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106 results for “Tropical Andes”
Figure 3 from: Araujo RO, Pádua DG, Jaramillo J, Mazariegos LA (2020) Five new species of Dolichomitus Smith from the tropical Andes, with a key for the South American species (Hymenoptera, Ichneumonidae, Pimplinae). ZooKeys 937: 89-113. https://doi.org/10.3897/zookeys.937.51361
Figure 3 A–GDolichomitus menai sp. nov. (holotype female): A habitus in lateral view (in vivo) B habitus in dorsal view C head in frontal view D head and mesosoma in lateral view E mesosoma in dorsal view F first tergite in dorsal view G wings. Scale bars: 5.00 mm (A, B); 1.00 mm (C, D, E, F); 2.00 mm (G).
In situ temperature and brGDGTs measurements in soils from the Tropical Andes of Colombia and a tropical soil brGDGT compilation dataset
<p>This dataset contain:</p> <p>Table S1. Air and soil mean monthly temperatures from the new 16 sites in the Eastern Cordillera of Colombia with data presented in this study.<br> Table S3. Soil Branched glycerol dialkyl glycerol tetraethers (brGDGTs) from the Eastern Cordillera of Colombia and data compilation from the tropics.<br> Table S4. nonlinear brGDGTs predictors for the tropical compilation data.</p> <p> </p>
FIGURE 9 in A new collared lizard (Tropidurus: Tropiduridae) endemic to the Western Bolivian Andes and its implications for seasonally dry tropical forests
FIGURE 9. Boxplots showing variation in scale counts among Tropidurus chromatops, T. etheridgei, and T. azurduyae.
Glacier thickness and ice volume of the inner tropical Andes
<p>Glacier thickness and ice volume of the inner tropical Andes <br> ------------------------------------------------------------</p> <p>Data folder</p> <p>This folder contains all of the velocity, thickness and basin-divided water volume described in our Scientific Data data decriptor, along with the code we used to generate the dataset.</p> <p>File structure:<br> ./Ice_velocities_individual_maps -> Contains individual ice velocity maps for each glacier in our study area (glacier velocity in metres per year)</p> <p><br> ./Ice_thicknesses_individual_maps -> Contains individual ice thickness maps for each glacier in our study area (ice thickness in m)</p> <p><br> ./Ice_thickness_stdev_individual_maps -> Contains ice thickness standard deviation maps for each glacier in our study area (standard deviation in metres)</p> <p><br> ./Basin_divided_water_eq_volumes -> Contains a map of ice equivalent water volume for each glacier basin. Three maps are provided for each glacier, for buffer distances of 1km, 5km and 20 km. Values represent cubic metres of water equivalent ice volume in a given catchment area.</p> <p><br> ./Code -> The code used to generate our results. See a separate README in that folder. Our study also used the GIV toolbox (10.5281/zenodo.4904544). All code is commented for easy re-use.</p> <p><br> Please contact Max Van Wyk de Vries (vanwy048@umn.edu) with any queries.</p>
Figure 1 from: Torres-Carvajal O, Lobos S (2014) A new species of Alopoglossus lizard (Squamata, Gymnophthalmidae) from the tropical Andes, with a molecular phylogeny of the genus. ZooKeys 410: 105-120. https://doi.org/10.3897/zookeys.410.7401
Figure 1 - Holotype of Alopoglossus viridiceps sp. n. in dorsal (top) and ventral (bottom) views. Male, SVL = 57.89 mm, QCAZ10670. Photographs by OTC.
Figure 2 from: Torres-Carvajal O, Lobos S (2014) A new species of Alopoglossus lizard (Squamata, Gymnophthalmidae) from the tropical Andes, with a molecular phylogeny of the genus. ZooKeys 410: 105-120. https://doi.org/10.3897/zookeys.410.7401
Figure 2 - Head of holotype of Alopoglossus viridiceps sp. n. (QCAZ10670) in dorsal (top), lateral (middle) and ventral (bottom) views. Photographs by OTC.
Figure 5 from: Torres-Carvajal O, Lobos S (2014) A new species of Alopoglossus lizard (Squamata, Gymnophthalmidae) from the tropical Andes, with a molecular phylogeny of the genus. ZooKeys 410: 105-120. https://doi.org/10.3897/zookeys.410.7401
Figure 5 - Phylogeny of Alopoglossinae. Majority rule (50%) consensus tree of 36,000 trees obtained from a Bayesian analysis of the mitochondrial gene ND4 and 8 specimens. Asterisks correspond to posterior probability values ≥ 0.97. Voucher information is presented in Table 1.
Figure 4 from: Torres-Carvajal O, Lobos S (2014) A new species of Alopoglossus lizard (Squamata, Gymnophthalmidae) from the tropical Andes, with a molecular phylogeny of the genus. ZooKeys 410: 105-120. https://doi.org/10.3897/zookeys.410.7401
Figure 4 - Distribution of Alopoglossus viridiceps sp. n. (triangles) and its sister species Alopoglossus festae (circles) in Ecuador. Locality data for Alopoglossus festae was taken both from the literature (blue circles; Almendáriz and Carr 2012; Köhler et al. 2012) and museum specimens (green circles; see Appendix).
Figure 3 from: Torres-Carvajal O, Lobos S (2014) A new species of Alopoglossus lizard (Squamata, Gymnophthalmidae) from the tropical Andes, with a molecular phylogeny of the genus. ZooKeys 410: 105-120. https://doi.org/10.3897/zookeys.410.7401
Figure 3 - Species of Alopoglossus from western Ecuador. A, B Alopoglossus viridiceps sp. n., paratype QCAZ11854, juvenile male, SVL = 38.67 mm C, D Alopoglossus viridiceps sp. n., paratype QCAZ10671, juvenile female, SVL = 33.80 mm E, F Alopoglossus viridiceps sp. n., paratype QCAZ11855, juvenile, SVL = 31.59 mm G, H Alopoglossus festae, QCAZ 9161, female, SVL = 46.89 mm.
Figure 9 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 9 - Right hemipenis of Synophis zamora sp. n. (QCAZ 9174, holotype). Distal end in sulcal (upper left) and asulcal (upper right) views; body in sulcal (lower left) and asulcal (lower right) views. Scale bar = 1 mm. Photographs by Denisse Galarza.
Figure 8 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 8 - Head of holotype of Synophis zamora sp. n. (QCAZ 9174) in dorsal (top), lateral (middle) and ventral (bottom) views. Photographs by Omar Torres-Carvajal.
Figure 7 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 7 - Holotype (QCAZ 9174, adult male, SVL = 349 mm) of Synophis zamora sp. n. in dorsal (left) and ventral (right) views. Photographs by Omar Torres-Carvajal.
Figure 5 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 5 - Four species of Synophis from Ecuador and Peru: Synophis calamitus (QCAZ 11931, upper left); Synophis bogerti sp. n. (QCAZ 13586, upper right); Synophis zamora sp. n. (QCAZ 13854, lower left); Synophis insulomontanus sp. n. (CORBIDI 13940, lower right). Photographs by Diego Quirola, Omar Torres-Carvajal and Germán Chávez.
Figure 6 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 6 - Distribution of seven species of Synophis in South America. Synophis bicolor (pentagons), Synophis bogerti sp. n. (green triangles), Synophis calamitus (circles), Synophis insulomontanus sp. n. (red triangles), Synophis lasallei (squares), Synophis plectovertebralis (diamond), Synophis zamora sp. n. (blue triangles). Grey circle corresponds to specimen QCAZ 5847 from Carchi, Ecuador (see Discussion).
Figure 13 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 13 - 50% Majority rule consensus tree of Synophis snakes based on a Bayesian analysis of mtDNA sequences. Posterior probabilities are equal to 1, unless otherwise noted by numbers next to branches. Outgroup taxa are not shown.
Figure 4 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 4 - Head of specimen of Synophis bogerti (UMMZ 91550) illustrated by Bogert (1964) as Synophis bicolor showing incomplete suture on frontal scale. Illustration taken from Bogert (1964).
Figure 12 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 12 - Left hemipenis of Synophis insulomontanus sp. n. (CORBIDI 13940, holotype) in sulcal (left), asulcal (center), and lateral (right) views. Scale bar = 1 mm. Photographs by Germán Chávez.
Figure 1 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 1 - Holotype (QCAZ 12791, adult male, SVL = 367 mm) of Synophis bogerti sp. n. in dorsal (left) and ventral (right) views. Photographs by Omar Torres-Carvajal.
Figure 3 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 3 - Right hemipenis of Synophis bogerti sp. n. (QCAZ 12791, holotype). Distal end in sulcal (upper left) and asulcal (upper right) views; body in sulcal (lower left) and asulcal (lower right) views. Scale bar = 1 mm. Photographs by Denisse Galarza.
Figure 10 from: Torres-Carvajal O, Echevarría LY, Venegas PJ, Chávez G, Camper JD (2015) Description and phylogeny of three new species of Synophis (Colubridae, Dipsadinae) from the tropical Andes in Ecuador and Peru. ZooKeys 546: 153-179. https://doi.org/10.3897/zookeys.546.6533
Figure 10 - Holotype (CORBIDI 13940, adult male, SVL = 335.3 mm) of Synophis insulomontanus sp. n. in dorsal (left) and ventral (right) views. Photographs by Juan C. Chávez-Arribasplata.
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International Brain Laboratory public data
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OpenNeuro
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