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FIGURE 6 in Potamotrygon tigrina, a new species of freshwater stingray from the upper Amazon basin, closely related to Potamotrygon schroederi Fernandez-Yépez, 1958 (Chondrichthyes: Potamotrygonidae)
FIGURE 6. Morphological details of distal tail region in Potamotrygon tigrina, n. sp., showing arrangement of dorsal tail spines, denticles, caudal stings, and vertebrae. A) MUSM 39978 (holotype; 495 mm TL, 271 mm DL, and 258 mm DW), lacking caudal stings. B) ANSP 191988 (paratype; 560 mm TL, 282 mm DL, 250 mm DW).
FIGURE 7 in Potamotrygon tigrina, a new species of freshwater stingray from the upper Amazon basin, closely related to Potamotrygon schroederi Fernandez-Yépez, 1958 (Chondrichthyes: Potamotrygonidae)
FIGURE 7. Geographic distributions of Potamotrygon tigrina, n. sp. (star, type locality), and P. schroederi (circles, type locality solid) examined in this study. Base map by M. J. Weitzman.
FIGURE 5 in Potamotrygon tigrina, a new species of freshwater stingray from the upper Amazon basin, closely related to Potamotrygon schroederi Fernandez-Yépez, 1958 (Chondrichthyes: Potamotrygonidae)
FIGURE 5. Details of the skeleton and dermal covering in Potamotrygon tigrina, n. sp., from holotype (MUSM 39978, 495 mm TL, 271 mm DL, and 258 mm DW). A) Splanchnocranium and scapular region (most of gill arches removed). B) Close-up of angular cartilage. C) Base of tail region showing arrangement of dorsal spines and denticles.
FIGURE 4 in Potamotrygon tigrina, a new species of freshwater stingray from the upper Amazon basin, closely related to Potamotrygon schroederi Fernandez-Yépez, 1958 (Chondrichthyes: Potamotrygonidae)
FIGURE 4. Paratype of Potamotrygon tigrina, n. sp. in dorsal (A) and ventral (B) views (ANSP 191988, preadult female, Peru, Departamento Loreto, Iquitos, Río Nanay; 560 mm TL, 282 mm DL, 250 mm DW; specimen dry, color faded).
FIGURE 3 in Potamotrygon tigrina, a new species of freshwater stingray from the upper Amazon basin, closely related to Potamotrygon schroederi Fernandez-Yépez, 1958 (Chondrichthyes: Potamotrygonidae)
FIGURE 3. Morphological details of holotype of Potamotrygon tigrina, n. sp. (MUSM 39978). A) Dorsal head and snout region. B) Nasoral region. C) Posterior disc and dorsal tail base region. D) Ventral view of pelvic fins. E) Posterior right side of disc, in dorsal view. F) Dorsal view of pelvic fins. Scale bars = 1 cm.
FIGURE 2 in Potamotrygon tigrina, a new species of freshwater stingray from the upper Amazon basin, closely related to Potamotrygon schroederi Fernandez-Yépez, 1958 (Chondrichthyes: Potamotrygonidae)
FIGURE 2. Freshly captured holotype of Potamotrygon tigrina, n. sp., in dorsal view, showing live coloration (MUSM 39978, juvenile male, Río Nanay, near Iquitos, Peru; 495 mm TL, 271 mm DL, and 258 mm DW).
FIGURE 1 in Potamotrygon tigrina, a new species of freshwater stingray from the upper Amazon basin, closely related to Potamotrygon schroederi Fernandez-Yépez, 1958 (Chondrichthyes: Potamotrygonidae)
FIGURE 1. Holotype of Potamotrygon tigrina, n. sp., in dorsal (A) and ventral (B) views (MUSM 39978, juvenile male, Río Nanay, near Iquitos, Peru; 495 mm TL, 271 mm DL, and 258 mm DW).
FIG. 3 in Taxonomic separation by isozyme electrophoresis of two closely related species of Cicada L. (Hemiptera: Cicadoidea) in Portugal
FIG. 3. CK banding patterns in Cicada orni and C. barbara. The enzyme phenotypes are identified across the bottom of the illustrations with the phenotypes of the Greek specimens of C. orni on the left, the Portuguese C. orni in the middle and the Portuguese C. barbara on the right.
FIG. 2 in Taxonomic separation by isozyme electrophoresis of two closely related species of Cicada L. (Hemiptera: Cicadoidea) in Portugal
FIG. 2. AAT banding patterns in Cicada orni and C. barbara. The enzyme phenotypes are identified across the bottom of the illustrations with the phenotypes of the Greek specimens of C. orni on the left, the Portuguese C. orni in the middle and the Portuguese C. barbara on the right.
FIG. 1 in Taxonomic separation by isozyme electrophoresis of two closely related species of Cicada L. (Hemiptera: Cicadoidea) in Portugal
FIG. 1. MDH banding patterns in Cicada orni and C. barbara. The enzyme phenotypes are identified across the bottom of the illustrations with the phenotypes of the Greek specimens of C. orni on the left, the Portuguese C. orni in the middle and the Portuguese C. barbara on the right.
Figure 3 in Repeated evolution of sympatric, palaeoendemic species in closely related, co-distributed lineages of Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) across a sky-island archipelago in Peninsular Malaysia
Figure 3. Habitat at the type locality of Hemiphyllodactylus bintik sp. nov., Gunung Tebu, Terenganu, Peninsular Malaysia.
Figure 4 in Repeated evolution of sympatric, palaeoendemic species in closely related, co-distributed lineages of Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) across a sky-island archipelago in Peninsular Malaysia
Figure 4. The results of the different partitioning schemes on node age estimates. When applicable, node age estimates from Heinicke et al. (2011) for nuclear DNA (nDNA) only and combined mitochondrial (mtDNA) and nDNA were includ- ed for comparative purposes.
Figure 2 in Repeated evolution of sympatric, palaeoendemic species in closely related, co-distributed lineages of Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) across a sky-island archipelago in Peninsular Malaysia
Figure 2. Dorsal and ventral view of the holotype of Hemiphyllodactylus bintik sp. nov. (LSUHC 11216).
Figure 1. A, Bayesian time tree for Hemiphyllodactylus with 95 in Repeated evolution of sympatric, palaeoendemic species in closely related, co-distributed lineages of Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) across a sky-island archipelago in Peninsular Malaysia
Figure 1. A, Bayesian time tree for Hemiphyllodactylus with 95% highest posterior density (95% HPD) intervals for major nodes represented by purple bars. Black circles at nodes are posterior probabilities ≥ 0.95; grey circles at nodes are posterior probabilities <0.95. B, Bayesian time tree for the Hemiphyllodactylus harterti group. C, Distribution of the H. harterti group in Peninsular Malaysia.
FIGURES 19–22 in Burmanyctycia, a new genus for a new species from north-western Myanmar with notes on closely related genera (Lepidoptera: Noctuidae: Noctuinae: Xylenini)
FIGURES 19–22. Xylenina spp.: male genitalia. The specimens are deposited in HNHM (photo by B. Tóth).
FIGURES 23–28 in Burmanyctycia, a new genus for a new species from north-western Myanmar with notes on closely related genera (Lepidoptera: Noctuidae: Noctuinae: Xylenini)
FIGURES 23–28. Xylenina spp.: female genitalia. Depositories of the specimens: 23, 26 and 27 in BBT; 24, 25 and 28 in HNHM (photo by B. Tóth).
FIGURES 15–18 in Burmanyctycia, a new genus for a new species from north-western Myanmar with notes on closely related genera (Lepidoptera: Noctuidae: Noctuinae: Xylenini)
FIGURES 15–18. Xylenina spp.: male genitalia. Depositories of the specimens: 15 and 16 in BBT; 17 and 18 in HNHM (photo by B. Tóth).
FIGURES 9–14 in Burmanyctycia, a new genus for a new species from north-western Myanmar with notes on closely related genera (Lepidoptera: Noctuidae: Noctuinae: Xylenini)
FIGURES 9–14. Xylenina spp.: adults. Depositories of the specimens: 9–13 in HNHM; 14 in MH/HNHM (all photo by B. Tóth).
FIGURES 1–8 in Burmanyctycia, a new genus for a new species from north-western Myanmar with notes on closely related genera (Lepidoptera: Noctuidae: Noctuinae: Xylenini)
FIGURES 1–8. Xylenina spp.: adults. Depositories of the specimens: 1 and 2 in BBT; 3–8 in HNHM (photo by B. Tóth).
Distribution. Java. Several biogeographic reviews failed to list the genus for Bali, an island directly east of Java with strong biogeographic affinities to the latter. A sighting was, however, reported from Bali Barat National Park, in a birdwatching trip report. Given the live-animal trade of this species on Java, further records are needed to confirm whether or not there is a native population of the genus on Bali. If there is, biogeographic considerations suggest it would be most closely related to the Javan population and quite probably conspecific. in Tragulidae
Distribution. Java. Several biogeographic reviews failed to list the genus for Bali, an island directly east of Java with strong biogeographic affinities to the latter. A sighting was, however, reported from Bali Barat National Park, in a birdwatching trip report. Given the live-animal trade of this species on Java, further records are needed to confirm whether or not there is a native population of the genus on Bali. If there is, biogeographic considerations suggest it would be most closely related to the Javan population and quite probably conspecific.
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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)
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.