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306 results for “central Chile”
Figura. 4B in Historia Natural Del Carpinterito (Dryobates Lignarius) En Chile Central, Con Énfasis En Su Biología Reproductiva
Figura. 4B. Macho de Carpinterito incubando. En el macho adulto las plumas rojas están restringidas al occipucio y en juvenil el color Figura. 4A. Polluelos de Carpinterito, macho a la izquierda y rojo es más vistoso e incluye la corona y hembra a la derecha. Notar que ambos géneros tienen plumas rojas occipucio. Comparar la extensión de las plumas en la Corona. rojas en un macho adulto con la de un juvenil
FIGURE 5 in Taxonomic and systematic implications of the revision of the phylogenetic relations in the genus Ectinogonia Spinola 1837 (Coleoptera: Buprestidae) of Central Chile
FIGURE 5. Haplotype network of Wg fragment from Ectinogonia species studied. Each color represents a species. Circle size indicates the frequency of the haplotype. Mutational steps between haplotypes are indicated by dot marks on the axis that unites haplotypes.
FIGURE 3 in Taxonomic and systematic implications of the revision of the phylogenetic relations in the genus Ectinogonia Spinola 1837 (Coleoptera: Buprestidae) of Central Chile
FIGURE 3. Haplotype network of COI fragment from Ectinogonia species studied. Each color represents a species. Circle size indicates the frequency of the haplotype. Mutational steps between haplotypes are indicated by hash marks on the axis that unites haplotypes.
FIGURE 2 in Taxonomic and systematic implications of the revision of the phylogenetic relations in the genus Ectinogonia Spinola 1837 (Coleoptera: Buprestidae) of Central Chile
FIGURE 2. Location of the study área (A) and sampling localities (B); La Parva-Potrero Grande (1), La Obra (2), Lo Valdez- El Morado (3), Altos de Cantillana (4), Valle las Leñas (5), Volcán Descabezado Grande (6), Los Sauces (7), Las Comadres-Las Trancas (8). For each locality, numbered from 1 to 8, is the relative frequency of sampled species (circular graph) to show sympatric species.
FIGURE 1 in Phylogenetic and mycogeographical aspects of Lactarius and Rhizopogon associated with Pinus radiata in south-central Chile
FIGURE 1. Micromorphology of Lactarius quieticolor; A. Fruiting bodies; B-C. Basidiospores; D. Macropleurocystidia; E. Basidioles; F. Basidia; G. Lageniform cheilocystidia; H. Cylindrical, septate cheilocystidia.
FIGURE 3 in Phylogenetic and mycogeographical aspects of Lactarius and Rhizopogon associated with Pinus radiata in south-central Chile
FIGURE 3. Phylogenetic trees (DNAr ITS1F/ITS4 sequences) and selected taxa; A. Lactarius sect. Deliciosi; B. Rhizopogon sp.
FIGURE 2 in Phylogenetic and mycogeographical aspects of Lactarius and Rhizopogon associated with Pinus radiata in south-central Chile
FIGURE 2. Micromorphology of Rhizopogon roseolus; A. Fruiting bodies; B–C. Basidiospores; D. Basidia; E. Cystidia; F. Pseudoparaphysis (arrow).
FIGURE 2. A in Valeriana nahuelbutae sp. nov. (Caprifoliaceae), a new endemic plant from Nahuelbuta mountain range in central-south Chile
FIGURE 2. A. Juvenile plant in natural habitat at type locality, under canopy of Araucaria araucana and Nothofagus pumilio forest, B. Inflorescence.
FIGURE 1 in Valeriana nahuelbutae sp. nov. (Caprifoliaceae), a new endemic plant from Nahuelbuta mountain range in central-south Chile
FIGURE 1. Valeriana nahuelbutae iconography: A. Branch, B. Leaf detail; bar = 2.5 cm (B). Drawn by Gustavo Alvarez de Araya based in living plants.
FIGURES 3–8 in Pyropia orbicularis sp. nov. (Rhodophyta, Bangiaceae) based on a population previously known as Porphyra columbina from the central coast of Chile
FIGURES 3–8. Vegetative and reproductive characteristics of Pyropia orbicularis sp. nov. 3. Surface view of vegetative region of the thallus. 4. Surface view of basal, rhizoidal cells. 5. Cross-section of vegetative region of thallus. 6. Trichogyne (arrow). 7. Surface view of zygotosporangia. 8. Fertile region of the blade with packets of developing zygotosporangia (larger and dark) and packets of spermatangia (smaller and colourless).
FIGURE 9 in Pyropia orbicularis sp. nov. (Rhodophyta, Bangiaceae) based on a population previously known as Porphyra columbina from the central coast of Chile
FIGURE 9. Maximum Likelihood (ML) rooted tree for rbcL sequences (876 bp) of Pyropia. Porphyra mumfordii, Porphyra purpurea and Porphyra umbilicalis were used as outgroups. For each node, ML bootstrap values and Bayesian Posterior Probabilities are indicated (ML/BPP). Only high support values (>60) are shown; '-' = clade not observed in the Bayesian Inference. Next to collapsed branches are abbreviated species or sequences names, GENBANK accession numbers have been omitted for brevity but are listed in Table 2. Regions where specimens were collected are indicated within parenthesis: SA = South Atlantic, SP = South Pacific, SO = Southern Ocean. Thick lines highlight the southern hemisphere clade that includes Pyropia orbicularis sp. nov.
FIGURE 11 in Pyropia orbicularis sp. nov. (Rhodophyta, Bangiaceae) based on a population previously known as Porphyra columbina from the central coast of Chile
FIGURE 11. Habit of foliose gametophytes of Pyropia orbicularis sp. nov. collected from Maitencillo beach, Valparaíso, Chile. Scale bar = 2 cm.
FIGURES 1–2 in Pyropia orbicularis sp. nov. (Rhodophyta, Bangiaceae) based on a population previously known as Porphyra columbina from the central coast of Chile
FIGURES 1–2. Pyropia orbicularis sp. nov. 1. Habit of the foliose gametophyte from the upper intertidal zone from Maitencillo beach, Valparaíso, Chile. 2. Holotype specimen of Pyropia orbicularis sp. nov. SGO162483, collected from the upper intertidal zone of Maitencillo beach, Valparaíso, Chile.
FIGURE 10 in Pyropia orbicularis sp. nov. (Rhodophyta, Bangiaceae) based on a population previously known as Porphyra columbina from the central coast of Chile
FIGURE 10. Maximum Likelihood (ML) rooted tree for COI sequences (604 bp) of Pyropia. Porphyra mumfordii, Porphyra purpurea and Porphyra umbilicalis, were used as outgroups. For each node, ML bootstrap values and Bayesian Posterior Probabilities are indicated (ML/BPP). Only high support values (>60) are shown; '-' = clade not observed in the Bayesian Inference. Next to collapsed branches are abbreviated species or sequences names, GENBANK accession numbers have been omitted for brevity but are listed in Table 2.
Figure 1 in Activity patterns and habitat use of pudu deer (Pudu puda) in a mountain forest of south-central Chile
Figure 1. (a) Activity time of the pudu deer in Caramávida, Nahuelbuta Mountain Range, southcentral Chile, throughout the entire period of the study. Bold lines indicate the proportions of active behaviour for each hour. (b) Daily activity patterns across seasons.
Figure 2 in Activity patterns and habitat use of pudu deer (Pudu puda) in a mountain forest of south-central Chile
Figure 2. Percentage representation of activity patterns of pudu in Caramávida, Nahuelbuta Mountain Range, according to light availability periods (see text for criteria) during the seasons surveyed.
FIGURE 1 in Miersia putaendensis sp. nov. (Gilliesieae, Amaryllidaceae), a new species endemic to Central Chile
FIGURE 1. Illustration of Miersia putaendensis: (A) Habit, (B) Detail of flower (frontal view), (C) Detail of flower (lateral view), (D) Fruit (lateral view), (E) Fruit (apical view), (F) Fruit (medial transverse section), and (G) Seed. Drawn by Arón Cádiz-Véliz.
FIGURE 3 in Miersia putaendensis sp. nov. (Gilliesieae, Amaryllidaceae), a new species endemic to Central Chile
FIGURE 3. Flowers of Miersia species: (A) M. leporina, (B) M. putaendensis (B1) frontal view, (B2) lateral view, (C) M. cornuta, (D) M. chilensis, (E) M. tenuiseta, (F) M. minor. Scale bar 5 mm. Photography: (A, E and F) Nicolás García, (B1, 2) Arón Cádiz-Véliz, (C) Patricio Novoa, (D) Óscar Ovalle.
FIGURE 2 in Miersia putaendensis sp. nov. (Gilliesieae, Amaryllidaceae), a new species endemic to Central Chile
FIGURE 2. Distribution map of Miersia putaendensis: (A) Continental Chile (B) Región de Valparaíso. Elaborated by Simón Olfos.
FIGURE 5 in Rayenia malalcurensis (Escalloniaceae), a new genus and species endemic to Central Chile
FIGURE 5. Habitat of Rayenia malalcurensis (A, B, C). A. Cordillera del Malalcura (1722 m elevation). B. Valle del estero Bullileo (1413 m elevation). C. In the vicinity of Laguna Añil (1733 m elevation). Photographed by Kora Menegoz and Alejandro E. Villarroel.
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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.