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424 results for “Yemen”
FIGURE 4. Stenasellus taitii n in A new stygobiotic Stenasellus Dollfus, 1897 (Asellota: Stenasellidae) from Socotra Island, Yemen
FIGURE 4. Stenasellus taitii n. sp. Paratype male. a, first pereopod; b, second pereopod; c, third pereopod; d, fourth pereopod; e, fifth pereopod; f, sixth pereopod; g, seventh pereopod. Scales a–g = 100 µm.
FIGURE 3. Stenasellus taitii n in A new stygobiotic Stenasellus Dollfus, 1897 (Asellota: Stenasellidae) from Socotra Island, Yemen
FIGURE 3. Stenasellus taitii n. sp. Paratype male. a, maxillula; b, maxilla; c, maxilliped; d, left mandible; e, mandibular palp; f, right mandible with particular of the incisor process; g, third article of peduncle of antenna; h, antennula; I, antenna. Scales a–h = 100 µm.
Figure 7 in The first vertebrate fossil from Socotra Island (Yemen) is an early Holocene Egyptian fruit bat
Figure 7. Bivariate plot of the examined samples of African and Arabian fruit bats (taxa as in Figure 6): results of the principal component analysis of skull dimensions.
Figure 2 in The first vertebrate fossil from Socotra Island (Yemen) is an early Holocene Egyptian fruit bat
Figure 2. Hoq Cave on Socotra Island (Yemen), (a) current entrance and (b) the location of the calcite flowstone speleothem with the embedded early Holocene Rousettus aegyptiacus remains before removal of the skull (c; arrow points to the skull). Photographs by Kay Van Damme (a), Dirk Van Damme (b) and Peter De Geest (c).
Figure 4. Socotran early Holocene R in The first vertebrate fossil from Socotra Island (Yemen) is an early Holocene Egyptian fruit bat
Figure 4. Socotran early Holocene R. aegyptiacus skull fragments: mandible in (a) dorsal and (b) frontal view; skull in (c) dorsal and (d) ventral view.
Figure 6 in The first vertebrate fossil from Socotra Island (Yemen) is an early Holocene Egyptian fruit bat
Figure 6. Bivariate plot of the examined specimens of African and Arabian fruit bat populations of Myonycteris,Stenonycteris, Epomophorus, Eidolon and Rousettus aegyptiacus (the latter from Egypt, W Africa, S Arabia, E. Africa and the Socotra specimen; measurements in mm). (a) Greatest length of skull (LCr) against the length of upper tooth-row (CM2). (b) Condylobasal length of skull (LCb) against the neurocranium width (LaN). See Supplementary Material for details and full list of the comparative taxa.
Figure 3. Socotran early Holocene R in The first vertebrate fossil from Socotra Island (Yemen) is an early Holocene Egyptian fruit bat
Figure 3. Socotran early Holocene R. aegyptiacus remains embedded in calcite in situ. For the full names of the structures, see under Abbreviations. Photo by Dirk Van Damme.
Figure 5. Socotran early Holocene R in The first vertebrate fossil from Socotra Island (Yemen) is an early Holocene Egyptian fruit bat
Figure 5. Socotran early Holocene R. aegyptiacus, skull viewed laterally from (a) right and (b) left; and mandible in (c) left and (d) right external lateral view.
Figure 8 in The first vertebrate fossil from Socotra Island (Yemen) is an early Holocene Egyptian fruit bat
Figure 8. AMS radiocarbon dating of the Socotran R. aegyptiacus skull fragments and calibration curve.
Figure 1 in The first vertebrate fossil from Socotra Island (Yemen) is an early Holocene Egyptian fruit bat
Figure 1. Locations of (a) the Socotra Archipelago (Yemen) in the western Indian Ocean near the Horn of Africa; (b) Hoq Cave on Socotra Island; and (c) the fruit bat fossil inside Hoq Cave, closest to an alternative fossil entrance leading to the plateau above.
Figure 26 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 26. Trichomyrmex mayri. (a) Body in profile. (b) Head in full-face view, CASENT0746625, AntWeb.org, (Zach Lieberman). (c) Distribution map, blue circles from recent records, red circles from Collingwood et al. (2004).
Figure 23 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 23. Tetramorium simillimum. (a) Body in profile. (b) Head in full-face view, CASENT0746627, AntWeb.org, (Zach Lieberman). (c) Distribution map, blue triangles from recent records, red circles from Collingwood et al. (2004).
Figure 22 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 22. Tetramorium pauper. (a) Body in profile. (b) Head in full-face view, CASENT0746628, AntWeb.org, (Zach Lieberman). (c) Distribution map from recent records.
Figure 21 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 21. Tetramorium lanuginosum. (a) Body in profile. (b) Head in full-face view, CASENT0746619, AntWeb.org, (Zach Lieberman). (c) Distribution map, blue triangles from recent records, red circles from Collingwood et al. (2004).
Figure 20 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 20. Tetramorium caldarium. (a) Body in profile. (b) Head in full-face view, CASENT0264195, AntWeb.org, (Estella Ortega), KSA. (c) Distribution map from Collingwood et al. (2004).
Figure 17 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 17. Pheidole lamellinoda. (a) Body in profile. (b) Head in full-face view, CASENT0907920, AntWeb.org, type (Will Ericson). (c) Distribution map from recent records.
Figure 16 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 16. Monomorium key illustrations: (a) Mesosoma without hairs. (b) Mesosoma with hairs. (c) M. dichroum. (d) Head of M. dichroum. (e) Mesosoma of M. elghazalyi sp. nov. showing deeply impressed metanotal groove.
Figure 13 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 13. Monomorium elghazalyi sp. nov., Paratype worker. (a) body in profile. (b) Head in full-face view, CASENT0746626, AntWeb.org, (Michele Esposito). (c) Distribution map.
Figure 12 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 12. Monomorium dichroum. (a) Body in profile. (b) Head in full-face view, CASENT0746622, AntWeb.org, (Zach Lieberman). (c) Distribution map from recent records.
Figure 9 in Ant fauna (Hymenoptera: Formicidae) of the Socotra Archipelago (Yemen): zoogeography, distribution and description of a new species
Figure 9. Cardiocondyla mauritanica. (a) Body in profile. (b) Head in full-face view, CASENT0263693, AntWeb.org, (Will Ericson), KSA. (c) Distribution map, from recent records.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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