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1,258 results for “saudi arabia”
Fig. 4. Lateral habitus. A. Enicospilus nervellator Aubert, 1966. B. E. oculator Seyrig, 1935. C. E in The genus Enicospilus Stephens, 1835 (Hymenoptera, Ichneumonidae, Ophioninae) in Saudi Arabia, with twelve new species records and the description of five new species
Fig. 4. Lateral habitus. A. Enicospilus nervellator Aubert, 1966. B. E. oculator Seyrig, 1935. C. E. odax Gauld & Mitchell, 1978. D. E. oweni Gauld & Mitchell, 1976. E. E. pacificus (Holmgren, 1868). F. E. pallidus (Taschenberg, 1875). G. E. pseudoculator Gadallah & Soliman sp. nov. H. E. rundiensis Bischoff, 1915. Scale bars = 2.5 mm.
Fig. 6 in The genus Enicospilus Stephens, 1835 (Hymenoptera, Ichneumonidae, Ophioninae) in Saudi Arabia, with twelve new species records and the description of five new species
Fig. 6. Anterior view of head. A. Enicospilus arabicus Gadallah & Soliman sp. nov. B. E. bicoloratus Cameron, 1912. C. E. brevicornis (Masi, 1939). D. E. capensis (Thunberg, 1822). E. E. divisus (Seyrig, 1935). F. E. dubius (Tosquinet, 1896).
Figs 20–23. Raunolina spp. 20–22 – R in First record of the genus Raunolina (Hemiptera: Fulgoroidea: Caliscelidae) from tropical Africa with description of two new species from Sudan and Saudi Arabia
Figs 20–23. Raunolina spp. 20–22 – R. circularis (Linnavuori, 1952), holotype. 23 – R. arabica (Gnezdilov & Wilson, 2006). 20 – left wing; 21 – right wing; 22, 23 – head, pro- and mesonotum, dorsal view.
Figs 1–4. Raunolina species, dorsal view. 1–2 – R in First record of the genus Raunolina (Hemiptera: Fulgoroidea: Caliscelidae) from tropical Africa with description of two new species from Sudan and Saudi Arabia
Figs 1–4. Raunolina species, dorsal view. 1–2 – R. remanei sp. nov., paratypes (1 – female; 2 – male); 3 – R. jeddahica sp. nov., holotype; 4 – R. circularis (Linnavuori, 1952), holotype (dissected).
Figs 13–19 in First record of the genus Raunolina (Hemiptera: Fulgoroidea: Caliscelidae) from tropical Africa with description of two new species from Sudan and Saudi Arabia
Figs 13–19. Raunolina remanei sp. nov., holotype, male genitalia. 13 – penis, ventral view; 14 – penis, lateral view; 15 – pygofer, lateral view; 16 – style, lateral view; 17 – capitulum of style, dorsal view; 18 – anal tube, lateral view; 19 – anal tube, dorsal view. Abbreviations: apc – apical part of capitulum of style; phlt – phallobase tooth.
Figs 24–31 in First record of the genus Raunolina (Hemiptera: Fulgoroidea: Caliscelidae) from tropical Africa with description of two new species from Sudan and Saudi Arabia
Figs 24–31. Raunolina jeddahica sp. nov., holotype. 24 – paranotal lobe; 25 – rostrum, lateral view; 26 – penis, lateral view; 27 – penis, caudo-dorsal view; 28 – male anal tube, dorsal view; 29 – style, lateral view; 30 – capitulum of style, dorsal view; 31 – pygofer, lateral view.Abbreviations: apc – apical part of capitulum of style; phlt – phallobase tooth; tc – transverse carina.
Figs 5–12. Raunolina spp. 5–11 – R in First record of the genus Raunolina (Hemiptera: Fulgoroidea: Caliscelidae) from tropical Africa with description of two new species from Sudan and Saudi Arabia
Figs 5–12. Raunolina spp. 5–11 – R. remanei sp. nov., paratypes (5–8 – male; 9–11 – female). 12 – R. arabica (Gnezdilov & Wilson, 2006). 5 – head, pro- and mesonotum, dorsal view; 6 – head and pronotum, lateral view; 7 – head, frontal view; 8 – fore wing; 9 – female anal tube and pygofer, dorsal view; 10, 12 – female genital block, lateral view; 11 – median part of hind margin of female sternite VII, ventral view.
FIGURE 2 in Ankerius aenigmaticus, a new genus and new species of aphanodactylid crab symbiotic with polychaetes from the Red Sea coast of Saudi Arabia (Crustacea: Decapoda: Brachyura: Aphanodactylidae)
FIGURE 2. Ankerius aenigmaticus gen. et sp. nov., female holotype (7.2 × 7.0 mm) (UF), Red Sea coast of Saudi Arabia. A, overall habitus; B, frontal view of cephalothorax; C, ventral view of cephalothorax showing thoracic sternum and vulvae.
FIGURE 5. Buccal cavity and third maxillipeds. A in Ankerius aenigmaticus, a new genus and new species of aphanodactylid crab symbiotic with polychaetes from the Red Sea coast of Saudi Arabia (Crustacea: Decapoda: Brachyura: Aphanodactylidae)
FIGURE 5. Buccal cavity and third maxillipeds. A, Selwynia laevis Borradaile, 1903, holotype male (7.1 × 5.6 mm) (CUMZ I. 63872), Hulule Atoll, Maldives, coll. J. S. Gardiner, 1900; B, Gandoa brevipes (H. Milne Edwards, 1853), female (7.2 × 5.0 mm) (ZSM 1277 / 1) [holotype of Voeltzkowia zanzibarensis Lenz, 1905], Kokotoni, Zanzibar, coll. July 1889; C, Gustavus mecognathus Ahyong & Ng, 2009, paratype female (13.9 × 8.0 mm) (ZRC 2010.0252), SW Cocos Barrier, Guam, near small pass on large terebellid worm, coll. G. Paulay, 20 March 2000; D, Ankerius aenigmaticus gen. et sp. nov., female holotype (7.2 × 7.0 mm) (UF), Red Sea coast of Saudi Arabia.
Figure 1 in Identification key for chewing lice (Phthiraptera: Amblycera, Ischnocera) infesting the Indian Peafowl (Pavo cristatus) with one new country record and new host record for Saudi Arabia
Figure 1. Female Amyrsidea minuta. Normal image on the left and modified image on the right. The modified photo shows the effectiveness of the editing technique, showing small structures and textures of the lice more clearly than the normal one.
Figure 5. a in Identification key for chewing lice (Phthiraptera: Amblycera, Ischnocera) infesting the Indian Peafowl (Pavo cristatus) with one new country record and new host record for Saudi Arabia
Figure 5. a) Mesosternum of Menacanthus kaddoui; b) mesosternum of Menacanthus stramineus; c) hind leg of Colpocephalum spp.; d) dorsal view of VIII and IX segment of Colpocephalum tausi; e) male antenna of Lipeurus pavo; f) male antenna of Goniodes meinertzhageni; g) male antenna of Goniocotes mayuri; h) male antenna of Goniocotes parviceps.
Figs 1–3 in Araboplia lorisi new genus and species of Rutelinae from Saudi Arabia (Coleoptera, Scarabaeidae), with comments on the subtribe Popilliina
Figs 1–3. Araboplia lorisi gen. et sp. nov., habitus. 1. Dorsal view. 2. Ventral view. 3. Lateral view.
Figs 14–17 in Araboplia lorisi new genus and species of Rutelinae from Saudi Arabia (Coleoptera, Scarabaeidae), with comments on the subtribe Popilliina
Figs 14–17. Comparative presentation of the posterior tibia in latero-ventral view. 14. Araboplia lorisi gen. et sp. nov. 15. Dicranoplia deserticola (P.H. Lucas, 1859). 16. Tribopertha aegyptiaca (C.É. Blanchard, 1851). 17. Pharaonus fasciculatus (Burmeister, 1844).
Figs 4–7 in Araboplia lorisi new genus and species of Rutelinae from Saudi Arabia (Coleoptera, Scarabaeidae), with comments on the subtribe Popilliina
Figs 4–7. Araboplia lorisi gen. et sp. nov., ♂, holotype, anatomical details. 4. Head in dorsal view. 5. Head in oblique lateral view. 6. Aedeagus in dorsal view. 7. Aedeagus in lateral view.
Figs 8–13 in Araboplia lorisi new genus and species of Rutelinae from Saudi Arabia (Coleoptera, Scarabaeidae), with comments on the subtribe Popilliina
Figs 8–13. Right forelegs (above) and detail of their claw (below). 8–9. Araboplia lorisi gen. et sp. nov. 10–11. Tribopertha aegyptiaca (C.É. Blanchard, 1851). 12–13. Dicranoplia deserticola (P.H. Lucas, 1859).
Fig. 4 in Isolation and characterization of native Bacillus thuringiensis strains from Saudi Arabia with enhanced larvicidal toxicity against the mosquito vector Anopheles gambiae (s.l.)
Fig. 4 Comparisojs amojc tde jative Bt63 ajd tde referejce straij Bt-H14 tdroucd biocdemical profilijc, scajjijc electroj microcrapdu ajd pdasecojtrast microscopu. Ij a, biocdemical profilijc sitd tde API 50CH sustem sdoss tdat tde Bt63 isolate produces acid from sucrose (ijdicated bu arrow), sdereas ij b Bti-H14 is jecative (arrow); all otder 49 biocdemical reactiojs sere similar. Ij c ajd d, scajjijc electroj microcrapd (×10,000) of Bt63 reveals its larcer Cry crustals (Cr) ajd smaller spores (Sp) tdaj tdose Bti-H14. Ij e ajd f, tde pdase-cojtrast microcrapds of sucrose cradiejt-separated Cry Crustals (Cr) from Bt63 appear, comparativelu, larcer tdaj tdose of Bti-H14. Scale-bars: c, d, 1 μm; e, f, 10 μm
Fig. 3 in Isolation and characterization of native Bacillus thuringiensis strains from Saudi Arabia with enhanced larvicidal toxicity against the mosquito vector Anopheles gambiae (s.l.)
Fig. 3 SDS-PAGE profiles of sdole parasporal crustals/spores mixtures. a Profiles after dissolutioj of proteij crustals at alkalije pH (10.5–11). b Profiles follosijc pH-jeutralizatioj. c Profiles after trupsij-treatmejt (silver staij). Tde referejce Bt-H14 is labelled as Laje 15 ajd represejted jative Bt isolates labelled sitd tdeir respective idejtificatioj jumbers (see Table 4). Lajes M: proteij molecular mass markers (245 to 11 kDa). Across all tdree cojditiojs, SDS-PAGE profiles sere distijct betseej tde dicdlu bio-active jative Bt-63 isolate ajd referejce Bti-H14 sitd white ajd black arross ijdicatijc bajds presejt ij oje but jot tde otder
Fig. 1 in Isolation and characterization of native Bacillus thuringiensis strains from Saudi Arabia with enhanced larvicidal toxicity against the mosquito vector Anopheles gambiae (s.l.)
Fig. 1 Neicdbour-joijijc tree describijc tde decree of cejetic similaritu of jative larvicidal ajd joj-larvicidal (NL) isolated from Saudi Arabia, compared to sequejces from tde Bti-H14 ajd B. cereus referejce straij. Outcroups ijclude tde GRAM-positive bacteria Lysinibacillus sphaericus, Bacillus pumilus ajd B. megatorium. Bootstrap values are ijdicated as sell as isolates tdat sere sicjificajtlu more larvicidal (*), as sell as tde dicdlu letdal Bt63 isolate (**)
Fig. 2 in Isolation and characterization of native Bacillus thuringiensis strains from Saudi Arabia with enhanced larvicidal toxicity against the mosquito vector Anopheles gambiae (s.l.)
Fig. 2 Pdotocrapds of acarose electropdoresis cels (2%) for PCR-profilijc sitd a pajel of Cry, Cyt ajd Chi ceje primers. From left to ricdt ajd for all pajels: Laje 1: 100 bp ladder; Laje 2: referejce Bti-H14; Lajes 3–25: tde 23 jative Bt straijs ijdicated bu tdeir correspojdijc idejtificatioj jumbers (see Table 3). Ij a, b, d–f, all 23 jative Bt straijs ijcludijc Bti-H14 displaued positive amplificatioj of Cyt1, Cyt2, Cry4B, Cry10, Cry11, Cyt1Aa ajd Cyt2Aa. Ij c, all straijs sere positive for Cry4A except Bt63. Ij g, all Bt straijs sere PCR jecative for Chi ceje except Bt-12 ajd 55; sdereas all Bt straijs sere PCR positive for Cyt1Ab ceje, except tde jative isolates coded 67, 60, 63, 56 ajd 16
Figure 1 in Survey of Portulacaceae family flora in Taif, Saudi Arabia
Figure 1. Map of location for six areas in Taif city (Saudi Arabia). Table 1. Areas of study and their elevation.
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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.