2 µm; E, 4 µm.
FIG. 6. — Monchenkocyclops mehmetadami n in A new hyporheic Monchenkocyclops Karanovic, Yoo & Lee, 2012 (Crustacea: Copepoda) from Turkey with special emphasis on antennulary homology
FIG. 6. — Monchenkocyclops mehmetadami n. sp., holotype ♀: A, urosome, ventral view; B, urosome, dorsal view; C, P6, lateral view; D, furcal ramus, ventral view. Roman numerals indicating terminology proposed by Huys et al. (1996). Symbol: *, indicating insert of seta IV and V. Scale bars: A, B, 100 µm; C, 25 µm, D, 50 µm.
FIG. 1. — Monchenkocyclops mehmetadami n in A new hyporheic Monchenkocyclops Karanovic, Yoo & Lee, 2012 (Crustacea: Copepoda) from Turkey with special emphasis on antennulary homology
FIG. 1. — Monchenkocyclops mehmetadami n. sp.: A, holotype ♀, habitus, dorsal view; B, allotype ♂, habitus, dorsal view; C, holotype ♀, anal somite and furca, dorsal view, setae are indicated by Roman numerals, following Huys et al. (1996). Not all integumental pore and sensilla of the prosomites are drawn as they are extremely difficult to observe even under 100 × magnification, but in general similar to that of M. changi Karanovic, Yoo & Lee, 2012. Scale bars: 50 µm.
Figure 3 in Two new genera, Limnohalacarus and Soldanellonyx (Acari: Halacaridae) in freshwater halacarid mites with additional new records from Turkey
Figure 3. Halacarellus hyrcanus (Viets, 1928) (deutonymph) – A. Idiosoma, dorsal view; B. Idiosoma, ventral view; C. Gnathosoma, ventral view; D. Leg I, medial view; E. H. hyrcanus (protonymph) – E idiosoma, ventral view. Scale bars: A–C 100 µm, D–E 50 µm.
Figure 6. Soldanellonyx monardi Walter, 1919 in Two new genera, Limnohalacarus and Soldanellonyx (Acari: Halacaridae) in freshwater halacarid mites with additional new records from Turkey
Figure 6. Soldanellonyx monardi Walter, 1919 (female) – A. idiosoma, dorsal view; B. idiosoma, ventral view; C. gnathosoma, ventral view and chelicera, lateral view; D. palp, medial view; E. leg I, lateral view; F. Genitoanal plate, deutonymph; G–H. Porohalacarus alpinus (Thor, 1910), deutonymph; G. idiosoma, dorsal view; H. Genitoanal plate. Scale bars: 50 µm.
Figure 4 in Two new genera, Limnohalacarus and Soldanellonyx (Acari: Halacaridae) in freshwater halacarid mites with additional new records from Turkey
Figure 4. Limnohalacarus wackeri (Walter, 1914) (male) – A. Idiosoma, dorsal view; B idiosoma, ventral view; C. reticulation on the plates; D. Gnathosoma, ventral view; E. Palp, lateral view; F. Leg I, medial view. Scale bars: 100 µm.
Figure 3 in A New Subspecies Of Chrysolina Sanguineocincta (Crotch, 1871) From Turkey (Coleoptera: Chrysomelidae: Chrysomelinae)
Figure 3. Aedeagus of holotype of Chrysolina sanguineocincta pinarbasiense subsp. nov., A. Dorsal view, B. Ventral view, C. Lateral view.
Figure 6 in A New Subspecies Of Chrysolina Sanguineocincta (Crotch, 1871) From Turkey (Coleoptera: Chrysomelidae: Chrysomelinae)
Figure 6. Aedeagus in lateral view, A. Chrysolina sanguineocincta pinarbasiense subsp. nov., B. Chrysolina sanguineocincta sanguineocincta (Crotch, 1871), C. Chrysolina sanguineocincta bodemeyeri (Weise, 1910), D. Chrysolina marginata (Linnaeus, 1758).
Figure 2 in A New Subspecies Of Chrysolina Sanguineocincta (Crotch, 1871) From Turkey (Coleoptera: Chrysomelidae: Chrysomelinae)
Figure 2. Habitus of paratype of Chrysolina sanguineocincta pinarbasiense subsp. nov., A. Dorsal view, B. Ventral view, C. Lateral view.
Figure 5 in The biodiversity of the terrestrial malacofauna of Turkey – status and perspectives
Figure 5. The edge of a house wall where the freshwater and the terrestrial gastropods were collected from the excavation area in Catalhöyük archaeological site (Bar-Yosef Mayer and Gümüş 2008).
Figure 6 in The biodiversity of the terrestrial malacofauna of Turkey – status and perspectives
Figure 6. An assemblage of native pulmonate species found at Çatalhüyük (ca. 10.000 y bp). Note the holes in the shells of a small terrestrial snail species on the bottom. They probably were used as a necklace (Bar-Yosef Mayer and Gümüş 2008; Catalhoyuk Research Project Archives, Photographed by Burçin AşkIm Gümüş).
Fig. 3 in A review of Dichorrhinus Desbrochers, 1875 (Coleoptera, Curculionidae) with two new species from Greece and Turkey, and from Cyprus
Fig. 3. Habitat of Dichorrhinus geiseri sp. nov. in May in Ören, Turkey at 2421 m. a. s. l. (photo: P. Białooki).
Fig. 2. A-F in A review of Dichorrhinus Desbrochers, 1875 (Coleoptera, Curculionidae) with two new species from Greece and Turkey, and from Cyprus
Fig. 2. A-F. Ventral view or aedeagus of Dichorrhinus geiseri sp. nov. A. Holotype. B-C. Denizli, Turkey. D-E. Fethyie, Turkey. F. Ören, Turkey. — G-J. Ditto of D. alziari sp. nov. G-I. Potami, Cyprus. J. Holotype. — K-O. Ditto of D. korbi Schilsky, 1911. K-L. Akseki, Turkey. M. Avlanbeli, Turkey. N. Davras, Turkey. O. Tahtali, Turkey. — P, Q. Ditto of D. creticus (Faust, 1889), Crete, Greece. — R-S. Ditto of D. pseudoscythropus Desbrochers, 1875, Sinfeh, Syria. — T-V. Spermatheca. T. D. geiseri sp. nov. U. D. alziari sp. nov. V. D. korbi, holotype.
Fig. 1. A-E. Habitus. F-J in A review of Dichorrhinus Desbrochers, 1875 (Coleoptera, Curculionidae) with two new species from Greece and Turkey, and from Cyprus
Fig. 1. A-E. Habitus. F-J. Head and antennal scape of Dichorrhinus spp., ♂. — A, F. D. alziari sp. nov., holotype. — B, G. D. creticus (Faust, 1889). — C, H. D. geiseri sp. nov., holotype. — D, I. D. korbi Schilsky, 1911. — E, J. D. pseudoscythropus Desbrochers, 1875.
Fig. 5 in A review of Dichorrhinus Desbrochers, 1875 (Coleoptera, Curculionidae) with two new species from Greece and Turkey, and from Cyprus
Fig. 5. Dichorrhinus creticus in April on Cupressus sempervirens, Chora Sfakion, 140 m a. s. l., Crete Island, Greece (photo: C. Germann).
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.