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301 results for “170”
Figs. 169–171. Coronilla gemata Wang, female. 169. Carapace, front view. 170. Chelicera, ventral view. 171 in A Generic-Level Revision Of The Spider Subfamily Coelotinae (Araneae, Amaurobiidae)
Figs. 169–171. Coronilla gemata Wang, female. 169. Carapace, front view. 170. Chelicera, ventral view. 171. Trachea, dashed line refers to position of epigastric furrow.
FIGURE 170 in Taxonomic Revision Of The Jumping Goblin Spiders Of The Genus Orchestina Simon, 1882, In The Americas (Araneae: Oonopidae)
FIGURE 170. Orchestina spp., female genitalia, ventral view. A. O . quenies, paratype. B. O . pandeazucar, paratype. C. O . caleta, paratype. D. O . totoralillo, holotype. E. O . pizarroi, paratype. F. O . molles, paratype. G. O . cachai. Arrows point to the external pockets. Asterisks show the sclerotized ridges in the epigastric fold area. Scale bars: 0.2 mm. (PBI_OON 2301, 50045, 42185, 30844, 42238, 1934, 14826).
Figs. 169–174. Brignolia cobre, new species. 169. Left male embolus, ventral view. 170. Same, prolateral view. 171. Same, retrolateral view. 172. Female carapace, posterior view. 173 in The Goblin Spider Genus Brignolia (Araneae, Oonopidae)
Figs. 169–174. Brignolia cobre, new species. 169. Left male embolus, ventral view. 170. Same, prolateral view. 171. Same, retrolateral view. 172. Female carapace, posterior view. 173. Posterior margin of female carapace, dorsal view. 174. Female abdomen, anterior view.
Figs. 166–170. Oedichirus lunatus. 166. Tergum VIII, female. 167. Sternum VIII, female. 168. Segment IX in Revision Of The New World Species Of Oedichirus (Coleoptera: Staphylinidae: Paederinae: Pinophilini: Procirrina)
Figs. 166–170. Oedichirus lunatus. 166. Tergum VIII, female. 167. Sternum VIII, female. 168. Segment IX, left lateral, female. 169. Segment IX, ventral, female. 170. Terga IX and X, female.
Figures 170–181. Buitinga uzungwa. 170. Male chelicerae. 171 in High species diversity in one of the dominant groups of spiders in East African montane forests (Araneae: Pholcidae: Buitinga n. gen., Spermophora Hentz)
Figures 170–181. Buitinga uzungwa. 170. Male chelicerae. 171. Spines proximally on male chelicerae. 172. Distal cheliceral apophysis with modified hairs. 173. Process winding around procursus ventrally. 174. Male gonopore with epiandrous spigots. 175. Left procursus, retrolateral view ('wp': process winding around procursus ventrally). 176. Female prosoma, frontal view. 177. Scape coiled up at rest. 178. Tip of female palp with tarsal organ. 179. Male ALS and PMS. 180. Proximal part of process winding around procursus. 181. Bulbal apophysis and embolus ('e'). Scale bars = 10 Mm (172), 20 Mm (171, 179, 180), 30 Mm (178), 40 Mm (174), 80 Mm (177, 181), 100 Mm (173), 200 Mm (170, 175), 300 Mm (176).
Figure 170 in Revision of the Neotropical Scleropactidae (Crustacea: Oniscidea)
Figure 170. Sphaeroniscus flavomaculatus Gerstäcker, 1854: holotype ♂, 17 × 7.6 mm, pereiopods 4–6 frontal ('Neu Granada', leg. Goudot, ZMB *27267).
FIGURE 170 in Survey of Linyphiidae (Arachnida: Araneae) spiders from Yunnan, China
FIGURE 170. Lepthyphantes cordis sp. nov. female (one of paratypes). A Epigyne, ventral view B Vulva, dorsal view C Epigyne, lateral view.
FIGURE 170 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 170. Pseudopoda mojiangensis Zhang, Jäger & Liu, spec. nov., A–B Female habitus (A. dorsal; B. ventral). Scale bars: A–B: 2 mm.
Fig. 170 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 170. Stereoscopic images of gnathochilarium and anterior sternum of species of Pseudonannolene Silvestri, 1895. A. P. lundi Iniesta & Ferreira, 2015. B. P. magna Udulutsch & Pietrobon, 2003. C. P. maritima Schubart, 1949. D. P. mesai Fontanetti, 2000. E. P. microzoporus Mauriès, 1987. Images not to scale.
FIGS. 168–173. Scopaeus. 168–170. S in Generic Revisions Of The Scopaeina And The Sphaeronina (Coleoptera: Staphylinidae: Paederinae: Lathrobiini)
FIGS. 168–173. Scopaeus. 168–170. S. nitidus sp. grp. (S. sp.). 168. Labium, hypopharynx. 169. Labrum, epipharynx. 170. Mesofemur, left base, plectral ridges. 171–173. S. obscuripes sp. grp. (S. likovskyi). 171. Mesofemur, right base, plectral ridges. 172. Metaventrite. 173. Metaventrite, left file.
Drosophila simulans VCF: The set of single nucleotide polymorphisms and insertion/deletions in a population of 170 Drosophila simulans lines.
<p>Heritable phenotypic variation in natural populations exceeds the levels predicted under mutation-selection balance where purifying selection removes variation. Balancing selection, inefficient or weak selection, polygenic adaptation, and non-equilibrium populations are all possible explanations for excess variation. Yet, available genomic data indicate an abundance of directional selection. One potential explanation is that fleeting directional selection drives beneficial mutations to high frequency in rapid waves resulting in many intermediate frequency haplotypes. This hypothesis is supported by the genomic data from a panel of 170 D. simulans genotypes established from a single stable population which show evidence for an abundance of incomplete soft sweeps. Demography, admixture, and balancing selection cannot entirely explain the patterns in these data, while transient selective sweeps can account for all the patterns of variation observed in this population. One interpretation is that constant environmental shifts rapidly change the optimal phenotype within Drosophila populations, leaving a signature of adaptive responses.</p>
Fig. 170 in Species Taxonomy, Phylogeny, and Biogeography of the Brontotheriidae (Mammalia: Perissodactyla)
Fig. 170. Holotype of Tanyorhinus harundivorax (DMNH 552). (A) Dorsal view, (B) left view.
LBHL (~170 nm) UVI images of Polar satellite from December 1996 to January 1997
<p>The UVI aboard the Polar satellite can obtain the ultraviolet auroral intensity distribution in the northern hemisphere. In order to reduce the influence of dayglow on UVI image data, we only used LBHL (~170 nm) UVI images from December 1996 to January 1997, which have full aurora oval (the aurora oval region in the northern hemisphere during this period is in the polar night region, and the aurora image is weakly affected by dayglow and solar light). Each image has a pixel size of 200×228 and a spatial resolution of about 0.04° per pixel (UVI auroral images of Polar satellite taken at apogee have a pixel size of 40×40 km at 100 km above the ground), and the value of each pixel is converted to the value with auroral intensity, the unit is photons/cm<sup>2</sup>/s.</p> <p>These UVI data is save as the mat file of Matlab.</p>
Figuras 170 in Sinopsis de la Tribu Oryctini (Coleoptera: Scarabaeidae: Dynastinae) de Colombia
Figuras 170. Parámeros de especies de Heterogomphus Burmeister presentes en Colombia.
Philosophy [IO Bijapur 170]
<ul> <li><strong>Philosophy.</strong></li> <li><strong>This manuscript is now IO Bijapur 170 </strong><strong>in the India Office collections.</strong></li> <li><strong>[metadata:</strong><a href="https://de.wikipedia.org/wiki/Otto_Loth"> <strong>Otto Loth, </strong></a><strong><em><a href="http://doi.org/10.5281/zenodo.3923636">A Catalogue of the Arabic Manuscripts in the Library of the India Office</a></em>, (volume 1), no. 583 here with further notations and hyperlinks]</strong>.</li> </ul> <p>583.</p> <p>B 170. Size 8<sup>1/4 </sup>in. by 5<sup>3/4</sup> in.; foll. 72. Mostly nineteen lines in a page.</p> <p>I.Foll. 1-24. The beginning of MAIBUDHÎ’S شرح الهداية (see no. 487).</p> <p>Plainly written, with marginal notes. Stained, and injured on the margin.</p> <p>II.Foll. 25-75. A fragment of MÎRAK’S شرح حكمة العين (see no. 498).</p> <p>It begins soon after the commencement of the work, with the words الشدة و الضعف.</p> <p>Well written. The margin covered with glosses, and in better preservation than that of I.</p> <p> </p>
Ecosystem shifts and Cladocera responses in a freshwater lake in semi-arid regions: The successional synergistic effects of natural and human factors in the past 170 years
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IO Islamic 170. Intikhâb-i-Muntakhab, An Abridgement of Muḥammad Yûsuf bin Shaikh Raḥmat-allâh al-Atakî al-Kan'ânî General History
<p>IO Islamic 170. Intikhâb-i-Muntakhab, An Abridgement of Muḥammad Yûsuf bin Shaikh Raḥmat-allâh al-Atakî al-Kan’ânîGeneral History</p>
FIGURES 170–172 in Taxonomic revision of the Neotropical genus Telemiades Hübner, [1819] (Lepidoptera: Hesperiidae: Eudaminae), with descriptions of fourteen new species
FIGURES 170–172. Male genitalia of Telemiades from the "megallus group". 170. Telemiades megallus Mabille, 1888 (OM 29.669—OM). 171. Telemiades squanda Evans, 1953 (DZ 4.661—DZUP). 172. Telemiades moa Siewert, Mielke & Casagrande, sp. nov. (DZ 32.676—DZUP).
FIGURES 166–170 in Review of the New World genus Acrotaphus Townes, 1960 (Hymenoptera: Ichneumonidae: Pimplinae), with descriptions of fifteen new species
FIGURES 166–170. Acrotaphus monotaenius sp. n. ♀ (holotype): 166, habitus; 167, head, dorsal view; 168, face, frontal view; 169, tarsal claw, scale bar =0.2 mm. 170. Distribution of Acrotaphus micrus sp. n. in the Neotropical region.
FIGURES 164–170 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 164–170. Reteporellina sp., Holocene, UPGG041, off South Sulawesi. 164–168. RGM.1350591. 164. General view of a colony fragment. 165. Group of autozooids. 166. Group of ovicellate zooids. 167. General view of the abfrontal surface. 168. Close-up of the abfrontal surface with an avicularium (right). 169, 170. RGM.1350592. 169. Close-up of an autozooid with large peristomial avicularium but orifice sealed by secondary calcification. 170. Close-up of two peristomial orifices with median peristomial groove and ooecium. Scale bars: Figs 164, 167 = 500 µm; Figs 165, 166 = 200 µm; Figs 168–170 = 100 µm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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