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272 results for “Central Andes”
Figure 6 in Reproductive ecology of the glass frog Espadarana prosoblepon (Anura: Centrolenidae) in an urban forest of the Central Andes of Colombia
Figure 6. (a) Amplexus, (b) oviposition, (c) abandonment of the oviposition site by the male and (d) egg attendance by the female in Espadarana prosoblepon.
Figure 5 in Reproductive ecology of the glass frog Espadarana prosoblepon (Anura: Centrolenidae) in an urban forest of the Central Andes of Colombia
Figure 5. (a) Relationship between the body size of males, and chorus tenure (i.e. number of nights a same male was recorded over the duration of the study or until was recorded in amplexus). (b) Influence of chorus tenure in males and their probability of mating. (c) Lack of assortative mating by body size of individuals in amplexus. (d) Relationship between the body size of the females and the size of their egg clutches. Regression line is showed only for the statistically significant tendency at α = 0.05.
Figure 4 in Reproductive ecology of the glass frog Espadarana prosoblepon (Anura: Centrolenidae) in an urban forest of the Central Andes of Colombia
Figure 4. Variation of (a) rainfall and environmental temperature; (b) number of males and females; and (c) egg clutches in the study area between December 2013 and November 2015. Extensions of the bars in the middle figure indicate standard deviation.
Figure 3 in Reproductive ecology of the glass frog Espadarana prosoblepon (Anura: Centrolenidae) in an urban forest of the Central Andes of Colombia
Figure 3. Frequency of activity (number of nights a same individual was observed) of males (left plot) and females (right plot) of the glass frog Espadarana prosoblepon between December 2013 and November 2015 in the Botanical Garden at Universidad del Quindío, Armenia, Central Andes of Colombia.
Figure 2 in Reproductive ecology of the glass frog Espadarana prosoblepon (Anura: Centrolenidae) in an urban forest of the Central Andes of Colombia
Figure 2. Example of patterns of black and yellow dots observed on the back of adult individuals of Espadarana prosoblepon and used to monitor males and females.
Figure 1 in Reproductive ecology of the glass frog Espadarana prosoblepon (Anura: Centrolenidae) in an urban forest of the Central Andes of Colombia
Figure 1. Geographic location of the study area in the Botanical Garden at Universidad del Quindío Armenia, Central Andes of Colombia (orange dot: La Aldana creek).
Figure 2 in A new endemic lineage of the Andean frog genus Telmatobius (Anura, Telmatobiidae) from the western slopes of the central Andes
Figure 2. Maximum likelihood tree (-ln likelihood 3667.32) obtained using the concatenated 16S and cytochrome b mitochondrial markers of 19 nominal taxa of Telmatobius in Chile and Bolivia and 12 undescribed Chilean localities. Values above the nodes are, from left to right, the bootstrap values of maximum likelihood, maximum parsimony (above 70%), and Bayesian inference (above 0.95). Capital letters in the nodes correspond to the letters in Table 3.
Figure 1 in A new endemic lineage of the Andean frog genus Telmatobius (Anura, Telmatobiidae) from the western slopes of the central Andes
Figure 1. Geographical location of the Chilean and Bolivian Telmatobius populations included in this study. Numbers correspond to those in Table 1. Black circles, Telmatobius verrucosus and Telmatobius bolivianus groups; green circles, Telmatobius marmoratus group; blue circles, Telmatobius hintoni group; orange circles, Telmatobius zapahuirensis group.
Glacier slowdown and rapid ice loss in the Tinguiririca and Cachapoal Basin, Central Andes of Chile
<p>Ice thickness and velocity data for the paper "Glacier slowdown and rapid ice loss in the Tinguiririca and Cachapoal Basin, Central Andes of Chile".</p> <p>The data is available for both annual medians and multi-year medians.</p> <p>Raw Sentinel-2 imagery used to reproduce these results can be freely downloaded from a variety of online sources, we do not upload it here to avoid excessive storage. The GIV toolbox may be accessed here: https://github.com/MaxVWDV/glacier-image-velocimetry.</p>
Data from: Ecological and spatial patterns associated with diversification of the shrub genus Tetraglochin along Southern-Central Andes (Rosaceae)
Open the record for dataset details and reuse information.
Figure 3 from: Ramírez-Chaves HE, Tamayo-Zuluaga AF, Henao-Osorio JJ, Cardona-Giraldo A, Ossa-López PA, Rivera-Páez FA (2020) The chiggerflea Hectopsylla pulex (Siphonaptera: Tungidae): infestation on Molossus molossus (Chiroptera: Molossidae) in the Central Andes of Colombia. Zoologia 37: 1-5. https://doi.org/10.3897/zoologia.37.e53092
Figure 3 Locality records of Hectopsylla pulex in Colombia. The records come from the departments of Valle del Cauca (Tamsitt 1970, Méndez 1977, Hastriter and Méndez 2000), and Caldas (red triangle, this work), in the Cauca River Basin, and from Boyacá (Fuller 1942) and Cundinamarca (Tamsitt 1970) in the Magdalena River Basin. Triangle: Molossus molossus, square: Molossus currentium, circle: Molossus bondae (= M. currentium), diamond: Desmodus rotundus, star: Glossophaga soricina, pentagon: Noctilio albiventris. Scale bar: 1 mm.
Figures 1-2 from: Ramírez-Chaves HE, Tamayo-Zuluaga AF, Henao-Osorio JJ, Cardona-Giraldo A, Ossa-López PA, Rivera-Páez FA (2020) The chiggerflea Hectopsylla pulex (Siphonaptera: Tungidae): infestation on Molossus molossus (Chiroptera: Molossidae) in the Central Andes of Colombia. Zoologia 37: 1-5. https://doi.org/10.3897/zoologia.37.e53092
Figures 1-2 (1) Chiggerfleas Hectopsylla pulex attached to the face and ears of the Pallas's mastiff bat Molossus molossus; (2) Chiggerflea Hectopsylla pulex obtained from a Pallas's mastiff bat Molossus molossus in the Central Andes of Colombia.
Supplemental Information for: Late Paleozoic Gondanide deformation in the central Andes: Insights from RSCM thermometry and thermal modeling
<p>This supplemental information is data to accompany the article "<strong>Late Paleozoic Gondanide deformation in the central Andes: Insights from RSCM thermometry and thermal modeling"</strong>. The supplemental data includes information on Raman spectroscopy analytical methods (instrument parameters, settings, and procedures), Time temperature path model parameter setup and composite sample selection used in HeFTy, and an excel file of individual RSCM spot analysis for each sample that we analyzed. </p> <p>Data were collected in the field in the Eastern Cordillera of Bolivia in 2013 and 2014, and analyzed at Arizona State University in 2015 and 2016.</p>
FIGURE 3 in A new species of Phrynopus (Anura: Craugastoridae) from the central Peruvian Andes
FIGURE 3. Detail of nuptial pad on Finger I of a male of Phrynopus chaparroi sp. nov. (MHNC 10981).
FIGURE 1 in A new species of Parandrinae from the Central Andes of Colombia (Coleoptera: Cerambycidae)
FIGURE 1. Parandra (Parandra) antioquensis new species. Holotype, female, length, 19,4 mm.
FIGURE 35 in Illustrated review of the leaf-mining Nepticulidae of the central Andes (Peru and Bolivia)
FIGURE 35. Adults of the central Andean Nepticulidae.
FIGURE 34 in Illustrated review of the leaf-mining Nepticulidae of the central Andes (Peru and Bolivia)
FIGURE 34. Adults of central Andean Nepticulidae.
FIGURE 32 in Illustrated review of the leaf-mining Nepticulidae of the central Andes (Peru and Bolivia)
FIGURE 32. Adults of the central Andean Nepticulidae.
FIGURE 37 in Illustrated review of the leaf-mining Nepticulidae of the central Andes (Peru and Bolivia)
FIGURE 37. Diagnostics of the central Andean Stigmella.
FIGURES 19–28 in Illustrated review of the leaf-mining Nepticulidae of the central Andes (Peru and Bolivia)
FIGURES 19–28. Distribution of some central Andean Nepticulidae. 19–28, habitats, Bolivia.
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Allen Brain Atlas
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OpenNeuro
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