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211 results for “Syria”
Fig. 18 in Revision of the Andrena (Micrandrena) tiaretta group: redescription of A. tiaretta WARNCKE, 1974 and description of two new species (A. cyrenaica nov.sp. and A. orientalis nov.sp.) demarcating the central and eastern part of the range (Libya, Israel, Syria)
Fig. 18: Andrena tiaretta s.str. (male) from Algeria, OLML 112; Fig. 19: A. orientalis nov.sp. (male) from Israel, OLML 125; Fig. 20: A. cyrenaica nov.sp. (male) from Lybia, OLML 128; (a) head frontal view; (b) dorsal view mesoscutum, scutellum, postscutellum, propodeum. Photos L. Haitzinger.
Fig. 15 in Revision of the Andrena (Micrandrena) tiaretta group: redescription of A. tiaretta WARNCKE, 1974 and description of two new species (A. cyrenaica nov.sp. and A. orientalis nov.sp.) demarcating the central and eastern part of the range (Libya, Israel, Syria)
Fig. 15: Andrena tiaretta s.str. (male) from Algeria, OLML 112. Fig. 16: A. orientalis nov.sp. (male) from Israel, OLML 125. (a) dorsal view; (b) labels. Fig. 17: A. cyrenaica nov.sp. (male) from Lybia, OLML 128. (a) dorsal view; (b) labels. All specimens deposited in the 'Biology Centre of the Upper Austrian Provincial Museum Linz' (Austria). Photos L. Haitzinger.
Fig. 7 in Revision of the Andrena (Micrandrena) tiaretta group: redescription of A. tiaretta WARNCKE, 1974 and description of two new species (A. cyrenaica nov.sp. and A. orientalis nov.sp.) demarcating the central and eastern part of the range (Libya, Israel, Syria)
Fig. 7: Andrena tiaretta s.str. (female) from Morocco, OLML 110; Fig. 8: A. orientalis nov.sp. (female) from Israel, OLML 116; Fig. 9: A. cyrenaica nov.sp. (female) from Lybia, OLML 120; (a) tibia, metatarsus, tarsi 2, 3, tibial scopa; (b) dorsal view mesoscutum. Photos L. Haitzinger.
Fig. 4 in Revision of the Andrena (Micrandrena) tiaretta group: redescription of A. tiaretta WARNCKE, 1974 and description of two new species (A. cyrenaica nov.sp. and A. orientalis nov.sp.) demarcating the central and eastern part of the range (Libya, Israel, Syria)
Fig. 4: Andrena tiaretta s.str. (female) from Morocco, OLML 110; Fig. 5: A. orientalis nov.sp. (female) from Israel, OLML 116; Fig. 6: A. cyrenaica nov.sp. (female) from Lybia, OLML 120; (a) head frontal view; (b) dorsal view mesoscutum, scutellum, postscutellum, propodeum. Photos L. Haitzinger.
Fig. 1 in Revision of the Andrena (Micrandrena) tiaretta group: redescription of A. tiaretta WARNCKE, 1974 and description of two new species (A. cyrenaica nov.sp. and A. orientalis nov.sp.) demarcating the central and eastern part of the range (Libya, Israel, Syria)
Fig. 1: Andrena tiaretta s.str. (female) from Morocco, OLML 110. Fig. 2: A. orientalis nov.sp. (female) from Israel, OLML 116. (a) dorsal view; (b) labels. Fig. 3: A. cyrenaica nov.sp. (female) from Lybia, OLML 120. (a) dorsal view; (b) labels. All specimens deposited in the 'Biology Centre of the Upper Austrian Provincial Museum Linz' (Austria). Photos L. Haitzinger.
Figs 9-10 in A new species of Stenus from Syria and additional records of the genus from the Middle East (Coleoptera, Staphylinidae, Steninae)
Figs 9-10: Stenus rutilans: (9) aedeagus in dorsal view; (10) apical part of male sternite IX. Scale bars: 0.1 mm.
Figs 1-8 in A new species of Stenus from Syria and additional records of the genus from the Middle East (Coleoptera, Staphylinidae, Steninae)
Figs 1-8: Stenus scoupyi (1-6) and S. aequus (7-8): (1) habitus; (2-3, 7-8) aedeagus in dorsal view; (4) male sternite IX; (5) valvifer; (6) spermatheca. Scale bars: 1: 1.0 mm; 2-8: 0.1 mm.
Figure 1 in First record of two insects preying on the red tomato spider mite Tetranychus evansi (Acari: Tetranychidae) in Latakia governorate, Syria
Figure 1 Life stages ofStethorus gilvifrons feeding on all developmental stages ofTetranychus evansi: A – Larva feeding on adult; B – Pupa; C – Adult feeding on eggs; D – Adult feeding on nymph.
Pre-seismic Sentinel-1 PSI surface motion measurements for the area affected by the February 2023 Türkiye–Syria earthquakes
<p>We have processed Copernicus Sentinel-1A data from 01/2019 to 01/2023 (descending track 21) over the broader area (approx. 48400 sq. km) affected by February 6, 2023, M7.8 and M7.5 earthquakes in Türkiye and Syria, utilizing the SNAPPING Persistent Scatterers Interferometry (PSI) medium resolution service of the Geohazards Exploitation Platform (GEP; <a href="https://geohazards-tep.eu">https://geohazards-tep.eu</a>).</p> <p>Measurements contain average Line-of-Sight (LoS) velocities, corresponding uncertainties, and the complete displacement time series. Please note that the original dataset of about 2M point measurements was split into parts, each containing 200k points, to facilitate easier manipulation and visualization.</p> <p>References</p> <p>[1] Foumelis, M.; Delgado Blasco, J.M.; Brito, F.; Pacini, F.; Papageorgiou, E.; Pishehvar, P.; Bally, P. SNAPPING Services on the Geohazards Exploitation Platform for Copernicus Sentinel-1 Surface Motion Mapping. Remote Sens. 2022, 14, 6075. <a href="https://doi.org/10.3390/rs14236075">https://doi.org/10.3390/rs14236075</a></p> <p>[2] SNAPPING – Surface motioN mAPPING Sentinel-1 on-demand processing service, Online tutorial, <a href="https://docs.terradue.com/geohazards-tep/tutorials/Snapping.html">https://docs.terradue.com/geohazards-tep/tutorials/Snapping.html</a>.</p>
Initial Observations for the Destructive Earthquake Doublet of 6 February 2023 in South-Central Türkiye and Northwestern Syria
<p>This dataset is provided as supplementary material to the published paper "The Destructive Earthquake Doublet of 6 February 2023 in South-Central Türkiye and Northwestern Syria : Initial Observations and Analyses" (<em>The Seismic Record</em>, <a href="https://urldefense.com/v3/__https://doi.org/10.1785/0320230007__;!!Nmw4Hv0!3WB4F-6tmOGbOLPRhUkYZ-WFKNU4M33J2_WUvxmcPRrhpgtBblHGGJ3fuNm4hfSUm8zjvwBesiBCkWRMBKGM93LqEmPAUVL8FqE$">https://doi.org/10.1785/0320230007</a>).</p> <p>Included here are: the coordinates of the surface rupture used for modeling, and the preliminary three-dimensional coseismic surface displacements field (east-west, north-south, and vertical) derived via pixel-offset tracking of Sentinel-1 SAR images.</p> <p>The ascii-file “fault_trace_for_modeling.txt” includes longitude and latitude coordinates of the rupture trace.<br> The matlab-file ENU_Turkiye_S1.mat includes<br> enu: the east, north, and vertical displacement components<br> coor: the coordinate information for the enu matrix<br> fault: the coordinate of surface ruptures mapped from the SAR-pixel offset tracking result<br> mask: indicates the area for which the 3D displacements are plausible near the Golbasi basin due to the possible existence of water</p> <p>Original Sentinel-1 SAR images are available via the Copernicus hub at <a href="https://urldefense.com/v3/__https://scihub.copernicus.eu__;!!Nmw4Hv0!3WB4F-6tmOGbOLPRhUkYZ-WFKNU4M33J2_WUvxmcPRrhpgtBblHGGJ3fuNm4hfSUm8zjvwBesiBCkWRMBKGM93LqEmPA9j-Kbj8$">https://scihub.copernicus.eu</a>. The coseismic 3D surface displacements are preliminary results, and further improvements by incorporating ALOS-2 data and inspecting local regions are ongoing. The surface rupture traces used for modeling are mapped based on the SAR-pixel offset tracking result as well as the geomorphology alongside.</p> <p>Date submitted: June 3, 2023</p>
Figure 9 in Carnivores of Syria
Figure 9. Striped hyaena, Hyaena hyaena (Linnaeus, 1758).
Figure 6 in Carnivores of Syria
Figure 6. Beech marten or Stone marten, Martes foina (Erxleben, 1777).
Figure 5 in Carnivores of Syria
Figure 5. Marbled polecat, Vormela peregusna (Gueldenstaedt, 1770).
Figure 3 in Carnivores of Syria
Figure 3. Red fox, Vulpes vulpes Linnaeus, 1758.
Figure 2 in Carnivores of Syria
Figure 2. Wolf, Canis lupus Linnaeus, 1758.
FIGURE 6 in Survey Of Phytoseiid Mite Species (Acari: Phytoseiidae) In Citrus Orchards In Lattakia Governorate, Syria
FIGURE 6: Macroseta on the basitarsus of the leg IV of the female of Typhlodromus (Anthoseius) thesbites.
FIGURE 7 in Survey Of Phytoseiid Mite Species (Acari: Phytoseiidae) In Citrus Orchards In Lattakia Governorate, Syria
FIGURE 7: Relative abundance of phytoseiid mite species on citrus trees in the sites considered in Lattakia governorate, Syria, based on samples collected in 2011-2012.
FIGURE 1 in Some new records of spider mites (Acari, Tetranychidae) from Syria
FIGURE 1: Male aedeagus of (a) Eotetranychus carpini, (b) Eotetranychus hirsti and (c) Amphitetranychus viennensis.
Figure 2 in Tenuipalpidae and Tetranychidae (Trombidiformes, Tetranychoidea) from Syria with a description of a new species of Bryobia
Figure 2 Bryobia hadizenin. sp, female: A – propodosomal lobes and detail of granulated integument
Figure 1 in Tenuipalpidae and Tetranychidae (Trombidiformes, Tetranychoidea) from Syria with a description of a new species of Bryobia
Figure 1 Bryobia hadizenin. sp, female, dorsal aspect. Scale bar = 100 μm.
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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.