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FIGURE 6 in Integrative taxonomic revision of mantellid frogs of the genus Aglyptodactylus (Anura: Mantellidae)
FIGURE 6. Photographs in life of Aglyptodactylus laticeps and A. securifer: A. laticeps from Kirindy (a–c), with (b) being a female, and (c) probably being a male. Frontodorsal and ventral views of male holotype of A. securifer (ZFMK 59975) from Kirindy (d,g); dorsal and ventral views of a male of A. securifer from Ankarana (e, h); dorsal and ventral views of a female of A. securifer from Ankarana (ZSM 762/2003) (f, i); A. securifer from Berara (j); A. securifer from Tsingy de Bemaraha (k–l), with (k) corresponding to ZSM 14/2006. Photographed individuals not unequivocally assignable to preserved voucher specimens unless otherwise mentioned.
FIGURE 8 in Integrative taxonomic revision of mantellid frogs of the genus Aglyptodactylus (Anura: Mantellidae)
FIGURE 8. Audiospectrogram (above) and oscillogram (below) of an advertisement call of Aglyptodactylus securifer, recorded at Ankarana.
FIGURE 3 in Integrative taxonomic revision of mantellid frogs of the genus Aglyptodactylus (Anura: Mantellidae)
FIGURE 3. Comparative oscillograms of the calls of known species of Aglyptodactylus at the same time scale (2000 milliseconds section each).
FIGURE 11 in Integrative taxonomic revision of mantellid frogs of the genus Aglyptodactylus (Anura: Mantellidae)
FIGURE 11. Photographs in life of Aglyptodactylus inguinalis: (a,b) dorsolateral and ventral views of a male specimen from the base of Pic St Louis near Tolagnaro (ZSM 183/2002); (c,d) dorsolateral and ventral views of a female specimen from Marojejy (ZSM 5213/2005).
FIGURE 5 in Integrative taxonomic revision of mantellid frogs of the genus Aglyptodactylus (Anura: Mantellidae)
FIGURE 5. Plate comparing the colour pattern of the posterior surfaces of thighs in long-legged species of Aglyptodactylus (from preserved specimens; not to scale). Most specimens of A. madagascariensis and A. australis show a distinctly marbled pattern which is orange-black in life (see photo of A. madagascariensis from Andasibe on upper left), while in A. inguinalis and A. chorus this pattern is mostly absent.
FIGURE 1 in Integrative taxonomic revision of mantellid frogs of the genus Aglyptodactylus (Anura: Mantellidae)
FIGURE 1. Maximum likelihood tree based on DNA sequences (539 bp) of the mitochondrial 16S rRNA gene showing relationships among species and populations of Aglyptodactylus. The tree is rooted with Laliostoma labrosum. Values at nodes are ML bootstrap values in percent and Bayesian posterior probabilities (shown only if>50% and>0.9 respectively; support values at some of the shallow intraspecific nodes omitted for graphical reasons). Inset photos show characteristic individuals of the respective species in life. Oscillograms show representative sections (2000 ms each) of advertisement calls of the various species, respectively.
FIGURE 4 in Integrative taxonomic revision of mantellid frogs of the genus Aglyptodactylus (Anura: Mantellidae)
FIGURE 4. Ventral view of feet of representative specimens of Aglyptodactylus (not to scale; see Table 3 for measurements). Arrows point at the large inner metatarsal tubercles of A. laticeps and A. securifer, and at the lateral metatarsalia of A. laticeps connected by tissue rather than separated by webbing. Asterisks mark mirrored images.
FIGURE 10 in Integrative taxonomic revision of mantellid frogs of the genus Aglyptodactylus (Anura: Mantellidae)
FIGURE 10. Audiospectrogram (above) and oscillogram (below) of an advertisement call of Aglyptodactylus madagascariensis, recorded at Andasibe. Air temperature 22.6 °C.
FIGURE 7 in Integrative taxonomic revision of mantellid frogs of the genus Aglyptodactylus (Anura: Mantellidae)
FIGURE 7. Audiospectrogram (above) and oscillogram (below) of an advertisement call of Aglyptodactylus laticeps, recorded at Kirindy.
FIGURE 24 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 24. Crania and dentaries of Phascogale pirata: a) CM7225, b) holotype, BMNH 4.1.3.100, an adult male from South Alligator River, Northern Territory, and c) CM7617.
FIGURE 23 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 23. Cranium and dentary of MOV DTC304, Phascogale tapoatafa (subspecies indeterminate), a male from Bare Hill, Lockhart River, Cape York, Queensland: a) dorsal view of cranium, b) ventral view of cranium, and c) lateral view of right dentary.
FIGURE 22 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 22. Map of northern Australia, showing the distributions of P. tapoatafa kimberleyensis subsp. nov (circles) and P. pirata (triangles). The square symbol represents the location of a sight record that might pertain to either P. pirata or P. tapoatafa.
FIGURE 21 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 21. Cranium and dentary of WAM16028, the holotype of P. tapoatafa kimberleyensis subsp. nov., an adult male from Pago Mission, Western Australia: a) dorsal view of cranium, b) ventral view of cranium, and c) lateral view of right dentary.
FIGURE 20 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 20. Map of southwest Western Australia, showing the historic (dark grey) distribution of P. tapoatafa wambenger subsp. nov., based on museum specimens and reliable sightings. The dot symbol represents an outlying historical record. Star symbols are sub-fossil records judged to be of late Holocene age.
FIGURE 19 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 19. Crania and dentaries of P. tapoatafa wambenger subsp. nov. a) WAM7674, holotype, an adult male from Quindalup, Western Australia, and b) CM3569, a subadult male from Boya, Western Australia. Each series consists of (left to right) dorsal view of cranium, ventral view of cranium, and lateral view of right dentary.
FIGURE 18 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 18. Map of eastern Australia, showing the contemporary (dark grey) and historic (light grey) distribution of P. tapoatafa tapoatafa, based on museum specimens and reliable sightings. Star symbols are sub-fossil records judged to be of late Holocene age. Square symbols represent the location of two sight records that might pertain to either P. pi r at a or P. tapoatafa.
FIGURE 15. Schematic maps showing interpopulational genetic divergences within P in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 15. Schematic maps showing interpopulational genetic divergences within P. tapoatafa (sensu lato) for cytochrome b (ranges of pairwise raw sequence divergences): a) divergences between the 'Top End' population and each other regional population; and b) divergences among all populations of P. tapoatafa, excluding the 'Top End' population.
FIGURE 16 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 16. Crania and dentaries of P. tapoatafa tapoatafa. a) CM24425, an adult male from Coraki, New South Wales, and b) CM1316, a subadult male from Wallaby Creek, near Urbanville, New South Wales. Each series consists of (left to right) dorsal view of cranium, ventral view of cranium, and lateral view of right dentary.
FIGURE 14 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 14. Networks based on 325 bp of mitochondrial cytochrome b sequences. a) a Neighbor-Net network of all Phascogale sequences showing the major clusters of sequences (N.S.W. = New South Wales; Qld = Queensland; W.A. – Western Australia); b): a Median-Joining Network of Phascogale tapoatafa sequences from eastern and northern Australia' showing the relationships among haplotypes; node size is proportional to haplotype frequency and branch lengths to the number of substitutions. Specimen and locality data for each haplotype are provided in Table 1.
FIGURE 17 in Taxonomic revision of Phascogale tapoatafa (Meyer, 1793) (Dasyuridae; Marsupialia), including descriptions of two new subspecies and confirmation of P. pirata Thomas, 1904 as a ' Top End' endemic
FIGURE 17. Graphical representation of geographic variation within P. t. tapoatafa in selected craniodental dimensions (SL; M1-4; FMW). Values for individual specimens are plotted in geographic sequence (Geo Seq) from west to east for South Australia and Victoria, and then from south to north for New South Wales and southeast Queensland. Population codes: 2: South Australia; 3: Victoria; 4: New South Wales and southeast Queensland. Plotted variables are a) Skull Length; b) M1-4; c) Foramen Magnum Width. Left hand series are females; right hand series are males.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.