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204 results for “United Arab Emirates”
National Checklists 2017: United Arab Emirates Species List
Lists of taxa for each country and a few other administrative zones harvested from effechecka using simplified versions of geonames polygons. See <p></p>https://github.com/diatomsRcool/checklists for details<p></p>A list of species from United Arab Emirates collected using effechecka and geonames polygons
National Checklists 2019: United Arab Emirates Species List
Lists of taxa for each country and a few other administrative zones harvested from effechecka using simplified versions of geonames polygons. See <p></p>https://github.com/diatomsRcool/checklists for details.<p></p>A list of species from United Arab Emirates collected using effechecka and geonames polygons
Virome diversity of Hyalomma dromedarii ticks collected from camels in the United Arab Emirates
<p>Viruses are important components of the microbiome of ticks. Ticks are capable of transmitting several serious viral diseases to humans and animals. Hitherto, the composition of viral communities in <em>Hyalomma dromedarii</em> ticks associated with camels in the United Arab Emirates (UAE) remains unexplored. The purpose of this study was to characterize the RNA virome diversity in male and female <em>H. dromedarii</em> ticks collected from camels in Al Ain, UAE.<strong> </strong>We collected ticks, extracted and sequenced RNA, using Illumina (NovaSeq 6000) and Oxford Nanopore (MinION).<strong> </strong>From the total generated sequencing reads, 180,559 (~0.35 %) and 197,801 (~0.34 %) reads were identified as virus-related reads in male and female tick samples respectively. Taxonomic assignment of the viral sequencing reads was accomplished based on bioinformatic analyses. Further, viral reads were classified into 39 viral families. Poxiviridae, Phycodnaviridae, Phenuiviridae, Mimiviridae, and Polydnaviridae were the most abundant families in the tick viromes. Notably, we assembled the genomes of three RNA viruses, which were placed by phylogenetic analyses in clades that included the Bole tick virus.<strong> </strong>Overall, this study attempts to elucidate the RNA virome of ticks associated with camels in the UAE and the results obtained from this study improve the knowledge of the diversity of viruses in <em>H. dromedarii</em> ticks.</p>
Figure 4. Callytron monalisa. A in Increasing knowledge of the entomological fauna of the United Arab Emirates and the role of private collections
Figure 4. Callytron monalisa. A living specimen of Callytron monalisa, one of two specimens collected by B. Howarth in 2007 on Reem Island, Abu Dhabi. This rare species is known only from the Iranian side of the Arabian Gulf (photograph by D. Gardner).
Figure 2. The jewel beetle Pseudocastalia arabica. A in Increasing knowledge of the entomological fauna of the United Arab Emirates and the role of private collections
Figure 2. The jewel beetle Pseudocastalia arabica. A jewel beetle from the JAAENHG Insect Collection; this specimen was originally collected by J. N. B. Brown in Abu Dhabi and kept in the ENHG Collection there (photograph by B. Howarth).
Figure 3 in Increasing knowledge of the entomological fauna of the United Arab Emirates and the role of private collections
Figure 3. The flat-headed borer jewel beetle, Capnodis excisa. This specimen was collected by J. N. B. Brown in the Madam area, UAE; originally in the Abu Dhabi Collection, it is now housed in the JAAEN- HG Insect Collection in Al Ain (photograph by B. Howarth).
Figure 6 in Increasing knowledge of the entomological fauna of the United Arab Emirates and the role of private collections
Figure 6. An unidentified fly from the family Mydidae (photographed by D. Gardner). Whilst Mydidae had been observed in neighbouring Oman, before 2006 no records were known from the UAE.
Figure 1. All 4.683 in Mapping the terrestrial reptile distributions in Oman and the United Arab Emirates
Figure 1. All 4.683 records of terrestrial reptiles in Oman and the UAE. Although the coverage of records remains patchy, there are sufficient records to provide useful distribution information.
Figure 6 in Mapping the terrestrial reptile distributions in Oman and the United Arab Emirates
Figure 6. Non-overlapping and contiguous distributions of two species of sand geckos Stenodactylus slevini and S. leptocosymbotes.
Figure 4 in Mapping the terrestrial reptile distributions in Oman and the United Arab Emirates
Figure 4. The distributions of two endemic lacertids in the genus Omanosaura. Both species are restricted to the Hajar mountains and their distributions overlap broadly.
Fig.4 in A new species of the genus Phytocoris (Heteroptera: Miridae) from the United Arab Emirates
Fig.4. Phytocoris arwa Linnavuori & Al-Safadi, 1993: A – male head and pronotum in dorsal view; B – male head in lateral view; C – pygophore in dorsal view; D – right paramere; E-F – left paramere in different views; G – aedeagus. After LINNAVUORI & AL-SAFADI (1993).
Fig. 5. Phytocoris semicrux Wagner, 1969 in A new species of the genus Phytocoris (Heteroptera: Miridae) from the United Arab Emirates
Fig. 5. Phytocoris semicrux Wagner, 1969: A – male head and pronotum in dorsal view; B – male head in lateral view; C – male antennal segment 1; D – pygophore in dorsal view; E – right paramere; F – spiculum; G – left paramere. After WAGNER (1969).
Fig. 1 in A new species of the genus Phytocoris (Heteroptera: Miridae) from the United Arab Emirates
Fig. 1. Phytocoris sweihanus sp. nov., female holotype. A – habitus; B – dorsal view of head and pronotum.
Fig. 2 in A new species of the genus Phytocoris (Heteroptera: Miridae) from the United Arab Emirates
Fig. 2. Phytocoris sweihanus sp. nov.: A – male head in lateral view; B – pygophore in lateral view; C – triangular lobe on the left side of genital opening, interior view; D – right paramere; E-G – left paramere in different views.
Figures 19-20 in The first record of Orthochirus glabrifrons (Kraepelin, 1903) (Scorpiones: Buthidae) from the United Arab Emirates
Figures 19-20. Localities of Orthochirus glabrifrons in the United Arab Emirates. Figure 19. Wadi Ghulayyil Khun, near Bidiya, Fujairah. Figure 20. Wadi Saham, Fujairah.
Figures 14 in The first record of Orthochirus glabrifrons (Kraepelin, 1903) (Scorpiones: Buthidae) from the United Arab Emirates
Figures 14. Distribution of Orthochirus glabrifrons in Oman and the United Arab Emirates. Red circles: type locality. Blue squair: new locality records.
Figures 15-18 in The first record of Orthochirus glabrifrons (Kraepelin, 1903) (Scorpiones: Buthidae) from the United Arab Emirates
Figures 15-18. Localities of Orthochirus glabrifrons in the United Arab Emirates. Figure 15. Al Aqah, Fujairah. Figure 16. Green Mubazzarah, Al Ain. Figure 17. Wadi Madhab, Fujairah. Figure 18. Environs of Masafi, Ras al-Khaimah.
Figures 2–3 in The first record of Orthochirus glabrifrons (Kraepelin, 1903) (Scorpiones: Buthidae) from the United Arab Emirates
Figures 2–3. Orthochirus glabrifrons, lectotype female, dorsal (2) and ventral (3) views. Scale bar: 10 mm.
Figures 21-22. Orthochirus glabrifrons. Figure 21 in The first record of Orthochirus glabrifrons (Kraepelin, 1903) (Scorpiones: Buthidae) from the United Arab Emirates
Figures 21-22. Orthochirus glabrifrons. Figure 21. United Arab Emirates, Wadi Wurayah NP, Fujairah. Figure 22. Male from the United Arab Emirates, Wadi Saham, Fujairah, in vivo habitus.
Figure 1. Orthochirus glabrifrons, a female from Oman, 30 in The first record of Orthochirus glabrifrons (Kraepelin, 1903) (Scorpiones: Buthidae) from the United Arab Emirates
Figure 1. Orthochirus glabrifrons, a female from Oman, 30 km N of Nizwa, Jabal Akhdar, in vivo habitus.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.