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566 results for “Western Mexico.”
Figure 3 in A new and rare epigean asellid from western Mexico Caecidotea contrerasbalderasi sp. nov. (Isopoda: Asellidae) with a new suture pattern in pleopod IV for the Mexican epigean species
Figure 3. Caecidotea contrerasbalderasi sp. nov., holotype male (UANL-FCB-C-6240), 7.0 mm, paratype female (FCB-UANL-6241), Pantanal, municipality Xalisco, Nayarit, Mexico. A, male pereiopod I; B, female pereiopod I; C, male pereiopod II; D, male pereiopod III; E, female pereiopod IV; F, pereiopod V; G, female pereiopod VI. H, pereiopod VII. Scale bar: A, B = 0.15, C-H = 0.2 mm.
Fig. 4. Populus primaveralepensis A in Populus primaveralepensis sp. nov. (Salicaceae, Malpighiales), a new species of white poplar from the Bosque La Primavera Biosphere Reserve in western Mexico
Fig. 4. Populus primaveralepensis A.Vázquez, Muñiz-Castro & Zuno sp. nov., female individual, Vázquez-García et al. 10106c leg., IBUG. A. Inflorescence at anthesis. B. Inflorescence past anthesis. C. Developing infrutescence. D. Trunk. E. Branch with leaves and dehiscing capsules, showing the whitish pappus of seeds. Photographs: A. Vázquez.
Fig. 5. Maps. A in Populus primaveralepensis sp. nov. (Salicaceae, Malpighiales), a new species of white poplar from the Bosque La Primavera Biosphere Reserve in western Mexico
Fig. 5. Maps. A. Distribution of P. primaveralepensis A.Vázquez, Muñiz-Castro & Zuno sp. nov. and related species of Populus L. in western Mexico. B. Distribution of the species of Populus in Jalisco with a close up for P. luziarum A.Vázquez, Muñiz-Castro & Padilla-Lepe and P. primaveralepensis sp. nov.
Fig. 1. Populus primaveralepensis A in Populus primaveralepensis sp. nov. (Salicaceae, Malpighiales), a new species of white poplar from the Bosque La Primavera Biosphere Reserve in western Mexico
Fig. 1. Populus primaveralepensis A.Vázquez, Muñiz-Castro & Zuno sp. nov. A–E, I–K. Vázquez-García et al. 10106c leg., IBUG. F–H. Vázquez-García et al. 10106b leg., IBUG. A. Variability of leaves. B. Leaf bud. C. Branch with female inflorescence. D–E. Early and late state of inflorescence. F–G. Late and early male inflorescence. H. Male flower. I. Infrutescence with pappus. J. Capsule complete and in half, with pappus. K. Developing gynoecium. Illustrations: E. E. Vázquez-Verdejo.
Fig. 3. Populus primaveralepensis A in Populus primaveralepensis sp. nov. (Salicaceae, Malpighiales), a new species of white poplar from the Bosque La Primavera Biosphere Reserve in western Mexico
Fig. 3. Populus primaveralepensis A.Vázquez, Muñiz-Castro & Zuno sp. nov., male individual, Vázquez-García et al. 10106b leg., IBUG. A–B. Two views of same branch with inflorescence past anthesis. C. Inflorescence at anthesis. D. Branch showing leaf variability and venation. Photographs: A. Vázquez.
Fig. 2. Populus primaveralepensis A in Populus primaveralepensis sp. nov. (Salicaceae, Malpighiales), a new species of white poplar from the Bosque La Primavera Biosphere Reserve in western Mexico
Fig. 2. Populus primaveralepensis A.Vázquez, Muñiz-Castro & Zuno sp. nov. Tree showing its habit and bark. J. Padilla Lepe, standing next to the tree; photograph: O. Ibarrarán.
Figure 6-7 in Rhopalocera (Lepidoptera) prey records of Asilidae (Diptera) in eastern New Mexico and western Texas, United States of America
Figure 6-7. Triorla interrupta male feeding on Phyciodes picta. / Triorla interrupta macho alimentándose de Phyciodes picta.
Figure 3 in Rhopalocera (Lepidoptera) prey records of Asilidae (Diptera) in eastern New Mexico and western Texas, United States of America
Figure 3. New Mexico, nr. jct. 480 and Roos. Rd. AG (20.v.2017). / Nuevo México, cerca jct. 480 y Roos. Calle AG (20.v.2017).
Figure 2 in Rhopalocera (Lepidoptera) prey records of Asilidae (Diptera) in eastern New Mexico and western Texas, United States of America
Figure 2. New Mexico, field just NE of Floyd (15.vii.2017). / Nuevo México, campo al NE de Floyd (15.vii.2017).
Figure 1 in Rhopalocera (Lepidoptera) prey records of Asilidae (Diptera) in eastern New Mexico and western Texas, United States of America
Figure 1. New Mexico, Portales, nr. softball complex (28.viii.2021). / Nuevo México, Portales, cerca del complejo de softbol (28.viii.2021).
Figure 4 in Rhopalocera (Lepidoptera) prey records of Asilidae (Diptera) in eastern New Mexico and western Texas, United States of America
Figure 4. Texas, Bailey Co., Muleshoe Nat. Wildlife Refuge nr. Goose Lake (10.vii.2022). / Texas, Bailey Co., Muleshoe Nacional. Refugio de vida silvestre cerca del lago del Ganso (10.vii.2022).
Fig. 5 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 5. Relationship between temperature and sex ratio. The red dotted line denotes the pivotal temperature according to the TSD software and calibrated with histology of gonads from dead Hawksbill hatchlings.
Fig. 3 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 3. Hatching success of Eretmochelys imbricata on the beaches of Chenkan, Punta Xen, and Celestún, Yucatán Peninsula (Mexico).
Fig. 2 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 2. (a) Incubation temperatures of Eretmochelys imbricata, during the TSP, on the beaches of Chenkan, Punta Xen, and Celestún, during two incubation periods (June–July and August–September). The dotted line indicates the pivotal temperature. (b) Percentages of females in the monitored nests on the nesting beaches of the western Yucatán Peninsula (Mexico). The red asterisks show where the differences were significant (p <0.05) among nests, by beach.
Fig. 1 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 1. Geographical locations of the monitored nests of Eretmochelys imbricata, as well as the beaches studied and their images. 1) Celestún, 2) Punta Xen, and 3) Chenkan.
Fig. 4 in Feminization tendency of Hawksbill Turtles (Eretmochelys imbricata) in the western Yucatán Peninsula, Mexico
Fig. 4. Representative histology sections of gonads from dead Hawksbill hatchlings in the monitored nests. (a) Testis (100 µm), (b) Ovary (100 µm), (c) Testis (20 µm), (d) Müllerian ducts of male (20 µm), (e) Ovary (20 µm), (f) Müllerian ducts of female (20 µm). The dotted areas in (a) and (b) indicate the sites of the higher magnifications shown in (c) and (e), where the dotted line indicates the cortex, M indicates the medulla region, and C indicates the cortex region.
Fig. 3 in Association of bat flies (Diptera: Streblidae) and bats: Richness and host specificity in Western Mexico
Fig. 3. Taxonomic trees with the STD value for the hosts that presented more than two species of parasites. *The value represents the number of steps to get from one host to another since there are only two host species.
Fig. 2 in Association of bat flies (Diptera: Streblidae) and bats: Richness and host specificity in Western Mexico
Fig. 2. Interaction network between bats and ectoparasites captured in Western Mexico. The lines represent interactions between species, and the width of the line indicates the strength of the interactions.
Linked collectors and determiners for: The Stephanidae (Hymenoptera) of Mexico, with description of six new species and key to western Foenatopus Smith.
Natural history specimen data linked to collectors and determiners held within, "The Stephanidae (Hymenoptera) of Mexico, with description of six new species and key to western Foenatopus Smith". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/d0bac44f-47cf-4d75-a32c-7c97c59bf74e">https://bionomia.net/dataset/d0bac44f-47cf-4d75-a32c-7c97c59bf74e</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/d0bac44f-47cf-4d75-a32c-7c97c59bf74e">https://gbif.org/dataset/d0bac44f-47cf-4d75-a32c-7c97c59bf74e</a>. Formatted as a Frictionless Data package.
Fig. 3 in Hybridization Between the Endangered Unisexual Gray-Checkered Whiptail Lizard (Aspidoscelis dixoni) and the Bisexual Western Whiptail Lizard (Aspidoscelis tigris) in Southwestern New Mexico
Fig. 3. Dorsolateral views of three whiptail lizards (Aspidoscelis). Upper, diploid unisexual A. dixoni C from Antelope Pass (AMNH R-148360, body length 96 mm). Middle, triploid female hybrid of A. dixoni C X A. tigris punctilinealis from Antelope Pass (AMNH R-148141, body length 93 mm). Lower, diploid bisexual A. t. punctilinealis male from Antelope Pass (AMNH R-148113, body length 90 mm).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.