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509 results for “122”
FIGURES 121–134. Pelicinus marmoratus Simon, male. 121. Habitus, dorsal view. 122. Same, lateral view. 123. Abdomen, anterior view. 124. Sternum, ventral view. 125. Left embolus, dorsal view. 126, 129–131. Left palp, prolateral view. 127. Same, ventral view. 128, 132–134 in The Goblin Spider Genus Pelicinus (Araneae, Oonopidae), Part 1
FIGURES 121–134. Pelicinus marmoratus Simon, male. 121. Habitus, dorsal view. 122. Same, lateral view. 123. Abdomen, anterior view. 124. Sternum, ventral view. 125. Left embolus, dorsal view. 126, 129–131. Left palp, prolateral view. 127. Same, ventral view. 128, 132–134. Same, retrolateral view (125–128, Marshall Islands; 129, 132, Brazil; 130, 133, Sumatra; 131, 134 Hawaii).
Figure 122 from: Fernandez-Triana J, Shaw MR, Boudreault C, Beaudin M, Broad GR (2020) Annotated and illustrated world checklist of Microgastrinae parasitoid wasps (Hymenoptera, Braconidae). ZooKeys 920: 1-1089. https://doi.org/10.3897/zookeys.920.39128
Figure 122 Iconella canadensis female holotype A Habitus, lateral B Head, dorsal C Fore wing D Propodeum and tergites 1 to 2, dorsal E Metasoma, lateral F Mesosoma, dorsal G Tergites 1–4, dorsal.
Figure 122 from: Ibrahim N, Sereno PC, Varricchio DJ, Martill DM, Dutheil DB, Unwin DM, Baidder L, Larsson HCE, Zouhri S, Kaoukaya A (2020) Geology and paleontology of the Upper Cretaceous Kem Kem Group of eastern Morocco. ZooKeys 928: 1-216. https://doi.org/10.3897/zookeys.928.47517
Figure 122 Dentary fragments of Spinosaurus aegyptiacus from the Kem Kem Group. Anterior section of the left dentary (IMPG 969-1) in (A) lateral and (B) dorsal view. Posterior section of the left dentary (IMPG 969-2) in (C) lateral and (D) medial view. Part and counterpart aligned in (E) lateral and (F) dorsal view. The two specimens clearly belong to the same jaw section and individual (contraBuffetaut 1989, 1992). Scale bar equals 10 cm in A-D. Abbreviations: ad alveolus in the dentary t tooth.
Figs. 122–124 in A Monographic Revision of the Genus Hoplopyga Thomson, 1880 (Coleoptera: Scarabaeidae: Cetoniinae: Gymnetini)
Figs. 122–124. Hoplopyga singularis, variation in habitus.
Figures 121- 122 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 121- 122 - Neotriadomerus longiovipositor. 121 male antenna, paratype (14 km W. by N. Hope Vale Mission) 122 wings. Scale bar = 500 μm.
Figures 122-129 from: Tang C-T, Mikó I, Nicholls JA, Schwéger S, Yang M-M, Stone GN, Sinclair F, Bozsó M, Melika G, Pénzes Z (2016) New Dryocosmus Giraud species associated with Cyclobalanopsis and non-Quercus host plants from the Eastern Palaearctic (Hymenoptera, Cynipidae, Cynipini). Journal of Hymenoptera Research 53: 77-162. https://doi.org/10.3897/jhr.53.9890
Figures 122-129 - Dryocosmus moriius sp. n. 122–124 head, female: 122 frontal view 123 dorsal view 124 posterior view 125 head, frontal view, male 126–127 antenna: 126 female 127 male 128–129 female: 128 mesosoma, dorsal view 129 fore wing, part, female (rad=radial cell).
Figure 122 from: Chen H-y, Turrisi GF, Xu Z-f (2016) A revision of the Chinese Aulacidae (Hymenoptera, Evanioidea). ZooKeys 587: 77-124. https://doi.org/10.3897/zookeys.587.7207
Figure 122 - Distribution map of the species of Chinese Aulacidae (Pristaulacus longicornis Kieffer, 1911 is not included). 1 Aulacus flavigenis Alekseev, 1986 2 Aulacus magnus sp. n. 3 Aulacus schoenitzeri Turrisi, 2005 4 Aulacus sinensis He & Chen, 2007. 5 Aulacus striatus Jurine, 1807. 6 Pristaulacus albitarsatus Sun & Sheng, 2007 7 Pristaulacus asiaticus Turrisi & Smith, 2011 8 Pristaulacus calidus sp. n. 9 Pristaulacus centralis sp. n. 10 Pristaulacus comptipennis Enderlein, 1912. 11 Pristaulacus excisus Turner, 1922 12 Pristaulacus fopingi sp. n. 13 Pristaulacus intermedius Uchida, 1932 14 Pristaulacus iosephi Turrisi & Madl, 2013 15 Pristaulacus karinulus Smith, 2001 16 Pristaulacus memnonius Sun & Sheng, 2007 17 Pristaulacus nobilei Turrisi & Smith, 2011 18 Pristaulacus obscurus sp. n. 19 Pristaulacus pieli Kieffer, 1924 20 Pristaulacus porcatus Sun & Sheng, 2007 21 Pristaulacus pseudoiosephi sp. n. 22 Pristaulacus rufipes Enderlein, 1912 23 Pristaulacus rufobalteatus Cameron, 1907 24 Pristaulacus zhejiangensis He & Ma, 2002. Note: The South China Sea islands are not shown on this map.
Figure 122 from: Tauber CA, Sosa F, Albuquerque GS, Tauber MJ (2017) Revision of the Neotropical green lacewing genus Ungla (Neuroptera, Chrysopidae). ZooKeys 674: 1-188. https://doi.org/10.3897/zookeys.674.11435
Figure 122 - Chrysopa scalai Navás: Features, (a) habitus, dorsal (b) labels (Argentina, Rio Negro, lectotype, male, MLPA).
Figures 122-139 from: Douglas HB (2017) World reclassification of the Cardiophorinae (Coleoptera, Elateridae), based on phylogenetic analyses of morphological characters. ZooKeys 655: 1-130. https://doi.org/10.3897/zookeys.655.11894
Figures 122-139 - 122 Odontocardus vitalisi. Aedeagus 123–125 Triplonychoidus trivittatus paralectotype. 123 aedeagus 124, 125 male 126–131 Esthesopus castaneus 126, 127 male 128 ventral view of tarsomeres 4&5 129 tarsal claw 130 proximal sclerite of bursa copulatrix 131 aedeagus 132–135 Aptopus agrestis 132, 133 male 134 tarsal claw 135 aedeagus 136–139 Horistonotus flavidus 136, 137 lectotype female 138 proximal sclerite of lectotype 139 aedeagus Scale bars: 1 mm for habiti, 0.5 mm for detail photos, 0.1 mm for tarsal claw. Captions reflect the revised classification.
FIGURE 122 in New records and description of fifty-four new species of aquatic beetles in the genus Hydraena Kugelann from South America (Coleoptera: Hydraenidae)
FIGURE 122. Hydraena spatula, holotype, dorsal and lateral habitus, and venter.
FIGURE 122 in Revision of the metallic Lasioglossum (Dialictus) of eastern North America (Hymenoptera: Halictidae: Halictini)
FIGURE 122. Lasioglossum halophitum (Graenicher) female, dorsal view of mesosoma.
FIGURES 121–122 in A synopsis of the Neotropical genus Protoneura (Odonata: Coenagrionidae)
FIGURES 121–122. Distribution maps.
Figure 122 from: Hamilton CA, Hendrixson BE, Bond JE (2016) Taxonomic revision of the tarantula genus Aphonopelma Pocock, 1901 (Araneae, Mygalomorphae, Theraphosidae) within the United States. ZooKeys 560: 1-340. https://doi.org/10.3897/zookeys.560.6264
Figure 122 - Aphonopelma phasmus Chamberlin, 1940. A–I male holotype A dorsal view of carapace, scale bar = 1mm B prolateral view of coxa I C dorsal view of femur III D ventral view of metatarsus III, scale bar = 2.5mm E ventral view of metatarsus IV F prolateral view of L pedipalp and palpal tibia, scale bar = 3.5mm G dorsal view of palpal bulb (damaged) H retrolateral view of palpal bulb (damaged) I prolateral view of tibia I (mating clasper), scale bar = 2mm.
Figure 122 from: Liebherr JK (2015) The Mecyclothorax beetles (Coleoptera, Carabidae, Moriomorphini) of Haleakala-, Maui: Keystone of a hyperdiverse Hawaiian radiation. ZooKeys 544: 1-407. https://doi.org/10.3897/zookeys.544.6074
Figure 122 - Mecyclothorax vitreus group species, dorsal habitus view. A Mecyclothorax kipahulu (Kīpahulu, 1800 m) B Mecyclothorax kaumakani (Kīpahulu W rim, 1850 m) C Mecyclothorax kaumakani (Pu'u Ahulili, 1600 m) D Mecyclothorax kuiki (ESE Kuiki, 2105 m) E Mecyclothorax kuiki (New Greensword Bog, 1850 m).
Figure 122 from: Fisher JR, Fisher DM, Skvarla MJ, Nelson WA, Dowling APG (2017) Revision of torrent mites (Parasitengona, Torrenticolidae, Torrenticola) of the United States and Canada: 90 descriptions, molecular phylogenetics, and a key to species. ZooKeys 701: 1-496. https://doi.org/10.3897/zookeys.701.13261
Figure 122 - Torrenticola kurtvietsi male: A dorsal plates B venter (legs removed) C subcapitulum D pedipalp (setae not accurately depicted). Scale = 100 µm.
ELITE SLWR: global 1km daily SLDR at SIN Grid (2020_122-182)
<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth’s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p> </p> <p>This dataset is ELITE daily surface longwave downward radiation (SLDR) product at 1km spatial resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the ELITE surface longwave downward radiation (SLDR) product using the algorithms developed by Zeng et al. (2021).</p> <p> </p> <p>This is the ELITE Daily SLDR product in 2020 (DOY: 122-182). Please <a href="../records/11235151"><strong><em>click here</em></strong></a> to download the ELITE Daily SLDR product in 2020 (DOY: 183-244).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2020-05-01 ~ 2020-06-30</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: Daily</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> <li>Fill value: 999</li> </ul> <p> </p> <p><strong>Citation </strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Zeng, Q., & Cheng, J. (2021). Estimating high-spatial resolution surface daily longwave radiation from the instantaneous Global LAnd Surface Satellite (GLASS) longwave radiation product. <em>International Journal of Digital Earth</em>, <em>14</em>(11), 1674-1704.</li> </ol>
ELITE SLWR: global 1km daily SLDR at SIN Grid (2016_122-182)
<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth’s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p> </p> <p>This dataset is ELITE daily surface longwave downward radiation (SLDR) product at 1km spatial resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the ELITE surface longwave downward radiation (SLDR) product using the algorithms developed by Zeng et al. (2021).</p> <p> </p> <p>This is the ELITE Daily SLDR product in 2016 (DOY: 122-182). Please <a href="../records/11350215"><strong><em>click here</em></strong></a> to download the ELITE Daily SLDR product in 2016 (DOY: 183-244).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2016-05-01 ~ 2016-06-30</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: Daily</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> <li>Fill value: 999</li> </ul> <p> </p> <p><strong>Citation </strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Zeng, Q., & Cheng, J. (2021). Estimating high-spatial resolution surface daily longwave radiation from the instantaneous Global LAnd Surface Satellite (GLASS) longwave radiation product. <em>International Journal of Digital Earth</em>, <em>14</em>(11), 1674-1704.</li> </ol>
ELITE SLWR: global 1km daily SLUR at SIN Grid (2016_122-182)
<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth’s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p> </p> <p>This dataset is ELITE daily surface longwave ward radiation (SLUR) product at 1km spatial resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the ELITE surface longwave ward radiation (SLUR) product using the algorithms developed by Zeng et al. (2021).</p> <p> </p> <p>This is the ELITE Daily SLUR product in 2016 (DOY: 122-182). Please <a href="../records/11398879"><strong><em>click here</em></strong> </a>to download the ELITE Daily SLUR product in 2016 (DOY: 183-244).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2016-05-01 ~ 2016-06-30</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: Daily</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> <li>Fill value: 999</li> </ul> <p> </p> <p><strong>Citation </strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Zeng, Q., & Cheng, J. (2021). Estimating high-spatial resolution surface daily longwave radiation from the instantaneous Global LAnd Surface Satellite (GLASS) longwave radiation product. <em>International Journal of Digital Earth</em>, <em>14</em>(11), 1674-1704.</li> </ol>
Figures 23A–C. Gymnangium japonicum, stn 122. A, colony. B, hydrocladial hydrothecae. C in Deep-water hydroids (Hydrozoa: Leptolida) from Macquarie Island
Figures 23A–C. Gymnangium japonicum, stn 122. A, colony. B, hydrocladial hydrothecae. C, cauline internodes with tubular nematocysts (after Watson and Vervoort 2001). A, 20 mm; B, C, 0.5 mm.
Figures 122-124 from: De Mattia W, Neiber MT, Groh K (2018) Revision of the genus-group Hystricella R. T. Lowe, 1855 from Porto Santo (Madeira Archipelago), with descriptions of new recent and fossil taxa (Gastropoda, Helicoidea, Geomitridae). ZooKeys 732: 1-125. https://doi.org/10.3897/zookeys.732.21677
Figures 122-124 Shells of Wollastonia ripkeni sp. n. 122 holotype, SMF 348929 123, 124 paratypes from the loc. typ. Scale bar 1 mm.
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OpenNeuro
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