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903 results for “Middle East”
Map 1 in The Afropselaphus fauna of South Turkey and the Middle East (Coleoptera, Staphylinidae, Pselaphinae)
Map 1: Distribution of Afropselaphus muglanus (black triangle), A. pisidicus (white triangle), A. tenuispinosus (grey triangles), A. wolfi (black stars), A. frederici (white star), A. cilicicus (grey star), A. longispinosus (white circles), A. spoliatus (black circles), A. bispinosus (grey circles), A. clavigeroides (black diamonds), A. assmanni (white diamond), A. aequalis (black square), and A. meybohmi (white square).
Figs 23-28 in The Afropselaphus fauna of South Turkey and the Middle East (Coleoptera, Staphylinidae, Pselaphinae)
Figs 23-28: Afropselaphus trispinosus nov.sp. (23-24), A. bispinosus nov.sp. (25-26) from South Hatay (25) and from Kɪzɪldağɪ (26), A. kizilicus nov.sp. (27), and A. meybohmi nov.sp. (28): aedeagus in dorsal view. Scale bar: 0.1 mm.
Figs 5-8 in The Afropselaphus fauna of South Turkey and the Middle East (Coleoptera, Staphylinidae, Pselaphinae)
Figs 5-8: Afropselaphus wolfi nov.sp. (5), A. pisidicus nov.sp. (6), A. clavigeroides (7), and A. muglanus nov.sp. (8): (5-6) male thorax in ventral view; (7-8) aedeagus in dorsal view. Scale bars: 5-6: 0.5 mm; 7-8: 0.1 mm.
Fig. 4 in New members of the genera Neanura MacGillivray, 1893 and Deutonura Cassagnau, 1979 (Collembola: Neanuridae) from the Middle East
Fig. 4. Deutonura persica sp. nov. A. Ventral chaetotaxy of Abd. III–VI, adult male. B. Ml Di1 of Abd. V. C. Sensillum of Abd. V. Scale bars: A–C = 0.1 mm.
Fig. 2 in New members of the genera Neanura MacGillivray, 1893 and Deutonura Cassagnau, 1979 (Collembola: Neanuridae) from the Middle East
Fig. 2. Neanura deharvengi sp. nov. A. Labrum. B. Ventral chaetotaxy of Abd. II–VI, adult male. C. Ml Di1 of Abd. V. D. Modified chaetae of male ventral organ. E. Sensillum of Abd. V. F. Dorsal chaetotaxy of Abd. IV–VI. Scale bars: A = 0.01 mm; B–F = 0.1 mm.
Fig. 3 in New members of the genera Neanura MacGillivray, 1893 and Deutonura Cassagnau, 1979 (Collembola: Neanuridae) from the Middle East
Fig. 3. Deutonura persica sp. nov. A. Dorsal chaetotaxy of Ant. III–IV. B. Dorsal chaetotaxy of head and Th. C. Apical bulb, ventral view. D. Apical bulb, dorsal view. E. Chaetotaxy of labium. F. Ventral and lateral chaetotaxy of head. G. Dorsal chaetotaxy of Abd. III–VI. H. Labrum. I. Ventral chaetotaxy of Ant. III. Scale bars: A, C–E, H–I = 0.01 mm; B, F–G = 0.1 mm.
Fig. 1 in New members of the genera Neanura MacGillivray, 1893 and Deutonura Cassagnau, 1979 (Collembola: Neanuridae) from the Middle East
Fig. 1. Neanura deharvengi sp. nov. A. Dorsal chaetotaxy of head, Th. and Abd. I. B. Lateral chaetotaxy of head. C. Apical bulb, ventral view. D. Apical bulb, dorsal view. E. Dorsal chaetotaxy of Ant. III–IV. F. Ventral chaetotaxy of Ant. III. Scale bars: A–B, E–F = 0.1 mm; C–D = 0.01 mm.
Report of the Focus Group with Stakeholders in the Middle-East
<p>As part of the MENARA project, the Issam Fares Institute for Public Policy and International Affairs at the American University of Beirut (IFI – AUB) organized a focus group in Beirut (Lebanon) on 2 November 2018 with twelve scholars, experts, civil society leaders and activists from Lebanon and the Arab Middle East. </p> <p>The discussions were linked to the general aims of the MENARA project – characterizing the regional order, defining scenarios and discussing policy options for the EU – and was initially (informally) structured in four parts (though participants themselves were allowed to take the discussion in directions that made sense to them):</p> <p>1. Regional rivalries and new regional order<br> 2. State–society dynamics<br> 3. The role of the EU and other external actors<br> 4. Future scenarios</p> <p>This report contains the summary of the discussion during the focus group.</p>
The Middle East in 2025: Stakeholder's Engagement Meeting Report
<p>On 10 and 11 January 2019, the Istituto Affari Internazionali (IAI), in collaboration with the Near East and South Asia (NESA) Center for Strategic Studies of the United States Department of Defense and the Qatar Armed Forces Strategic Studies Center (QAFSSC), organized the second MENARA Stakeholders’ Engagement Meeting with 32 participants, including representatives of Qatar’s government, academics and experts from Europe, the United States and the Persian Gulf region.</p> <p>The goal of the meeting was among others to discuss and test some of the Project's preliminary findings with regard to the regional order in the Middle East and North Africa (MENA) and the role of the European Union (EU) and other external players in the region with a group of authoritative stakeholders. This report summarizes the discussion during that meeting.</p> <p>This activity is part of the EU research project Middle East North Africa Regional Architecture (MENARA).</p>
Fig. 613 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Fig. 613. Map of the Middle East and North Africa. A country is highlighted with green color indicates that there are available data on aphidiine parasitoids. A country highlighted with red color, indicates that there are no available data on aphidiine parasitoids
Figs 546–562 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 546–562. Lateral aspect of ♀ genitalia: 546. Areopraon lepelleyi. 547. Betuloxys hortorum. 548. Binodoxys acalephae. 549. Binodoxys angelicae. 550. Binodoxys brevicornis. 551. Binodoxys centaureae. 552. Binodoxys heraclei. 553. Diaeretiella rapae. 554. Diaeretus leucopterus. 555. Ephedrus cerasicola. 556. Ephedrus chaitophori. 557. Ephedrus helleni. 558. Ephedrus lacertosus. 559. Ephedrus nacheri. 560. Ephedrus niger. 561. Ephedrus persicae. 562. Ephedrus plagiator.
Figs 581–598 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 581–598. Lateral aspect of ♀ genitalia: 581. Pauesia silana. 582. Pauesia unilachni. 583. Praon abjectum. 584. Praon absinthii. 585. Praon athenaeum. 586. Praon barbatum. 587. Praon bicolor. 588. Praon exsoletum. 589. Praon flavinode. 590. Praon gallicum. 591. Praon longicorne. 592. Praon necans. 593. Praon nonveilleri. 594. Praon orpheusi. 595. Praon pubescens. 596. Praon rosaecola. 597. Praon unitum. 598. Praon uroleucon.
Figs 488–499 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 488–499. Anterolateral aspect of petiole in Aphidius species (♀): 488. Aphidius platensis. 489. Aphidius popovi. 490. Aphidius rhopalosiphi. 491. Aphidius rosae. 492. Aphidius salicis. 493. Aphidius setiger. 494. Aphidius smithi. 495. Aphidius stigmaticus. 496. Aphidius transcaspicus. 497. Aphidius uroleuci. 498. Aphidius urticae. 499. Aphidius uzbekistanicus.
Figs 510–527 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 510–527. Lateral aspect of ♀ genitalia: 510. Aclitus obscuripennis. 511. Adialytus ambiguus. 512. Adialytus salicaphis. 513. Adialytus thelaxis. 514. Adialytus veronicaecola. 515. Aphidius absinthii. 516. Aphidius arvensis. 517. Aphidius asteris. 518. Aphidius avenae. 519. Aphidius banksae. 520. Aphidius cingulatus. 521. Aphidius colemani. 522. Aphidius eadyi. 523. Aphidius eglanteriae. 524. Aphidius ervi. 525. Aphidius funebris. 526. Aphidius hieraciorum. 527. Aphidius iranicus.
Figs 476–487 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 476–487. Anterolateral aspect of petiole in Aphidius species (♀): 476. Aphidius absinthii. 477. Aphidius asteris. 478. Aphidius avenae. 479. Aphidius banksae. 480. Aphidius cingulatus. 481. Aphidius colemani. 482. Aphidius eadyi. 483. Aphidius ervi. 484. Aphidius funebris. 485. Aphidius matricariae. 486. Aphidius microlophii. 487. Aphidius persicus.
Figs 528–545 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 528–545. Lateral aspect of ♀ genitalia: 528. Aphidius matricariae. 529. Aphidius microlophii. 530. Aphidius myzocallidis. 531. Aphidius persicus. 532. Aphidius platensis. 533. Aphidius popovi. 534. Aphidius rhopalosiphi. 535. Aphidius ribis. 536. Aphidius rosae. 537. Aphidius salicis. 538. Aphidius setiger. 539. Aphidius smithi. 540. Aphidius sonchi. 541. Aphidius stigmaticus. 542. Aphidius transcaspicus. 543. Aphidius uroleuci. 544. Aphidius urticae. 545. Aphidius uzbekistanicus.
Figs 450–475 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 450–475. Dorsal aspect of petiole (♀): 450. Praon bicolor. 451. Praon exsoletum. 452. Praon flavinode. 453. Praon gallicum. 454. Praon longicorne. 455. Praon necans. 456. Praon nonveilleri. 457. Praon orpheusi. 458. Praon pubescens. 459. Praon rosaecola. 460. Praon unitum. 461. Praon uroleucon. 462. Praon volucre. 463. Praon yomenae. 464. Toxares deltiger. 465. Trioxys asiaticus. 466. Trioxys cirsii. 467. Trioxys complanatus. 468. Trioxys curvicaudus. 469. Trioxys metacarpalis. 470. Trioxys moshei. 471. Trioxys pallidus. 472. Trioxys pannonicus. 473. Trioxys pappi. 474. Trioxys quercicola. 475. Trioxys tanaceticola.
Figs 500–509 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 500–509. Lateral aspect of hind femur in Adialytus and Lysiphlebus species (♀): 500. Adialytus ambiguus. 501. Adialytus salicaphis. 502. Adialytus thelaxis. 503. Adialytus veronicaecola. 504. Lysiphlebus cardui. 505. Lysiphlebus confusus. 506. Lysiphlebus desertorum. 507. Lysiphlebus fabarum. 508. Lysiphlebus fritzmuelleri. 509. Lysiphlebus testaceipes.
Figs 425–449 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 425–449. Dorsal aspect of petiole (♀): 425. Ephedrus plagiator. 426. Lipolexis gracilis. 427. Lysiphlebus cardui. 428. Lysiphlebus confusus. 429. Lysiphlebus desertorum. 430. Lysiphlebus fabarum. 431. Lysiphlebus fritzmuelleri. 432. Lysiphlebus testaceipes. 433. Monoctonia pistaciaecola. 434. Monoctonia vesicarii. 435. Monoctonus crepidis. 436. Monoctonus mali. 437. Pauesia abietis. 438. Pauesia anatolica. 439. Pauesia antennata. 440. Pauesia cedrobii. 441. Pauesia hazratbalensis. 442. Pauesia picta. 443. Pauesia pini. 444. Pauesia silana. 445. Pauesia unilachni. 446. Praon abjectum. 447. Praon absinthii. 448. Praon athenaeum. 449. Praon barbatum.
Figs 374–399 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 374–399. Dorsal aspect of petiole (♀): 374. Aclitus obscuripennis. 375. Adialytus ambiguus. 376. Adialytus salicaphis. 377. Adialytus thelaxis. 378. Adialytus veronicaecola. 379. Aphidius absinthii. 380. Aphidius arvensis. 381. Aphidius asteris. 382. Aphidius avenae. 383. Aphidius banksae. 384. Aphidius cingulatus. 385. Aphidius colemani. 386. Aphidius eadyi. 387. Aphidius eglanteriae. 388 Aphidius ervi. 389. Aphidius funebris. 390. Aphidius hieraciorum. 391. Aphidius iranicus. 392. Aphidius matricariae. 393. Aphidius microlophii. 394. Aphidius persicus. 395. Aphidius platensis. 396. Aphidius popovi. 397. Aphidius rhopalosiphi. 398. Aphidius ribis. 399. Aphidius rosae.
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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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Annotated Behaviour and Observability Dataset (ABODe)
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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.