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173 results for “Hidalgo”
Figs 1–5 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 1–5. Live male holotype (CNAN-T01317) of Loxosceles tolantongo sp. nov. from the type locality: Tourist Center Grutas de Tolantongo, Municipality of Cardonal, Hidalgo, Mexico. Photos 1–4 by Alejandro Valdez-Mondragón (2019); photo 5 by Claudia Isabel Navarro-Rodríguez (2019).
Fig. 53 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Fig. 53. Neighbor joining tree of ITS2 data of nine species of Loxosceles Heineken & Lowe, 1832 from Mexico. Colors of branches indicate different species. Numbers at nodes represent bootstrap support values. Red circle at node represent Loxosceles tolantongo sp. nov.
Fig. 57 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Fig. 57. Haplotype network from the CO1 data obtained with TCS using PopArt. Each circle represents the haplotypes found in nine species of Loxosceles Heineken & Lowe, 1832 from Mexico. Numbers on branches indicate the number of mutations between haplotypes.
Figs 36–43 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 36–43. Variation of the seminal receptacles of females, dorsal view. 36–39. Loxosceles tolantongo sp. nov. 36, 39. Tourist Center Grutas de Tolantongo, Municipality of Cardonal. 37–38. 500 m west of the entrance No. 5 to the Tourist Center Grutas de Tolantongo, Municipality of Cardonal. 40–43. Loxosceles jaca Gertsch & Ennik, 1983. 2.5 km north of Jacala de Ledezma, Municipality of Jacala de Ledezma, Hidalgo. Scale bars = 0.2 mm.
Figure 4 from: Casiraghi A, Espadaler X, Pérez Hidalgo N, Gómez K (2020) Two additions to the Iberian myrmecofauna: Crematogaster inermis Mayr, 1862, a newly established, tree-nesting species, and Trichomyrmex mayri (Forel, 1902), an emerging exotic species temporarily nesting in Spain (Hymenoptera, Formicidae). Journal of Hymenoptera Research 78: 57-68. https://doi.org/10.3897/jhr.78.51858
Figure 4 Crematogaster inermis. Worker head in frontal view, with abraded mandible denticles. (HW 1.125 mm) (Image X. Espadaler).
Figure 1 from: Casiraghi A, Espadaler X, Pérez Hidalgo N, Gómez K (2020) Two additions to the Iberian myrmecofauna: Crematogaster inermis Mayr, 1862, a newly established, tree-nesting species, and Trichomyrmex mayri (Forel, 1902), an emerging exotic species temporarily nesting in Spain (Hymenoptera, Formicidae). Journal of Hymenoptera Research 78: 57-68. https://doi.org/10.3897/jhr.78.51858
Figure 1 Robinia pseudoacacia tree (black locust) where Crematogaster inermis were nesting (Valencia, Spain). Black arrow indicates the level of nest entrance (Image X. Espadaler).
Figure 2 from: Casiraghi A, Espadaler X, Pérez Hidalgo N, Gómez K (2020) Two additions to the Iberian myrmecofauna: Crematogaster inermis Mayr, 1862, a newly established, tree-nesting species, and Trichomyrmex mayri (Forel, 1902), an emerging exotic species temporarily nesting in Spain (Hymenoptera, Formicidae). Journal of Hymenoptera Research 78: 57-68. https://doi.org/10.3897/jhr.78.51858
Figure 2 Partial view (16 July 2016) of an abandoned date palm grove (Agost, Alicante, Spain) where Crematogaster inermis, Trichomyrmex destructor and T. mayri had been temporary nesting in July 2007 (Image X. Roig).
Figure 3 from: Casiraghi A, Espadaler X, Pérez Hidalgo N, Gómez K (2020) Two additions to the Iberian myrmecofauna: Crematogaster inermis Mayr, 1862, a newly established, tree-nesting species, and Trichomyrmex mayri (Forel, 1902), an emerging exotic species temporarily nesting in Spain (Hymenoptera, Formicidae). Journal of Hymenoptera Research 78: 57-68. https://doi.org/10.3897/jhr.78.51858
Figure 3 Crematogaster inermis, mesosoma lateral view. Bar 0.4 mm. A small specimen (HW 1.050 mm) showing small, but visible, triangular propodeal spines B medium sized specimen (HW 1.150 mm), with merely angulate propodeum C bigger specimen (HW 1.175 mm), with rounded propodeum (Images X. Espadaler).
Supplementary material 4 from: Mardones M, Carranza-Velázquez J, Mata-Hidalgo M, Amador-Fernández X, Urbina H (2023) Taxonomy and phylogeny of the genus Ganoderma (Polyporales, Basidiomycota) in Costa Rica. MycoKeys 100: 5-47. https://doi.org/10.3897/mycokeys.100.106810
Maximum Likelihood raw phylogenetic tree for ITS sequences of global Ganoderma
Supplementary material 1 from: Mardones M, Carranza-Velázquez J, Mata-Hidalgo M, Amador-Fernández X, Urbina H (2023) Taxonomy and phylogeny of the genus Ganoderma (Polyporales, Basidiomycota) in Costa Rica. MycoKeys 100: 5-47. https://doi.org/10.3897/mycokeys.100.106810
Ganoderma of Costa Rica_Linked Data Table Template for Primary Biodiversity Data
Supplementary material 2 from: Mardones M, Carranza-Velázquez J, Mata-Hidalgo M, Amador-Fernández X, Urbina H (2023) Taxonomy and phylogeny of the genus Ganoderma (Polyporales, Basidiomycota) in Costa Rica. MycoKeys 100: 5-47. https://doi.org/10.3897/mycokeys.100.106810
ITS alignment for global Ganoderma
Supplementary material 3 from: Mardones M, Carranza-Velázquez J, Mata-Hidalgo M, Amador-Fernández X, Urbina H (2023) Taxonomy and phylogeny of the genus Ganoderma (Polyporales, Basidiomycota) in Costa Rica. MycoKeys 100: 5-47. https://doi.org/10.3897/mycokeys.100.106810
Bayesian Inference raw phylogenetic tree for ITS sequences of global Ganoderma
Distribution. Sierra Madre Oriental in E Hidalgo, E Puebla, and WC Veracruz, Mexico. in Cricetidae
Distribution. Sierra Madre Oriental in E Hidalgo, E Puebla, and WC Veracruz, Mexico.
Figure 2 in First occurrence of Panthera atrox (Felidae, Pantherinae) in the Mexican state of Hidalgo and a review of the record of felids from the Pleistocene of Mexico
Figure 2. Isolated left lower canine (UAHMP-4221) of Panthera atrox from the late Pleistocene of southeastern Hidalgo, central Mexico. (a) Labial and (b) lingual views. Scale bar equals 2 cm.
FIGURE 8 in A Pliocene goodeid fish of the Paleolake Amajac, Sanctórum, Hidalgo, Mexico
FIGURE 8. Osteological details of Paleocharacodon guzmanae gen. and sp. nov., from the Paleolake Amajac deposits, Sanctórum, Mexico. A) Close-up of the right side of the head of IGM 13118 showing the medial surface of the left otoliths. B) Left anguloarticular bone of IGM 13121 showing the articular facet for the quadrate formed by a surrounding C-shaped process (note this in the shadow below), as well as the central participation of the retroarticular bone that here is empty (see the red line) because this bone is not preserved. C) Right dentary bone and associated teeth of the part of IGM 13121. D) Suspensorium of IGM 13123. E) Dorsal surface of the lateral process of right sphenotic, preserved in IGM 13130. F) Abdominal region of IGM 13130. G) Close-up of pharyngeal teeth preserved in the counterpart of IGM 13121. Abbreviations: aa, anguloarticular; aadp, anguloarticular dorsal process; aapp, anguloarticular anterior process;ast, asteriscus otolith; bst, bicuspid sharp tooth; cor, coracoid; d, dentary; d, dentary; entp, entopterygoid; epn, epineural; faq, articular facet for the quadrate; hy, hyomandibula; lap, lapillus otolith; mx, maxilla; pal, palatine (note the anterolateral projection in the head); pmx, premaxilla; pmx, premaxilla; pop, preopercle; q, quadrate; r, rib; sag, sagittal otolith; sc, scale; sop, subopercle; sp, sphenotic; sy, symplectic; ust, unicuspid sharp tooth. The red arrow in B shows the space in the articular facet for the square (which should be occupied by the retroarticular bone) surrounded by the pair of curved processes of the anguloarticular that also forms part of such facet (see also the shadow of the process)
Figure 2 from: Hornung-Leoni CT, Chavarria-Olmedo YJ, Ramírez-Morillo IM (2019) The Reserva de la Biosfera Barranca de Metztitlán (Hidalgo): An illustrated checklist of bromeliads and orchids and their high levels of Mexican endemisms. PhytoKeys 118: 105-123. https://doi.org/10.3897/phytokeys.118.31603
Figure 2 Species of bromeliads in Reserva de la Biosfera Barranca de Metztitlán (RBBM): ATillandsiainopinataBHechtiapodanthaCTillandsiaerubescensDTillandsiarecurvataETillandsiatortilisFTillandsiajunceaGTillandsiaionanthaHT.mauryana. Photographs: A–H by Hornung-Leoni.
Figure 3 from: Hornung-Leoni CT, Chavarria-Olmedo YJ, Ramírez-Morillo IM (2019) The Reserva de la Biosfera Barranca de Metztitlán (Hidalgo): An illustrated checklist of bromeliads and orchids and their high levels of Mexican endemisms. PhytoKeys 118: 105-123. https://doi.org/10.3897/phytokeys.118.31603
Figure 3 Species of Bromeliaceae (cont.) (A–D, F, G) and Orchidaceae (E, H) in Reserva de la Biosfera Barranca de Metztitlán (RBBM): Bromeliaceae: ATillandsiausneoidesBTillandsiaparryiCTillandsiadeppeanaDHechtiaglomerataELaeliagouldianaFTillandsiapringleiGTillandsiaalbidaHMesadenuspolyanthus. Photographs: A–D and F–H by Hornung-Leoni. Photograph E by Chavarria-Olmedo.
Figure 1 from: Hornung-Leoni CT, Chavarria-Olmedo YJ, Ramírez-Morillo IM (2019) The Reserva de la Biosfera Barranca de Metztitlán (Hidalgo): An illustrated checklist of bromeliads and orchids and their high levels of Mexican endemisms. PhytoKeys 118: 105-123. https://doi.org/10.3897/phytokeys.118.31603
Figure 1 Map of the study area indicating: A Location of the RBBM in Hidalgo State and municipalities, and B Vegetation types.
Figure 4 from: Hornung-Leoni CT, Chavarria-Olmedo YJ, Ramírez-Morillo IM (2019) The Reserva de la Biosfera Barranca de Metztitlán (Hidalgo): An illustrated checklist of bromeliads and orchids and their high levels of Mexican endemisms. PhytoKeys 118: 105-123. https://doi.org/10.3897/phytokeys.118.31603
Figure 4 Bromeliaceae and Orchidaceae (cont.) in Reserva de la Biosfera Barranca de Metztitlán (RBBM) (cont.) AHechtiadeceptrixBTillandsiagymnobotryaCTillandsiaschiedeanaDAulosepalumpyramidaleETillandsiaimperialisFAechmeabracteata. Photographs: A–E by Hornung-Leoni and F by I. Ramírez-Morillo.
Supplementary material 1 from: Hornung-Leoni CT, Chavarria-Olmedo YJ, Ramírez-Morillo IM (2019) The Reserva de la Biosfera Barranca de Metztitlán (Hidalgo): An illustrated checklist of bromeliads and orchids and their high levels of Mexican endemisms. PhytoKeys 118: 105-123. https://doi.org/10.3897/phytokeys.118.31603
: Data type: occurrence
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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)
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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.