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FIGURE 9 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 9. Advertisement call of two male specimens of Adenomera saci sp. nov. from the type locality. (A) A waveform section (2 seconds) with five calls from the Parque Nacional da Chapada dos Veadeiros (Goiás); (B) Audiospectrogram (above) and respective oscillogram (below) of the third call highlighted by a red outline. Unvouchered recording. (C) A waveform section (2.5 seconds) with five calls from Alto Paraíso de Goiás (Goiás); (D) Audiospectrogram (above) and respective oscillogram (below) of the third call highlighted by a red outline. Voucher paratopotype: AAG-UFU 0109.
FIGURE 1 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 1. Live adult topotype specimens (Cachimbo, Pará) of Adenomera martinezi: (A) Voucher male AAG-UFU 1517 (SVL 23.7 mm); (B) Voucher male AAG-UFU 1515 (SVL 23.7 mm); (C) Voucher male AAG-UFU 1516 (SVL 24.2 mm); (D). Voucher male AAG-UFU 1520 (SVL 21.9 mm); (E) Male AAG-UFU 1522 (SVL 23.5 mm); (F) Female AAG-UFU 1521 (SVL 25.7 mm).
FIGURE 6 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 6. Live adult specimens of Adenomera saci sp. nov. from Cristalina, Goiás: (A) Voucher male AAG-UFU 1761 (SVL 20.5 mm); (B) Voucher male AAG-UFU 0809 (SVL 20.4 mm); (C) Male AAG-UFU 1673 (SVL 21.0 mm).
FIGURE 4 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 4. Adenomera martinezi, adult male topotype re-described (AAG-UFU 1517). Dorsal (A) and lateral (B) views of head, and ventral views of foot (C) and hand (D).
FIGURE 3 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 3. Advertisement call of two male topotypes (Cachimbo, Pará) of Adenomera martinezi. (A) A waveform section (2 seconds) with five calls; (B) Audiospectrogram (ab(ove) and respective oscillogram (below) of the fourth call highlighted by a red outline. Voucher specimen: AAG-UFU 1517; (C) A waveform section (2 seconds) with five calls; (D) Audiospectrogram (above) and respective oscillogram (below) of the second call highlighted by a red outline. Unvouchered recording.
FIGURE 11 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 11. Advertisement call of two male specimens of Adenomera saci sp. nov. from the State of Mato Grosso. (A) A waveform section (2.5 seconds) with five calls from Pontal do Araguaia; (B) Audiospectrogram (above) and respective oscillogram (below) of the second call highlighted by a red outline. Voucher specimen: AAG-UFU 0208. (C) A waveform section (3.5 seconds) with five calls from Alto Araguaia; (D) Audiospectrogram (above) and respective oscillogram (below) of the third call highlighted by a red outline. Unvouchered recording.
FIGURE 2 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 2. Dorsal (A) and ventral (B) views of an adult male topotype of Adenomera martinezi (AAG-UFU 1517; SVL 23.7 mm); and dorsal (C) and ventral (D) views of the holotype of Adenomera saci sp. nov. (AAG-UFU 1339; SVL 22.5 mm).
FIGURE 10 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 10. Advertisement call of two male specimens of Adenomera saci sp. nov. from Cristalina (Goiás). (A) A waveform section (2 seconds) with five calls; (B) Audiospectrogram (above) and respective oscillogram (below) of the fourth call highlighted by a red outline. Voucher specimen: AAG-UFU 1761. (C) A waveform section (2 seconds) with five calls; (D) Audiospectrogram (above) and respective oscillogram (below) of the second call highlighted by a red outline. Voucher specimen: AAG-UFU 0809.
FIGURE 8 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 8. Adenomera saci sp. nov., holotype (AAG-UFU 1339), adult male. Dorsal (A) and lateral (B) views of head, and ventral views of foot (C) and hand (D).
FIGURE 7 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 7. Live adult specimens of Adenomera saci sp. nov. from Pontal do Araguaia, Mato Grosso: (A) Voucher male AAG- UFU 0208 (SVL 21.5 mm); (B) Male AAG-UFU 1747 (SVL 22.2 mm); (C) Male AAG-UFU 1745 (SVL 22.6 mm); (D) Female AAG-UFU 1748 (SVL 24.2 mm).
FIGURE 12. A in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 12. A scatterplot on the first two principal components (PCs) of bioacoustic variables of Adenomera saci sp. nov. populations. Open triangles (N = 7 individuals from the type locality, Chapada dos Veadeiros, Goiás); Filled triangles (N = 4 individuals from Cristalina, Goiás); Circles (N = 7 individuals from Pontal do Araguaia, Mato Grosso); Square (N = 1 individual from Alto Araguaia, Mato Grosso).
FIGURE 13. Phylogenetic tree inferred from a in Validation of the taxon Ixodes aragaoi Fonseca (Acari: Ixodidae) based on morphological and molecular data
FIGURE 13. Phylogenetic tree inferred from a partial sequence (435 characters, 113 parsimony informative) of the 16S rRNA mitochondrial gene of 12 tick species of the Ixodes ricinus complex, using I. nipponensis as outgroup. Numbers at nodes are the support values for the major branches (bootstrap) derived from 500 replicates for maximum parsimony. Number within brackets are GenBank accession numbers.
FIGURES 7–12. Ixodes aragaoi female. 7. Gnathosoma, dorsal view. 8. Gnathosoma, ventral view. 9 in Validation of the taxon Ixodes aragaoi Fonseca (Acari: Ixodidae) based on morphological and molecular data
FIGURES 7–12. Ixodes aragaoi female. 7. Gnathosoma, dorsal view. 8. Gnathosoma, ventral view. 9. Scutum with deep punctations (arrowed). 10. Coxae I–IV, internal spur on coxa I (arrowed). 11. Spiracular plate oval. 12. Tarsus I, capsule of Haller's organ (arrowed). Abbreviations: pa, porose area. Scale-bars: 7–8, 250 µm; 9–10, 500 µm; 11, 150µm; 12, 250 µm.
FIGURES 1–6. Ixodes aragaoi male. 1 in Validation of the taxon Ixodes aragaoi Fonseca (Acari: Ixodidae) based on morphological and molecular data
FIGURES 1–6. Ixodes aragaoi male. 1. Gnathosoma, dorsal view, basis capituli rectangular (arrowed). 2. Gnathosoma, ventral view, lateral and ventral lobes (arrowed). 3. Scutum, deep punctations (arrowed). 4. Idiosoma ventral view, coxae I–IV, internal spur on coxa I similar to the female. 5. Tarsus I. 6. Haller's organ, capsule (arrowed). Abbreviations: adp, adanal plate; ap, anal plate; mp, median plate. Scale-bars:1–2, 75µm; 3–4, 500 µm; 5, 50µm; 6, 150 µm.
FIGURE 2 in Molecular parataxonomy as taxon description: examples from recently named Zoanthidea (Cnidaria: Anthozoa) with revision based on serial histology of microanatomy
FIGURE 2. Number, position, and type of marginal muscle attachment sites as they appear within serial longitudinal sections. Each bar represents a 10 Μm longitudinal section with the number and type of muscle attachment points; open bars indicate mesogleal lacunae, black bars indicate mesogleal pleats. Empty positions indicate missing data due to sectioning artifact. Arrows at transitions from endodermal (dominated by pleats) to mesogleal (dominated by lacunae) and the reverse. Inlay diagram demonstrates plane of microtome blade (dotted lines) against the diameter of the polyp (outer ring) and marginal muscle (broken ring). A. Cyclically transitional marginal musculature of Corallizoanthus tsukaharai. B. Cyclically transitional marginal musculature of Savalia savaglia.
FIGURE 1 in Molecular parataxonomy as taxon description: examples from recently named Zoanthidea (Cnidaria: Anthozoa) with revision based on serial histology of microanatomy
FIGURE 1. Histology of Corallizoanthus tsukaharai (10 Μm sections). Labeled features include actinopharynx (A), endodermal marginal musculature (EMM), lacunae formed by dissolution foraminifera tests (L-FT), mesogleal marginal musculature (MMM), oral disk (OD), peristome (P), tentacles (T); measurements of capitular tissue width made at black arrow. A. Longitudinal section of contracted polyp at capitulum showing endodermal portion of cyclically transitional marginal musculature. B. Longitudinal section of contracted polyp at capitulum showing mesogleal portion of cyclically transitional marginal musculature. C. Longitudinal section of contracted polyp.
FIGURE 8 in Molecular parataxonomy as taxon description: examples from recently named Zoanthidea (Cnidaria: Anthozoa) with revision based on serial histology of microanatomy
FIGURE 8. Number, position, and type of marginal muscle attachment sites as they appear within serial longitudinal sections of Microzoanthus kagerou. Each bar represents a 10 Μm longitudinal section with the number and type of muscle attachment points; open bars indicate mesogleal lacunae, black bars indicate mesogleal pleats. Empty positions indicate missing data due to sectioning artifact. Arrows at transitions from endodermal (dominated by pleats) to mesogleal (dominated by lacunae) and the reverse. Inlay diagram demonstrates plane of microtome blade (dotted lines) against the diameter of the polyp (outer ring) and marginal muscle (broken ring).
FIGURE 5 in Lerneca inalata beripocone subsp. nov. (Orthoptera: Phalangopsidae; Luzarinae): a new taxon for the northern Pantanal of Brazil
FIGURE 5. Spectrogram of Lerneca inalata beripocone subsp. nov. (22IPBC, 06:00 pm, 23ºC, 28.07.2013) calling songs.
FIGURE 4 in Lerneca inalata beripocone subsp. nov. (Orthoptera: Phalangopsidae; Luzarinae): a new taxon for the northern Pantanal of Brazil
FIGURE 4. Lerneca inalata beripocone subsp. nov. (Female paratype). Tegmina, upper left, dorsal view: A. Left side; B. Right side. Subgenital plate and ovipositor, upper right: C. Ventral view; D. Ovipositor apex, dorsal view; E. Ovipositor apex, side view. Lower row, copulatory papilla: F. Ventral view; G. Side view; H. Dorsal view.
FIGURE 2 in Lerneca inalata beripocone subsp. nov. (Orthoptera: Phalangopsidae; Luzarinae): a new taxon for the northern Pantanal of Brazil
FIGURE 2. Lerneca inalata beripocone subsp. nov. (Male holotype). A. Dorsal view; B. Right tegmen, dorsal (left) and ventral view (right); C. The right hind leg, outer surface; D. Head and pronotum, dorsal view; E. Head and pronotum, lateral view; F. Head, front view; G. Supranal plate; H. Subgenital plate.
ScienceDex guides
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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.